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Erschienen in: Polymer Bulletin 7/2018

23.09.2017 | Original Paper

Rhodamine B-decorated poly(hydroxypropyl acrylate) and their effects on the self-assembly of breath figure arrays

verfasst von: Qian Liu, Chun-Na Yan, Xin-Meng Xu, Li-Ping Wang, Guang Li

Erschienen in: Polymer Bulletin | Ausgabe 7/2018

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Abstract

Novel poly(hydroxypropyl acrylate)-co-poly(hydroxypropyl acrylate)-rhodamine B (PHPA-co-PHPA-RhB) hydrophilic copolymers were synthesized via radical polymerization in this paper. And then the honeycomb-structured porous films were fabricated by dropping the (PHPA-co-PHPA-RhB) copolymers and PS solution on glass substrates by breath figure method (BFM). The effects of solvent, hydrophilic copolymers’ molecular weight, the proportion of hydrophilic copolymers and hydrophobic polymers on the formation of porous films were investigated. The porous films were characterized by scanning electron microscopy (SEM), atomic force microscopy (AFM), spectrofluorometer and confocal laser scanning microscope (CLSM). The results show that PHPA-co-PHPA-RhB and PS solutions can form regular honeycomb porous films; the average diameter of the films pore decreases with the proportion of hydrophobic polystyrene increased. Similar regular was also found when the molecular weight of PHPA-co-PHPA-RhB was enhanced. Furthermore, the fluorescence properties of the porous films were also investigated in this study.

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Literatur
1.
Zurück zum Zitat Li L, Chen CK, Li J, Zhang AJ, Liu XY, Xu B, Gao SB, Jin GH, Ma Z (2009) Robust and hydrophilic polymeric films with honeycomb pattern and their cell scaffold applications. J Mater Chem 19:2789–2796CrossRef Li L, Chen CK, Li J, Zhang AJ, Liu XY, Xu B, Gao SB, Jin GH, Ma Z (2009) Robust and hydrophilic polymeric films with honeycomb pattern and their cell scaffold applications. J Mater Chem 19:2789–2796CrossRef
2.
Zurück zum Zitat Zheng T, Snyder MA (2014) Nanocasting of carbon films with interdigitated bimodal three-dimensionally ordered mesopores by template-replica coassembly. Langmuir 30:12411–12420CrossRef Zheng T, Snyder MA (2014) Nanocasting of carbon films with interdigitated bimodal three-dimensionally ordered mesopores by template-replica coassembly. Langmuir 30:12411–12420CrossRef
3.
Zurück zum Zitat Mattia E, Otto S (2015) Supramolecular systems chemistry. Nat Nanotech 10:111–119CrossRef Mattia E, Otto S (2015) Supramolecular systems chemistry. Nat Nanotech 10:111–119CrossRef
4.
Zurück zum Zitat Ou Y, Lv CJ, Yu W, Mao ZW, Wan LS, Xu ZK (2014) Fabrication of perforated isoporous membranes via a transfer-free strategy: enabling high-resolution separation of cells. ACS Appl Mater Interfaces 6:2400–22407 Ou Y, Lv CJ, Yu W, Mao ZW, Wan LS, Xu ZK (2014) Fabrication of perforated isoporous membranes via a transfer-free strategy: enabling high-resolution separation of cells. ACS Appl Mater Interfaces 6:2400–22407
5.
Zurück zum Zitat Chen PC, Wan LS, Ke BB, Xu ZK (2011) Honeycomb-patterned film segregated with phenylboronic acid for glucose sensing. Langmuir 27:12597–12605CrossRefPubMed Chen PC, Wan LS, Ke BB, Xu ZK (2011) Honeycomb-patterned film segregated with phenylboronic acid for glucose sensing. Langmuir 27:12597–12605CrossRefPubMed
6.
Zurück zum Zitat Wang YR, Liu Y, Li GH, Hao JC (2014) Porphyrin-based honeycomb films and their antibacterial activity. Langmuir 30:6419–6426CrossRefPubMed Wang YR, Liu Y, Li GH, Hao JC (2014) Porphyrin-based honeycomb films and their antibacterial activity. Langmuir 30:6419–6426CrossRefPubMed
7.
Zurück zum Zitat Heng LP, Qin W, Chen SJ, Hu RR, Li J, Zhao N, Wang ST, Tang BZ, Jiang L (2012) Fabrication of small organic luminogens honeycomb-structured films with aggregation-induced emission features. J Mater Chem 22:15869–15873CrossRef Heng LP, Qin W, Chen SJ, Hu RR, Li J, Zhao N, Wang ST, Tang BZ, Jiang L (2012) Fabrication of small organic luminogens honeycomb-structured films with aggregation-induced emission features. J Mater Chem 22:15869–15873CrossRef
8.
Zurück zum Zitat Widawski G, Rawiso M, François B (1994) Self-organized honeycomb morphology of star-polymer polystyrene films. Nature 369:387–389CrossRef Widawski G, Rawiso M, François B (1994) Self-organized honeycomb morphology of star-polymer polystyrene films. Nature 369:387–389CrossRef
9.
Zurück zum Zitat Zhang A, Bai H, Li L (2015) Breath figure: a nature-inspired preparation method for ordered porous films. Chem Rev 115(18):9801–9868CrossRefPubMed Zhang A, Bai H, Li L (2015) Breath figure: a nature-inspired preparation method for ordered porous films. Chem Rev 115(18):9801–9868CrossRefPubMed
10.
Zurück zum Zitat Wong KH, Hernández-Guerrero M, Granville AM, Davis TP, Barner-Kowollik C (2016) Water-assisted formation of honeycomb structured porous films. J Porous Mat 13:213–223CrossRef Wong KH, Hernández-Guerrero M, Granville AM, Davis TP, Barner-Kowollik C (2016) Water-assisted formation of honeycomb structured porous films. J Porous Mat 13:213–223CrossRef
11.
Zurück zum Zitat Yabu H, Hirai Y, Shimomura M (2006) Electroless plating of honeycomb and pincushion polymer films prepared by self-organization. Langmuir 22:9760–9764CrossRefPubMed Yabu H, Hirai Y, Shimomura M (2006) Electroless plating of honeycomb and pincushion polymer films prepared by self-organization. Langmuir 22:9760–9764CrossRefPubMed
12.
Zurück zum Zitat Hsieh SJ, Wang CC, Chen CY (2009) Self-assembling microporous matrix from dendritic-linear copolymers based on a solvent-induced phase separation mechanism. Macromolecules 42:4787–4794CrossRef Hsieh SJ, Wang CC, Chen CY (2009) Self-assembling microporous matrix from dendritic-linear copolymers based on a solvent-induced phase separation mechanism. Macromolecules 42:4787–4794CrossRef
13.
Zurück zum Zitat Connal LA, Vestberg R, Gurr PA, Hawker CJ, Qiao GG (2008) Patterning on nonplanar substrates: flexible honeycomb films from a range of self-assembling star copolymers. Langmuir 24:556–562CrossRefPubMed Connal LA, Vestberg R, Gurr PA, Hawker CJ, Qiao GG (2008) Patterning on nonplanar substrates: flexible honeycomb films from a range of self-assembling star copolymers. Langmuir 24:556–562CrossRefPubMed
14.
Zurück zum Zitat Wan LS, Ke BB, Zhang J, Xu ZK (2012) Pore shape of honeycomb-patterned films: modulation and interfacial behavior. J Phys Chem B 116:40–47CrossRefPubMed Wan LS, Ke BB, Zhang J, Xu ZK (2012) Pore shape of honeycomb-patterned films: modulation and interfacial behavior. J Phys Chem B 116:40–47CrossRefPubMed
15.
Zurück zum Zitat Li ZG, Ma XY, Kong Q, Zang DY, Guan XH, Ren XH (2016) Static and dynamic hydrophobic properties of honeycomb structured films via breath figure method. J Phys Chem C 120:18659–18664CrossRef Li ZG, Ma XY, Kong Q, Zang DY, Guan XH, Ren XH (2016) Static and dynamic hydrophobic properties of honeycomb structured films via breath figure method. J Phys Chem C 120:18659–18664CrossRef
16.
Zurück zum Zitat Martinez-Campos E, Elzein T, Bejjani A, Garcia-Granda MJ, Santos-Coquillat A, Ramos V, Muñoz-Bonilla A, Rodriguez-Hernandez J (2016) Toward cell selective surfaces: cell adhesion and proliferation on breath figures with antifouling surface chemistry. ACS Appl Mater Interfaces 8:6344–6353CrossRefPubMed Martinez-Campos E, Elzein T, Bejjani A, Garcia-Granda MJ, Santos-Coquillat A, Ramos V, Muñoz-Bonilla A, Rodriguez-Hernandez J (2016) Toward cell selective surfaces: cell adhesion and proliferation on breath figures with antifouling surface chemistry. ACS Appl Mater Interfaces 8:6344–6353CrossRefPubMed
17.
Zurück zum Zitat Wu BH, Zhu LW, Ou Y, Tang W, Wan LS, Xu ZK (2015) Systematic investigation on the formation of honeycomb-patterned porous films from amphiphilic block copolymers. J Phys Chem C 119:1971–1979CrossRef Wu BH, Zhu LW, Ou Y, Tang W, Wan LS, Xu ZK (2015) Systematic investigation on the formation of honeycomb-patterned porous films from amphiphilic block copolymers. J Phys Chem C 119:1971–1979CrossRef
18.
Zurück zum Zitat Elisa F, Paola F, Francesco P (2011) Solvent and substrate contributions to the formation of breath figure patterns in polystyrene films. Langmuir 27:1874–1881CrossRef Elisa F, Paola F, Francesco P (2011) Solvent and substrate contributions to the formation of breath figure patterns in polystyrene films. Langmuir 27:1874–1881CrossRef
19.
Zurück zum Zitat Wang LP, Yin KY, Li G, Liu Q, Deng AX, Ma HY (2016) Rhodamine B-loaded star polystyrenes and their luminescent honeycomb-patterned porous films. Reac Funct Polym 99:59–64CrossRef Wang LP, Yin KY, Li G, Liu Q, Deng AX, Ma HY (2016) Rhodamine B-loaded star polystyrenes and their luminescent honeycomb-patterned porous films. Reac Funct Polym 99:59–64CrossRef
20.
Zurück zum Zitat Zhu LW, Yang W, Wan LS, Xu ZK (2014) Synthesis of core cross-linked star polystyrene with functional end groups and self-assemblies templated by breath figures. Polym Chem 5:5175–5182CrossRef Zhu LW, Yang W, Wan LS, Xu ZK (2014) Synthesis of core cross-linked star polystyrene with functional end groups and self-assemblies templated by breath figures. Polym Chem 5:5175–5182CrossRef
21.
Zurück zum Zitat Poly J, Ibarboure E, Meins JFL, Rodriguez-Hernandez J, Taton D, Papon E (2011) Nanogels based on poly(vinyl acetate) for the preparation of patterned porous films. Langmuir 27:4290–4295CrossRefPubMed Poly J, Ibarboure E, Meins JFL, Rodriguez-Hernandez J, Taton D, Papon E (2011) Nanogels based on poly(vinyl acetate) for the preparation of patterned porous films. Langmuir 27:4290–4295CrossRefPubMed
22.
Zurück zum Zitat Yao BJ, Zhu QZ, Yao LL, Hao JC (2015) Fabrication of honeycomb-structured poly(ethylene glycol)-block-poly(lactic acid) porous films and biomedical applications for cell growth. Appl Surf Sci 332:287–294CrossRef Yao BJ, Zhu QZ, Yao LL, Hao JC (2015) Fabrication of honeycomb-structured poly(ethylene glycol)-block-poly(lactic acid) porous films and biomedical applications for cell growth. Appl Surf Sci 332:287–294CrossRef
Metadaten
Titel
Rhodamine B-decorated poly(hydroxypropyl acrylate) and their effects on the self-assembly of breath figure arrays
verfasst von
Qian Liu
Chun-Na Yan
Xin-Meng Xu
Li-Ping Wang
Guang Li
Publikationsdatum
23.09.2017
Verlag
Springer Berlin Heidelberg
Erschienen in
Polymer Bulletin / Ausgabe 7/2018
Print ISSN: 0170-0839
Elektronische ISSN: 1436-2449
DOI
https://doi.org/10.1007/s00289-017-2184-y

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