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Published in: Polymer Science, Series A 6/2023

09-02-2024 | REVIEWS

A Review on Engineering of Poly(Glycidyl Methacrylate) Microspheres

Authors: K. M. Rehan, K. A. Basha, S. M. Safiullah

Published in: Polymer Science, Series A | Issue 6/2023

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Abstract

The poly(glycidyl methacrylate) microsphere (PGMA microsphere) is one of the most useful colloidal particles due to its structural arrangement. It has an easy functionalization, dispersion, adsorption and swelling properties. The PGMA was effectively used as a precursor for the development of many novel and advanced materials with enhanced properties lead to diverse applications. For instance, the incorporation of nanoparticles in PGMA exhibited progressive properties. Nevertheless, homogeneous distribution of nanoparticles in polymers is not that much simple due to their tendency to get aggregate. Whereas, the homogeneous distribution of nanoparticles in the PGMA is quite easy due to its grafting ability. The design, development and characterization of PGMA based novel materials for improved properties and apply those materials for diverse problems has gained a great interest among the researchers from the past one decade. This review highlights the insights on different methods of preparation of PGMA based materials to attain the desired properties and provide useful information about the characteristic features of the PGMA microspheres. This review also useful to evaluate some of the key aspects for the development of PGMA based materials and endow with new possible ways and ideas to take up some innovative research.

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Appendix
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Literature
1.
go back to reference S. M. B. Nachtigall, G. S. Cerveira, and S. M. L. Rosa, Polym. Test. 26, 5 (2007). S. M. B. Nachtigall, G. S. Cerveira, and S. M. L. Rosa, Polym. Test. 26, 5 (2007).
2.
go back to reference H. Basri, A. F. Ismail, M. Aziz, K. Nagai, T. Matsuura, M. S. Abdullah, and B.C. Ng, Desalination 261, 264 (2010). H. Basri, A. F. Ismail, M. Aziz, K. Nagai, T. Matsuura, M. S. Abdullah, and B.C. Ng, Desalination 261, 264 (2010).
3.
go back to reference B. Imre and B. Pukánszky, Eur. Polym. J. 49, 1215 (2013). B. Imre and B. Pukánszky, Eur. Polym. J. 49, 1215 (2013).
4.
go back to reference F. Vilaplana, and S. Karlsson, Macromol. Mater. Eng. 293, 274 (2008). F. Vilaplana, and S. Karlsson, Macromol. Mater. Eng. 293, 274 (2008).
5.
go back to reference H. Keskkula, D. R. Paul, K. M. McCreedy, and D. E. Henton, Polymer 28, 2063 (1987). H. Keskkula, D. R. Paul, K. M. McCreedy, and D. E. Henton, Polymer 28, 2063 (1987).
6.
go back to reference D. Nazari, N. Bahri-Laleh, M. Nekoomanesh-Haghighi, S. M. Jalilian, R. Rezaie, and S. A. Mirmohammadi, Polym. Adv. Technol. 29, 1603 (2018). D. Nazari, N. Bahri-Laleh, M. Nekoomanesh-Haghighi, S. M. Jalilian, R. Rezaie, and S. A. Mirmohammadi, Polym. Adv. Technol. 29, 1603 (2018).
7.
go back to reference S. Li, K. Ciardullo, E. Donner, M. R. Thompson, C. Rempel, and Q. Liu, Mater. Des. 138, 1 (2018). S. Li, K. Ciardullo, E. Donner, M. R. Thompson, C. Rempel, and Q. Liu, Mater. Des. 138, 1 (2018).
8.
9.
go back to reference X. Wang, H. Ou, and J. Huang, J. Colloid Interface Sci. 538, 499 (2019).PubMed X. Wang, H. Ou, and J. Huang, J. Colloid Interface Sci. 538, 499 (2019).PubMed
10.
go back to reference S. I. Bhat, Y. Ahmadi, and S. Ahmad, Ind. Eng. Chem. Res. 57, 10754 (2018). S. I. Bhat, Y. Ahmadi, and S. Ahmad, Ind. Eng. Chem. Res. 57, 10754 (2018).
12.
go back to reference V. A. Ganesh, A. Baji, and S. Ramakrishna, RSC Adv. 4, 53352 (2014). V. A. Ganesh, A. Baji, and S. Ramakrishna, RSC Adv. 4, 53352 (2014).
13.
go back to reference A. Kiriy, R. Potzsch, Q. Wei, and B. Voit, Polym. Degrad. Stabil. 145, 150 (2017). A. Kiriy, R. Potzsch, Q. Wei, and B. Voit, Polym. Degrad. Stabil. 145, 150 (2017).
14.
go back to reference A. W. Bassett, K. R. Sweet, R. M. O’Dea, A. E. Honnig, C. M. Breyta, J. H. Reilly, J. J. La Scala, T. H. Epps III, and J. F. Stanzione III, J. Polym. Sci. 58, 673 (2020). A. W. Bassett, K. R. Sweet, R. M. O’Dea, A. E. Honnig, C. M. Breyta, J. H. Reilly, J. J. La Scala, T. H. Epps III, and J. F. Stanzione III, J. Polym. Sci. 58, 673 (2020).
15.
go back to reference L. G. A. van de Water, W. L. Driessen, M. W. Glenny, J. Reedijk, and M. Schroder, React. Funct. Polym. 51, 33 (2002). L. G. A. van de Water, W. L. Driessen, M. W. Glenny, J. Reedijk, and M. Schroder, React. Funct. Polym. 51, 33 (2002).
16.
go back to reference M. Maciejewska, and M. Rogulska, J. Therm. Anal. Calorim. 144 (2020). M. Maciejewska, and M. Rogulska, J. Therm. Anal. Calorim. 144 (2020).
17.
go back to reference R. Zhang, Q. Li, J. Li, W. Zhou, P. Ye, Y. Gao, G. Ma, and Z. Su, Mater. Sci. Eng., C 32, 2628 (2012). R. Zhang, Q. Li, J. Li, W. Zhou, P. Ye, Y. Gao, G. Ma, and Z. Su, Mater. Sci. Eng., C 32, 2628 (2012).
18.
go back to reference A. Kausar, I. Rafique, Z. Anwar, and B. Muhammad, Polym. Plast. Technol. Eng. 55, 704 (2016). A. Kausar, I. Rafique, Z. Anwar, and B. Muhammad, Polym. Plast. Technol. Eng. 55, 704 (2016).
19.
go back to reference D. Horak, J. Kucerova, L. Korecka, B. Jankovicova, J. Palarcık, P. Mikulasek, and Z. Bılkova, Macromol. Biosci. 12, 647 (2012).PubMed D. Horak, J. Kucerova, L. Korecka, B. Jankovicova, J. Palarcık, P. Mikulasek, and Z. Bılkova, Macromol. Biosci. 12, 647 (2012).PubMed
20.
go back to reference J. Oh, J. Lee, J. C. Koo, H. R. Choi, Y. Lee, T. Kim, N. D. Luong, and J Nam, J. Mater. Chem. 20, 9200 (2010). J. Oh, J. Lee, J. C. Koo, H. R. Choi, Y. Lee, T. Kim, N. D. Luong, and J Nam, J. Mater. Chem. 20, 9200 (2010).
21.
go back to reference X. Wu, W. Jiang, Y. Luo, and J. Li, J. Appl. Polym. Sci. 136, 47441 (2019). X. Wu, W. Jiang, Y. Luo, and J. Li, J. Appl. Polym. Sci. 136, 47441 (2019).
22.
go back to reference C. Yang, M. Li, X. Dong, and Y. Sun, J. Chromatogr. A 1299, 85 (2013).PubMed C. Yang, M. Li, X. Dong, and Y. Sun, J. Chromatogr. A 1299, 85 (2013).PubMed
23.
go back to reference W. WeiCai, Z. Qi, Z. BingBo, L. DeNa, D. XiaoQing, Z. Lei, and C. Jin, Chin. Sci. Bull. 53, 1165 (2008). W. WeiCai, Z. Qi, Z. BingBo, L. DeNa, D. XiaoQing, Z. Lei, and C. Jin, Chin. Sci. Bull. 53, 1165 (2008).
24.
go back to reference T. Feczkó, L. Trif, B. Németh, and D. Horák, Thermochim. Acta 641, 24 (2016). T. Feczkó, L. Trif, B. Németh, and D. Horák, Thermochim. Acta 641, 24 (2016).
25.
go back to reference Š. Trachtová, H. Zapletalová, A. Španová, D. Horák, H. Kolářová, and B. Rittich, Chromatography 2, 156 (2015). Š. Trachtová, H. Zapletalová, A. Španová, D. Horák, H. Kolářová, and B. Rittich, Chromatography 2, 156 (2015).
26.
go back to reference P. Alpay, D. Aktas, and Uygun, J. Mol. Catal. B: Enzym. 111, 56 (2014). P. Alpay, D. Aktas, and Uygun, J. Mol. Catal. B: Enzym. 111, 56 (2014).
27.
go back to reference D. Horak and P. Shapoval, J. Polym. Sci. Part A: Polym. Chem. 38, 3855 (2000). D. Horak and P. Shapoval, J. Polym. Sci. Part A: Polym. Chem. 38, 3855 (2000).
28.
go back to reference S. Kawaguchi and K. Ito, Adv. Polym. Sci. 175, 299 (2005). S. Kawaguchi and K. Ito, Adv. Polym. Sci. 175, 299 (2005).
29.
go back to reference D. Horak, A. Španova, J. Tvrdikova, and B. Rittich, Eur. Polym. J. 47, 1090 (2011). D. Horak, A. Španova, J. Tvrdikova, and B. Rittich, Eur. Polym. J. 47, 1090 (2011).
30.
go back to reference Z. Ma, Y. Guan, and H. Liu, J. Polym. Sci. Part A: Polym. Chem. 43, 3433 (2005). Z. Ma, Y. Guan, and H. Liu, J. Polym. Sci. Part A: Polym. Chem. 43, 3433 (2005).
31.
go back to reference L. Novotna, T. Emmerova, D. Horak, Z. Kucerova, and M. Ticha, J. Chromatogr. A 1217, 8032 (2010).PubMed L. Novotna, T. Emmerova, D. Horak, Z. Kucerova, and M. Ticha, J. Chromatogr. A 1217, 8032 (2010).PubMed
32.
go back to reference X. Sun, L. Yang, H. Xing, J. Zhao, X. Li, Y. Huang, and H. Liu, Chem. Eng. J. 234, 338 (2013). X. Sun, L. Yang, H. Xing, J. Zhao, X. Li, Y. Huang, and H. Liu, Chem. Eng. J. 234, 338 (2013).
33.
go back to reference R. Wang, Y. Zhang, G. Ma, and Z. Su, Colloid. Surf., B 51, 93 (2006). R. Wang, Y. Zhang, G. Ma, and Z. Su, Colloid. Surf., B 51, 93 (2006).
34.
go back to reference S. M. Safiullah, K. A. Wasi, and K. A. Basha, Appl. Surf. Sci. 357, 112 (2015). S. M. Safiullah, K. A. Wasi, and K. A. Basha, Appl. Surf. Sci. 357, 112 (2015).
35.
go back to reference D. Horak, E. Pollert, M. Trchova, and J. Kovarova, Eur. Polym. J. 45, 1009 (2009). D. Horak, E. Pollert, M. Trchova, and J. Kovarova, Eur. Polym. J. 45, 1009 (2009).
36.
go back to reference A. Ahmad, S. A. Hanifaha, S. A. Hasbullah, K. Suhud, N. M. Zaini and L. Y. Henga, AIP Conf. Proc. 1614, 486 (2014). A. Ahmad, S. A. Hanifaha, S. A. Hasbullah, K. Suhud, N. M. Zaini and L. Y. Henga, AIP Conf. Proc. 1614, 486 (2014).
37.
go back to reference G. Bayramoglu, and M. Y. Arica, Fibers Polym. 15, 2051 (2014). G. Bayramoglu, and M. Y. Arica, Fibers Polym. 15, 2051 (2014).
38.
go back to reference D. Horak and N. Chekina, J. Appl. Polym. Sci. 102, 4348 (2006). D. Horak and N. Chekina, J. Appl. Polym. Sci. 102, 4348 (2006).
39.
go back to reference M. Omer-Mizrahi, and S. Margel, J. Colloid Interface Sci. 329, 228 (2009).PubMed M. Omer-Mizrahi, and S. Margel, J. Colloid Interface Sci. 329, 228 (2009).PubMed
40.
go back to reference R. Qi, C. Hong, C. Mingqing, N. Zhongbin, and C. Qiuyun, J. Wuhan Univ. Technol. Mater. Sci. 26, 1084 (2011). R. Qi, C. Hong, C. Mingqing, N. Zhongbin, and C. Qiuyun, J. Wuhan Univ. Technol. Mater. Sci. 26, 1084 (2011).
41.
go back to reference H. J. Choi, M. S. Cho, and I. S. Lee, Int. J. Mod. Phys. B 19, 1077 (2005). H. J. Choi, M. S. Cho, and I. S. Lee, Int. J. Mod. Phys. B 19, 1077 (2005).
43.
go back to reference H. Orhan and D. A. Uygun, Appl. Biochem. Biotechnol. 191,1432–1443 (2020).PubMed H. Orhan and D. A. Uygun, Appl. Biochem. Biotechnol. 191,1432–1443 (2020).PubMed
44.
go back to reference H. Hlídková, I. Kotelnikov, O. Pop-Georgievski, V. Proks, and D. Horák, Macromolecules 50, 1302 (2017). H. Hlídková, I. Kotelnikov, O. Pop-Georgievski, V. Proks, and D. Horák, Macromolecules 50, 1302 (2017).
45.
go back to reference L. Pang, T. Xue, H. Cong, Y. Shen, and B. Yu, Colloid. Surf. B 188, 110807 (2020). L. Pang, T. Xue, H. Cong, Y. Shen, and B. Yu, Colloid. Surf. B 188, 110807 (2020).
46.
go back to reference L. Tian, X. Li, P. Zhao, X. Chen, Z. Ali, N. Ali, B. Zhang, H. Zhang, and Q. Zhang, Macromolecules 48, 7592 (2015). L. Tian, X. Li, P. Zhao, X. Chen, Z. Ali, N. Ali, B. Zhang, H. Zhang, and Q. Zhang, Macromolecules 48, 7592 (2015).
47.
go back to reference M. Omer-Mizrahi, and S. Margel, J. Polym. Sci., Part A: Polym. Chem. 45, 4612 (2007). M. Omer-Mizrahi, and S. Margel, J. Polym. Sci., Part A: Polym. Chem. 45, 4612 (2007).
48.
go back to reference S. Grama and D. Horak, Physiol. Res. 64, 11 (2015). S. Grama and D. Horak, Physiol. Res. 64, 11 (2015).
49.
go back to reference S. Kim, J. Yoo, G. Yi, Y. Lee, H. R. Choi, J. C. Koo, J. Oh, and J. Nam, J. Mater. Chem. C 2, 6462 (2014). S. Kim, J. Yoo, G. Yi, Y. Lee, H. R. Choi, J. C. Koo, J. Oh, and J. Nam, J. Mater. Chem. C 2, 6462 (2014).
50.
go back to reference J. Oh, N. D. Luong, T. Hwang, J. Hong, Y. K. Lee, and J. Nam, J. Mater. Sci. 48, 1127 (2013). J. Oh, N. D. Luong, T. Hwang, J. Hong, Y. K. Lee, and J. Nam, J. Mater. Sci. 48, 1127 (2013).
51.
go back to reference S. Grama, N. Boiko, R. Bilyy, O. Klyuchivska, V. Antonyuk, R. Stoika, and D. Horak, Eur. Polym. J. 56, 92 (2014). S. Grama, N. Boiko, R. Bilyy, O. Klyuchivska, V. Antonyuk, R. Stoika, and D. Horak, Eur. Polym. J. 56, 92 (2014).
52.
go back to reference D. Horák, M. Trchová, M. J. Benes, M. Veverka, and E. Pollert, Polymer 51, 3116 (2010). D. Horák, M. Trchová, M. J. Benes, M. Veverka, and E. Pollert, Polymer 51, 3116 (2010).
53.
go back to reference C. J. Lee, and H. J. Choi, Colloid. Surf., A 550, 56 (2018). C. J. Lee, and H. J. Choi, Colloid. Surf., A 550, 56 (2018).
54.
go back to reference D. Horak, A. Španova, J. Tvrdikova, and B. Rittich, Eur. Polym. J. 47, 1090 (2011). D. Horak, A. Španova, J. Tvrdikova, and B. Rittich, Eur. Polym. J. 47, 1090 (2011).
55.
go back to reference H. Zhu, H. Yao, K. Xia, J. Liu, X. Yin, W. Zhang, and J. Pan, Chem. Eng. J. 346, 317 (2018). H. Zhu, H. Yao, K. Xia, J. Liu, X. Yin, W. Zhang, and J. Pan, Chem. Eng. J. 346, 317 (2018).
56.
go back to reference Y. Wang, Y. Zhang, C. Hou, X. He, and M. Liu, J. Taiwan Inst. Chem. Eng. 58, 283 (2016). Y. Wang, Y. Zhang, C. Hou, X. He, and M. Liu, J. Taiwan Inst. Chem. Eng. 58, 283 (2016).
57.
go back to reference D. Yin, H. Liu, B. Zhang, and W. Geng, Mater. Technol.: Adv. Perform. Mater. 31, 352 (2016). D. Yin, H. Liu, B. Zhang, and W. Geng, Mater. Technol.: Adv. Perform. Mater. 31, 352 (2016).
58.
59.
go back to reference F. An, B. Gao, X. Dai, M. Wang, and X. Wang, J. Hazard. Mater. 192, 956 (2011).PubMed F. An, B. Gao, X. Dai, M. Wang, and X. Wang, J. Hazard. Mater. 192, 956 (2011).PubMed
60.
go back to reference X. Sun, L. Yang, H. Xing, J. Zhao, X. Li, Y. Huang, and H. Liu, Colloid. Surf., A 457, 160 (2014). X. Sun, L. Yang, H. Xing, J. Zhao, X. Li, Y. Huang, and H. Liu, Colloid. Surf., A 457, 160 (2014).
61.
go back to reference D. Horak, H. Hlıdkova, M. Hiraoui, M. Taverna, V. Proks, E. M. Chanova, C. Smadja, and Z. Kucerova, Macromol. Biosci. 14, 1590 (2014).PubMed D. Horak, H. Hlıdkova, M. Hiraoui, M. Taverna, V. Proks, E. M. Chanova, C. Smadja, and Z. Kucerova, Macromol. Biosci. 14, 1590 (2014).PubMed
62.
go back to reference B. A. Zasońska, H. Hlídková, E. Petrovský, S. Myronovskij, T. Nehrych, N. Negrych, M. Shorobura, V. Antonyuk, R. Stoika, Y. Kit, and D. Horák, Microchim. Acta 185, 262 (2018). B. A. Zasońska, H. Hlídková, E. Petrovský, S. Myronovskij, T. Nehrych, N. Negrych, M. Shorobura, V. Antonyuk, R. Stoika, Y. Kit, and D. Horák, Microchim. Acta 185, 262 (2018).
63.
go back to reference J. S. Oh, L. N. Dang, S. W. Yoon, P. C. Lee, D. O. Kim, K. J. Kim, and J. D. Nam, Macromol. Rapid Commun. 34, 504 (2013).PubMed J. S. Oh, L. N. Dang, S. W. Yoon, P. C. Lee, D. O. Kim, K. J. Kim, and J. D. Nam, Macromol. Rapid Commun. 34, 504 (2013).PubMed
64.
go back to reference J. Krızova, A. Spanova, B. Rittich, and D. Horak, J. Chromatogr. A 1064, 247 (2005).PubMed J. Krızova, A. Spanova, B. Rittich, and D. Horak, J. Chromatogr. A 1064, 247 (2005).PubMed
65.
go back to reference F. Reymond, C. Vollet, Z. Plichta, and D. Horak, Biotechnol. Prog. 29, 532 (2013).PubMed F. Reymond, C. Vollet, Z. Plichta, and D. Horak, Biotechnol. Prog. 29, 532 (2013).PubMed
66.
go back to reference W. L. Zhang, S. H. Piao, and H. J. Choi, J. Colloid Interface Sci. 402, 100 (2013).PubMed W. L. Zhang, S. H. Piao, and H. J. Choi, J. Colloid Interface Sci. 402, 100 (2013).PubMed
67.
go back to reference W. L. Zhang, H. J. Choi, and Y. Seo, Macromol. Chem. Phys. 214, 1415−1422 (2013). W. L. Zhang, H. J. Choi, and Y. Seo, Macromol. Chem. Phys. 214, 1415−1422 (2013).
68.
go back to reference L. Pengfei, Y. Liangrong, H. Xiuqiong, W. Juan, K. Peng, X. Huifang, and L. Huizhou, Chin. J. Chem. Eng. 20, 95 (2012). L. Pengfei, Y. Liangrong, H. Xiuqiong, W. Juan, K. Peng, X. Huifang, and L. Huizhou, Chin. J. Chem. Eng. 20, 95 (2012).
69.
go back to reference J. Tan, L. Fu, X. Zhang, Y. Bai, and L. Zhang, J. Mater. Sci. 51, 9455 (2016). J. Tan, L. Fu, X. Zhang, Y. Bai, and L. Zhang, J. Mater. Sci. 51, 9455 (2016).
70.
go back to reference S. M. Safiullah, K. A. Wasi, and K. A. Basha, Polymer 66, 29 (2015). S. M. Safiullah, K. A. Wasi, and K. A. Basha, Polymer 66, 29 (2015).
71.
go back to reference J. Men, R. Wang, X. Hu, H. Zhao, H. Wei, C. Hu, and B. Gao, Macromol. Res. 24, 114 (2016). J. Men, R. Wang, X. Hu, H. Zhao, H. Wei, C. Hu, and B. Gao, Macromol. Res. 24, 114 (2016).
72.
go back to reference S. M. Safiullah, K. A. Wasi, and K. A. Basha, Mater. Lett. 133, 60 (2014). S. M. Safiullah, K. A. Wasi, and K. A. Basha, Mater. Lett. 133, 60 (2014).
73.
go back to reference A. Ahmad, N. M. Zaini, N. Rozi, N. H. A. Karim, S. A. Hasbullah, L. Y. Heng, and S. A. Hanifah, Malays. J. Anal. Sci. 20, 704 (2016). A. Ahmad, N. M. Zaini, N. Rozi, N. H. A. Karim, S. A. Hasbullah, L. Y. Heng, and S. A. Hanifah, Malays. J. Anal. Sci. 20, 704 (2016).
74.
go back to reference G. Bayramoglu, B. Kaya, and M. Y. Arıca, Food Chem. 92, 261 (2005). G. Bayramoglu, B. Kaya, and M. Y. Arıca, Food Chem. 92, 261 (2005).
75.
go back to reference M. Y. Arıca, B. Altıntas, and G. Bayramoglu, Bioresource Technol. 100, 665 (2009). M. Y. Arıca, B. Altıntas, and G. Bayramoglu, Bioresource Technol. 100, 665 (2009).
76.
go back to reference W. Zhou, T. Gu, Z. Su, and G. Ma, Eur. Polym. J. 43, 4493 (2007). W. Zhou, T. Gu, Z. Su, and G. Ma, Eur. Polym. J. 43, 4493 (2007).
77.
go back to reference E. Pollert, K. Knızek, M. Marysko, K. Zaveta, A. Lancok, J. Bohacek, D. Horak, and M. Babic, J. Magn. Magn. Mater. 306, 241 (2006). E. Pollert, K. Knızek, M. Marysko, K. Zaveta, A. Lancok, J. Bohacek, D. Horak, and M. Babic, J. Magn. Magn. Mater. 306, 241 (2006).
78.
go back to reference B. Yu, H. Zhang, H. Cong, C. Gu, L. Gao, B. Yanga, and M. Usman, New J. Chem. 41, 4637 (2017). B. Yu, H. Zhang, H. Cong, C. Gu, L. Gao, B. Yanga, and M. Usman, New J. Chem. 41, 4637 (2017).
79.
go back to reference R. Wang, Y. Zhang, G. Ma, and Z. Su, J. Appl. Polym. Sci. 102, 5018 (2006). R. Wang, Y. Zhang, G. Ma, and Z. Su, J. Appl. Polym. Sci. 102, 5018 (2006).
80.
go back to reference J. Dou, Q. Zhang, M. Ma, and J. Gu, J. Magn. Magn. Mater. 324, 3078 (2012). J. Dou, Q. Zhang, M. Ma, and J. Gu, J. Magn. Magn. Mater. 324, 3078 (2012).
81.
go back to reference B. Yang, G. Li, H. Cong, B. Yu, L. Wang, and S. Yang, Integr. Ferroelectr 182, 98 (2017). B. Yang, G. Li, H. Cong, B. Yu, L. Wang, and S. Yang, Integr. Ferroelectr 182, 98 (2017).
82.
go back to reference J. Liu, D. Yin, S. Zhang, H. Liu, and Q. Zhang, Colloid. Surf., A 466, 174 (2015). J. Liu, D. Yin, S. Zhang, H. Liu, and Q. Zhang, Colloid. Surf., A 466, 174 (2015).
83.
go back to reference X. Wang, Z. Zhou, and G. Jing, Bioresour. Technol. 130, 750 (2013).PubMed X. Wang, Z. Zhou, and G. Jing, Bioresour. Technol. 130, 750 (2013).PubMed
84.
go back to reference J. Koubkova, P. Muller, H. Hlıdkova, Z. Plichta, V. Proks, B. Vojtesek, and D. Horak, New Biotechnol. 31, 482 (2014). J. Koubkova, P. Muller, H. Hlıdkova, Z. Plichta, V. Proks, B. Vojtesek, and D. Horak, New Biotechnol. 31, 482 (2014).
85.
go back to reference L. Tian, B. Zhang, W. Li, X. Li, X. Fan, X. Jia, H. Zhang, and Q. Zhang, RSC Adv. 4, 27152 (2014). L. Tian, B. Zhang, W. Li, X. Li, X. Fan, X. Jia, H. Zhang, and Q. Zhang, RSC Adv. 4, 27152 (2014).
86.
go back to reference D. Horak, and N. Benedyk, J. Polym. Sci. Part A: Polym. Chem. 42, 5827 (2004). D. Horak, and N. Benedyk, J. Polym. Sci. Part A: Polym. Chem. 42, 5827 (2004).
87.
go back to reference J. Jang, J. Bae, and S. Ko, J. Polym. Sci. Part A: Polym. Chem. 43, 2258 (2005). J. Jang, J. Bae, and S. Ko, J. Polym. Sci. Part A: Polym. Chem. 43, 2258 (2005).
88.
89.
go back to reference S. Cakmak, M. Gumusderelioglu, and A. Denizli, React. Funct. Polym. 69, 586 (2009). S. Cakmak, M. Gumusderelioglu, and A. Denizli, React. Funct. Polym. 69, 586 (2009).
90.
go back to reference Z. Wang, Z. Zhao, J. Zhang, Z. Li, Y. Gao, C. Wang, H. Zhang, and B. Yang, J. Colloid Interface Sci. 339, 83 (2009).PubMed Z. Wang, Z. Zhao, J. Zhang, Z. Li, Y. Gao, C. Wang, H. Zhang, and B. Yang, J. Colloid Interface Sci. 339, 83 (2009).PubMed
91.
go back to reference H. B. Kulkarni, P. Tambe, and G. M. Joshi, Compos. Interfaces 25, 381 (2018). H. B. Kulkarni, P. Tambe, and G. M. Joshi, Compos. Interfaces 25, 381 (2018).
92.
go back to reference B. Gao, N. Shi, and X. Shi, J. Polym. Res. 20, 260 (2013). B. Gao, N. Shi, and X. Shi, J. Polym. Res. 20, 260 (2013).
93.
go back to reference J. Koubkova, H. Mackova, V. Proks, M. Trchova, J. Brus, and D. Horak, J. Polym. Sci., Part A: Polym. Chem. 53, 2273 (2015). J. Koubkova, H. Mackova, V. Proks, M. Trchova, J. Brus, and D. Horak, J. Polym. Sci., Part A: Polym. Chem. 53, 2273 (2015).
94.
go back to reference C. Yuan, J. Chen, Y. Jia, and D. Yin, J. Polym. Res. 27, 1 (2020). C. Yuan, J. Chen, Y. Jia, and D. Yin, J. Polym. Res. 27, 1 (2020).
95.
go back to reference H. Mackova, F. Oukacine, Z. Plichta, M. Hruby, J. Kucka, M. Taverna, and D. Horak, J. Colloid Interface Sci. 421, 146 (2014).PubMed H. Mackova, F. Oukacine, Z. Plichta, M. Hruby, J. Kucka, M. Taverna, and D. Horak, J. Colloid Interface Sci. 421, 146 (2014).PubMed
96.
go back to reference S. Y. Kim, S. H. Kwon, Y. D. Liu, J. Lee, C. You, and H. J. Choi, J. Mater. Sci. 49, 1345 (2014). S. Y. Kim, S. H. Kwon, Y. D. Liu, J. Lee, C. You, and H. J. Choi, J. Mater. Sci. 49, 1345 (2014).
97.
go back to reference K. K. S. Lau, and K. K. Gleason, Adv. Mater. 18, 1972 (2006). K. K. S. Lau, and K. K. Gleason, Adv. Mater. 18, 1972 (2006).
98.
go back to reference K. Matsuyama, K. Mishima, H. Umemoto, and S. Yamaguchi, Environ. Sci. Technol. 35, 4149 (2001).PubMed K. Matsuyama, K. Mishima, H. Umemoto, and S. Yamaguchi, Environ. Sci. Technol. 35, 4149 (2001).PubMed
99.
go back to reference K. Park, W. Jeong, and K. Suh, J. Macromol. Sci., Part A: Pure Appl. Chem. 40, 617 (2003). K. Park, W. Jeong, and K. Suh, J. Macromol. Sci., Part A: Pure Appl. Chem. 40, 617 (2003).
100.
go back to reference Y. Liu, M. Li, and G. Chen, J. Mater. Chem. A 1, 930 (2013). Y. Liu, M. Li, and G. Chen, J. Mater. Chem. A 1, 930 (2013).
101.
go back to reference D. Horak, N. Semenyuk, and F Lednicky, J. Polym. Sci., Part A: Polym. Chem. 41, 1848 (2003). D. Horak, N. Semenyuk, and F Lednicky, J. Polym. Sci., Part A: Polym. Chem. 41, 1848 (2003).
102.
go back to reference J. Wang, Z. Yang, J. Xu, M. Ahmad, H. Zhang, A. Zhang, Q. Zhang, X. Kou, and B. Zhang, Macromol. Rapid Commun. 40, 1800768 (2019). J. Wang, Z. Yang, J. Xu, M. Ahmad, H. Zhang, A. Zhang, Q. Zhang, X. Kou, and B. Zhang, Macromol. Rapid Commun. 40, 1800768 (2019).
103.
go back to reference Y. Wang, J. He, J. Chen, L. Ren, B. Jiang, and J. Zhao, ACS Appl. Mater. Interfaces. 4, 2735 (2012).PubMed Y. Wang, J. He, J. Chen, L. Ren, B. Jiang, and J. Zhao, ACS Appl. Mater. Interfaces. 4, 2735 (2012).PubMed
104.
go back to reference X. Yu, C. Zhang, Y. Ni, and S. Zheng, J. Appl. Polym. Sci. 128, 2829 (2013). X. Yu, C. Zhang, Y. Ni, and S. Zheng, J. Appl. Polym. Sci. 128, 2829 (2013).
105.
go back to reference M. Omer-Mizrahi, and S. Margel, Polymer 51, 1222 (2010). M. Omer-Mizrahi, and S. Margel, Polymer 51, 1222 (2010).
106.
go back to reference D. Horak, Z. Svobodova, J. Autebert, B. Coudert, Z. Plichta, K. Kralovec, Z. Bılkova, and J.-L. Viovy, J. Biomed. Mater. Res., Part A 101, 23 (2013). D. Horak, Z. Svobodova, J. Autebert, B. Coudert, Z. Plichta, K. Kralovec, Z. Bılkova, and J.-L. Viovy, J. Biomed. Mater. Res., Part A 101, 23 (2013).
107.
go back to reference J. Wang, F. Ji, J. Xing, S. Cui, Y. Bao, and W. Hao, Chin. J. Chem. Eng. 22, 1333 (2014). J. Wang, F. Ji, J. Xing, S. Cui, Y. Bao, and W. Hao, Chin. J. Chem. Eng. 22, 1333 (2014).
108.
109.
go back to reference M. Vera, G. S. Nyanhongo, G. M. Guebitz, and B. L. Rivas, Arab. J. Chem. 13, 4218 (2020). M. Vera, G. S. Nyanhongo, G. M. Guebitz, and B. L. Rivas, Arab. J. Chem. 13, 4218 (2020).
110.
go back to reference C. Sun, F. Zhou, L. Shi, B. Yua, P. Gao, J. Zhang, and W. Liu, Appl. Surf. Sci. 253, 1729 (2006). C. Sun, F. Zhou, L. Shi, B. Yua, P. Gao, J. Zhang, and W. Liu, Appl. Surf. Sci. 253, 1729 (2006).
111.
go back to reference Q. Li, W. Gu, H. Gao, and Y. Yang, Chem. Commun. 50, 13201 (2014). Q. Li, W. Gu, H. Gao, and Y. Yang, Chem. Commun. 50, 13201 (2014).
112.
go back to reference X. Guo, C. Wang, Z. Yu, L. Chen and S. Chen, Chem. Commun. 48, 2692 (2012). X. Guo, C. Wang, Z. Yu, L. Chen and S. Chen, Chem. Commun. 48, 2692 (2012).
113.
go back to reference Z. Luo, C. Zou, S. Syed, L. A. Syarbaini, and G. Chen, Colloid Polym. Sci. 290, 141 (2012). Z. Luo, C. Zou, S. Syed, L. A. Syarbaini, and G. Chen, Colloid Polym. Sci. 290, 141 (2012).
114.
go back to reference K. K. S. Lau, and K. K. Gleason, Surf. Coat. Technol. 201, 9189 (2007). K. K. S. Lau, and K. K. Gleason, Surf. Coat. Technol. 201, 9189 (2007).
115.
go back to reference G. Lian, C. Tuan, L. Li, S. Jiao, Q. Wang, K. Moon, D. Cui, and C. Wong, Chem. Mater. 28, 6096 (2016). G. Lian, C. Tuan, L. Li, S. Jiao, Q. Wang, K. Moon, D. Cui, and C. Wong, Chem. Mater. 28, 6096 (2016).
116.
117.
go back to reference D. Horak, E. Petrovsky, A. Kapicka, and T. Frederichs, J. Magn. Magn. Mater. 311, 500 (2007). D. Horak, E. Petrovsky, A. Kapicka, and T. Frederichs, J. Magn. Magn. Mater. 311, 500 (2007).
118.
go back to reference S. Bi and X. Zhang, Adv. Mater. Res. 1088, 38 (2015). S. Bi and X. Zhang, Adv. Mater. Res. 1088, 38 (2015).
119.
go back to reference T. Song, M. Zhou, W. Liu, G. Bian, Y. Qi, F. Bai, and X. Yang, Colloid Polym. Sci. 293, 187 (2015). T. Song, M. Zhou, W. Liu, G. Bian, Y. Qi, F. Bai, and X. Yang, Colloid Polym. Sci. 293, 187 (2015).
120.
go back to reference W. Zhang, Y. Sun, and L. Zhang, Ind. Eng. Chem. Res. 54, 6480 (2015). W. Zhang, Y. Sun, and L. Zhang, Ind. Eng. Chem. Res. 54, 6480 (2015).
121.
go back to reference Y. Wang, P. Jiang, W. Zhang, and J. Zheng, Appl. Surf. Sci. 270, 531 (2013). Y. Wang, P. Jiang, W. Zhang, and J. Zheng, Appl. Surf. Sci. 270, 531 (2013).
122.
go back to reference L. Zhou, X. Li, Z. Yao, Z. Chen, M. Hong, R. Zhu, Y. Liang, and J. Zhao, Sci. Rep. 6, 1 (2016). L. Zhou, X. Li, Z. Yao, Z. Chen, M. Hong, R. Zhu, Y. Liang, and J. Zhao, Sci. Rep. 6, 1 (2016).
123.
go back to reference T. Dong, L. Yang, F. Pan, H. Xing, L. Wang, J. Yu, H. Qu, and M. R. H. Liu, J. Magn. Magn. Mater. 427, 289 (2017). T. Dong, L. Yang, F. Pan, H. Xing, L. Wang, J. Yu, H. Qu, and M. R. H. Liu, J. Magn. Magn. Mater. 427, 289 (2017).
124.
go back to reference S. Yuan, J. Zhang, Z. Yang, S. Tang, B. Liang, and S. O. Pehkonen, New J. Chem. 41, 6475 (2017). S. Yuan, J. Zhang, Z. Yang, S. Tang, B. Liang, and S. O. Pehkonen, New J. Chem. 41, 6475 (2017).
125.
go back to reference F. An, R. Du, X. Wang, M. Wan, X. Dai, and J. Gao, J. Hazard. Mater. 201, 74 (2012).PubMed F. An, R. Du, X. Wang, M. Wan, X. Dai, and J. Gao, J. Hazard. Mater. 201, 74 (2012).PubMed
126.
go back to reference L. Wang, F. Li, M. Yao, T. Qiu, W. Jiang, and L. Fan, React. Funct. Polym. 82, 66 (2014). L. Wang, F. Li, M. Yao, T. Qiu, W. Jiang, and L. Fan, React. Funct. Polym. 82, 66 (2014).
127.
go back to reference L. Lv, J. Zhang, S. Yuan, L. Huang, S. Tang, B. Liang, and S. O. Pehkonen, RSC Adv. 6, 78136 (2016). L. Lv, J. Zhang, S. Yuan, L. Huang, S. Tang, B. Liang, and S. O. Pehkonen, RSC Adv. 6, 78136 (2016).
128.
go back to reference Z. Q. Wei, Z. Wang, R. Y. Hong, and Y. F. Wang, J. Appl. Polym. Sci. 134, 44994 (2017). Z. Q. Wei, Z. Wang, R. Y. Hong, and Y. F. Wang, J. Appl. Polym. Sci. 134, 44994 (2017).
129.
go back to reference C. Liu, X. Zhao, L. Fang, and X. Yue, Adv. Mater. Res. 557, 1078 (2012). C. Liu, X. Zhao, L. Fang, and X. Yue, Adv. Mater. Res. 557, 1078 (2012).
130.
go back to reference J. Zhao, C. Wang, S. Wang, Y. Zhou, and B. Zhang, J. Mol. Liq. 300, 112296 (2020). J. Zhao, C. Wang, S. Wang, Y. Zhou, and B. Zhang, J. Mol. Liq. 300, 112296 (2020).
131.
go back to reference Z. Lu, G. Liu, H. Phillips, J. M. Hill, J. Chang, and R. A. Kydd, Nano Lett. 1, 683 (2001). Z. Lu, G. Liu, H. Phillips, J. M. Hill, J. Chang, and R. A. Kydd, Nano Lett. 1, 683 (2001).
132.
go back to reference Z. Lu, G. Liu, and F. Liu, Macromolecules 34, 8814 (2001). Z. Lu, G. Liu, and F. Liu, Macromolecules 34, 8814 (2001).
133.
go back to reference C. Xiong, S. Wang, L. Zhang, Y. Li, Y. Zhou, and J. Peng, J. Mol. Liq. 254, 340 (2018). C. Xiong, S. Wang, L. Zhang, Y. Li, Y. Zhou, and J. Peng, J. Mol. Liq. 254, 340 (2018).
134.
go back to reference F. Wang, J. Zhao, W. Wang, and Z. Tong, Rare Met. 37, 196 (2018). F. Wang, J. Zhao, W. Wang, and Z. Tong, Rare Met. 37, 196 (2018).
136.
go back to reference Y. Wang, Q. F. Dang, C. Liu, D. Yu, X. Pu, Q. Wang, H. Gao, B. Zhang, and D. Cha, ACS Appl. Mater. Interfaces 10, 40302 (2018).PubMed Y. Wang, Q. F. Dang, C. Liu, D. Yu, X. Pu, Q. Wang, H. Gao, B. Zhang, and D. Cha, ACS Appl. Mater. Interfaces 10, 40302 (2018).PubMed
138.
go back to reference A. A. Galhoum, W. H. Eisa, I. E. El-Sayed, A. A. Tolba, Z. M. Shalaby, S. I. Mohamady, S. S. Muhammad, S. S. Hussien, T. Akashi, and E. Guibal, Environ. Pollut. 264, 114797 (2020). A. A. Galhoum, W. H. Eisa, I. E. El-Sayed, A. A. Tolba, Z. M. Shalaby, S. I. Mohamady, S. S. Muhammad, S. S. Hussien, T. Akashi, and E. Guibal, Environ. Pollut. 264, 114797 (2020).
139.
go back to reference X. Cao, L. Dai, J. Liu, L. Wang, J. He, L. Deng, and J. Lei, Inorg. Chem. Commun. 50, 65 (2014). X. Cao, L. Dai, J. Liu, L. Wang, J. He, L. Deng, and J. Lei, Inorg. Chem. Commun. 50, 65 (2014).
140.
go back to reference R. Hasanzadeh, P. N. Moghadam, N. Bahri-Laleh, and M. Sillanpää, J. Colloid Interface Sci. 490, 727 (2017).PubMed R. Hasanzadeh, P. N. Moghadam, N. Bahri-Laleh, and M. Sillanpää, J. Colloid Interface Sci. 490, 727 (2017).PubMed
141.
go back to reference C. Li, C. Wang, and Y. Wei, J. Chin. Chem. Soc. 65, 1090 (2018). C. Li, C. Wang, and Y. Wei, J. Chin. Chem. Soc. 65, 1090 (2018).
142.
go back to reference R. Fang, X. Ge, M. Du, Z. Li, C. Yang, B. Fang, and Y. Liang, Colloid Polym. Sci. 292, 985 (2014). R. Fang, X. Ge, M. Du, Z. Li, C. Yang, B. Fang, and Y. Liang, Colloid Polym. Sci. 292, 985 (2014).
143.
go back to reference B. Yu, B. Yang, G. Li, and H. Cong, J. Mater. Sci. 53, 6471 (2018). B. Yu, B. Yang, G. Li, and H. Cong, J. Mater. Sci. 53, 6471 (2018).
144.
go back to reference C. Topcular, and H. Ayhan, J. Biomater. Sci. Polym. Ed. 18, 595 (2007).PubMed C. Topcular, and H. Ayhan, J. Biomater. Sci. Polym. Ed. 18, 595 (2007).PubMed
145.
go back to reference C. Liu, B. Wang, Y. Deng, J. Wang, W. Chen, and Y. Liu, Water Sci. Technol.: Water Supply 16, 295 (2016). C. Liu, B. Wang, Y. Deng, J. Wang, W. Chen, and Y. Liu, Water Sci. Technol.: Water Supply 16, 295 (2016).
146.
go back to reference H. Ahmed, M. M. Alam, M. A. Rahman, H. Minami, and M. A. Gafur, Adv. Polym. Technol. 37, 94–103 (2018). H. Ahmed, M. M. Alam, M. A. Rahman, H. Minami, and M. A. Gafur, Adv. Polym. Technol. 37, 94–103 (2018).
147.
go back to reference M. Kaupp, A. P. Vogt, J. C. Natterodt, V. Trouillet, T. Gruendling, T. Hofe, L. Barner, and C. B. Kowollik, Polym. Chem. 3, 2605 (2012). M. Kaupp, A. P. Vogt, J. C. Natterodt, V. Trouillet, T. Gruendling, T. Hofe, L. Barner, and C. B. Kowollik, Polym. Chem. 3, 2605 (2012).
148.
go back to reference J. He, C. Yang, X. Xiong, and B. Jiang, J. Polym. Sci., Part A: Polym. Chem. 50, 2889 (2012). J. He, C. Yang, X. Xiong, and B. Jiang, J. Polym. Sci., Part A: Polym. Chem. 50, 2889 (2012).
149.
go back to reference W. Wang, W. Zhou, J. Li, D. Hao, Z. Su, and G. Ma, Bioproc. Biosyst. Eng. 38, 2107 (2015). W. Wang, W. Zhou, J. Li, D. Hao, Z. Su, and G. Ma, Bioproc. Biosyst. Eng. 38, 2107 (2015).
150.
go back to reference Y. Wang, J. Zhou, C. Wu, L. Tian, B. Zhang, and Q. Zhang, J. Mater. Chem. B 6, 5860 (2018).PubMed Y. Wang, J. Zhou, C. Wu, L. Tian, B. Zhang, and Q. Zhang, J. Mater. Chem. B 6, 5860 (2018).PubMed
151.
go back to reference H. Hlıdkova´, D. Horak, . Proks, Z. Kucerova, M. Pekarek, and J. Kucka, Macromol. Biosci. 13, 503 (2013).PubMed H. Hlıdkova´, D. Horak, . Proks, Z. Kucerova, M. Pekarek, and J. Kucka, Macromol. Biosci. 13, 503 (2013).PubMed
152.
go back to reference J. Kucerova, Z. Svobodova, P. Knotek, J. Palarcik, M. Vlcek, M. Kincl, D. Horak, J. Autebert, J. Viovy, and Z. Bilkova, Mater. Sci. Eng. C 40, 308 (2014). J. Kucerova, Z. Svobodova, P. Knotek, J. Palarcik, M. Vlcek, M. Kincl, D. Horak, J. Autebert, J. Viovy, and Z. Bilkova, Mater. Sci. Eng. C 40, 308 (2014).
153.
go back to reference A. Španová, D. Horák, E. Soudková, and B. Rittich, J. Chromatogr. B 800, 27 (2004). A. Španová, D. Horák, E. Soudková, and B. Rittich, J. Chromatogr. B 800, 27 (2004).
154.
155.
go back to reference K. Zhang, Q. Li, H. Fan, S. Li, Y. Su, L. Zhao, Y. Huang, D. Wang, Z. Zhang, Z. Su, and G. Ma, React. Funct. Polym. 112, 45 (2017). K. Zhang, Q. Li, H. Fan, S. Li, Y. Su, L. Zhao, Y. Huang, D. Wang, Z. Zhang, Z. Su, and G. Ma, React. Funct. Polym. 112, 45 (2017).
156.
go back to reference H. Zhang, S. Bai, L. Xu, and Y. Sun, J. Chromatogr. B 877, 127 (2009). H. Zhang, S. Bai, L. Xu, and Y. Sun, J. Chromatogr. B 877, 127 (2009).
157.
go back to reference R. Zhang, Q. Li, Y. Gao, J. Li, Y. Huang, C. Song, W. Zhou, G. Ma, and Z. Su, J. Chromatogr. A 1343, 109 (2014).PubMed R. Zhang, Q. Li, Y. Gao, J. Li, Y. Huang, C. Song, W. Zhou, G. Ma, and Z. Su, J. Chromatogr. A 1343, 109 (2014).PubMed
158.
go back to reference J. Zhang, L. Qi, W. Zheng, Y. Tian, A. Chi, and Z. Zhang, J. Sep. Sci. 40, 1107 (2017).PubMed J. Zhang, L. Qi, W. Zheng, Y. Tian, A. Chi, and Z. Zhang, J. Sep. Sci. 40, 1107 (2017).PubMed
159.
go back to reference X. Zou, J. Jie, and B. Yang, Chem. Commun. 52, 3251 (2016). X. Zou, J. Jie, and B. Yang, Chem. Commun. 52, 3251 (2016).
160.
go back to reference Z. Xiong, Y. Chen, L. Zhang, J. Ren, Q. Zhang, M. Ye, W. Zhang, and H. Zou, ACS Appl. Mater. Interfaces 6, 22743 (2014).PubMed Z. Xiong, Y. Chen, L. Zhang, J. Ren, Q. Zhang, M. Ye, W. Zhang, and H. Zou, ACS Appl. Mater. Interfaces 6, 22743 (2014).PubMed
161.
go back to reference Y. Yuan, W. X. Lan, L. Yin, H. Y. Kang, J. C. Wei, Z. F. Fei, W. Jie, and Z. R. Yue, Chin. J. Anal. Chem. 44, 1874 (2016). Y. Yuan, W. X. Lan, L. Yin, H. Y. Kang, J. C. Wei, Z. F. Fei, W. Jie, and Z. R. Yue, Chin. J. Anal. Chem. 44, 1874 (2016).
162.
go back to reference B. Jia, M. Cui, C. Yang, S. Hu, and Y. Lv, J. Appl. Polym. Sci. 136, 48019 (2019). B. Jia, M. Cui, C. Yang, S. Hu, and Y. Lv, J. Appl. Polym. Sci. 136, 48019 (2019).
163.
go back to reference X. Jiang, S. Bai, and Y. Sun, J. Chromatogr. B 852, 62 (2007). X. Jiang, S. Bai, and Y. Sun, J. Chromatogr. B 852, 62 (2007).
164.
go back to reference V. Antonyuk, S. Grama, Z. Plichta, I. Magorivska, D. Horak, and R. Stoika, Biomed. Chromatogr. 29, 783 (2015).PubMed V. Antonyuk, S. Grama, Z. Plichta, I. Magorivska, D. Horak, and R. Stoika, Biomed. Chromatogr. 29, 783 (2015).PubMed
165.
go back to reference H. Chen, J. Wei, J. Pan, W. Zhang, F. Dang, Z. Zhang, and J. Zhang, Biosens. Bioelectron. 91, 328 (2017).PubMed H. Chen, J. Wei, J. Pan, W. Zhang, F. Dang, Z. Zhang, and J. Zhang, Biosens. Bioelectron. 91, 328 (2017).PubMed
166.
go back to reference H. Liu, C. Liu, X. Yang, S. Zeng, Y. Xiong, and W. Xu, J. Sep. Sci. 31, 3573 (2008).PubMed H. Liu, C. Liu, X. Yang, S. Zeng, Y. Xiong, and W. Xu, J. Sep. Sci. 31, 3573 (2008).PubMed
167.
go back to reference X. Sun, T. Yu, G. Xu, Y. Du, J. Chen, and X. Li, Chirality 31, 118 (2019).PubMed X. Sun, T. Yu, G. Xu, Y. Du, J. Chen, and X. Li, Chirality 31, 118 (2019).PubMed
168.
go back to reference K. M. Rehan, K. A. Basha, and S. M. Safiullah, J. Inorg. Organomet. Polym. Mater. 29, 1 (2023). K. M. Rehan, K. A. Basha, and S. M. Safiullah, J. Inorg. Organomet. Polym. Mater. 29, 1 (2023).
169.
go back to reference K. M. Rehan, G. Taju, S. Mithra, S. A. Majeed, K. A. Basha, A. S. S. Hameed, and S. M. Safiullah, Water Air Soil. Pollut. 234, 314 (2023). K. M. Rehan, G. Taju, S. Mithra, S. A. Majeed, K. A. Basha, A. S. S. Hameed, and S. M. Safiullah, Water Air Soil. Pollut. 234, 314 (2023).
Metadata
Title
A Review on Engineering of Poly(Glycidyl Methacrylate) Microspheres
Authors
K. M. Rehan
K. A. Basha
S. M. Safiullah
Publication date
09-02-2024
Publisher
Pleiades Publishing
Published in
Polymer Science, Series A / Issue 6/2023
Print ISSN: 0965-545X
Electronic ISSN: 1555-6107
DOI
https://doi.org/10.1134/S0965545X23600606

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