Skip to main content
Top

2020 | OriginalPaper | Chapter

Spherical Particle Technology and Engineering: Fabrication and Practical Utility

Authors : Małgorzata Stanisz, Łukasz Klapiszewski, Teofil Jesionowski

Published in: Practical Aspects of Chemical Engineering

Publisher: Springer International Publishing

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Recent development of industry has resulted in an increased interest in the preparation of various structures of micro- and nanometric sizes. Intensified experimental research in the field of micro- and nanotechnology has facilitated the explanation of many scientific phenomena and enabled the production of micro- and nanodevices. Spherical structures can be designed to obtain unique properties and find applications in science and industry. In addition, they can be prepared using biodegradable and by-products materials. Micro- and nanomaterials can be used as novel drug delivery systems, adsorbents, supports, catalysts and many other. In this chapter general description of technology of spherical particles is presented.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
go back to reference Augustin, C., Hungerbach, W.: History and Production of Hollow Spheres, pp. 5–30. Springer, Heidelberg (2009) Augustin, C., Hungerbach, W.: History and Production of Hollow Spheres, pp. 5–30. Springer, Heidelberg (2009)
go back to reference Esquena, J., Solans, J.: Phase changes during silica particle formation in water-in-oil emulsions. Colloid Surf. A 183, 533–540 (2001)CrossRef Esquena, J., Solans, J.: Phase changes during silica particle formation in water-in-oil emulsions. Colloid Surf. A 183, 533–540 (2001)CrossRef
go back to reference Gao, Q., Li, H.T., Ling, Y., et al.: Synthesis of MnSiO3 decorated hollow mesoporous silica spheres and its promising application in environmental remediation. Microporous Mesoporous Mater. 241, 409–417 (2017)CrossRef Gao, Q., Li, H.T., Ling, Y., et al.: Synthesis of MnSiO3 decorated hollow mesoporous silica spheres and its promising application in environmental remediation. Microporous Mesoporous Mater. 241, 409–417 (2017)CrossRef
go back to reference Ghasemzadeh, G., Momenpour, M., Omidi, F., et al.: Applications of nanomaterials in water treatment and environmental remediation. Front. Environ. Sci. Eng. 8, 1–12 (2014)CrossRef Ghasemzadeh, G., Momenpour, M., Omidi, F., et al.: Applications of nanomaterials in water treatment and environmental remediation. Front. Environ. Sci. Eng. 8, 1–12 (2014)CrossRef
go back to reference Hu, J., Chen, M., Fang, X., et al.: Fabrication and application of inorganic hollow spheres. Chem. Soc. Rev. 40, 5472–5491 (2011)CrossRef Hu, J., Chen, M., Fang, X., et al.: Fabrication and application of inorganic hollow spheres. Chem. Soc. Rev. 40, 5472–5491 (2011)CrossRef
go back to reference Janetanakit, W., Wang, L., Santacruz-Gomez, K., et al.: Gold–embedded hollow silica nanogolf balls for imaging and photothermal therapy. ACS Appl. Mater. Interface 9, 27533–27543 (2017)CrossRef Janetanakit, W., Wang, L., Santacruz-Gomez, K., et al.: Gold–embedded hollow silica nanogolf balls for imaging and photothermal therapy. ACS Appl. Mater. Interface 9, 27533–27543 (2017)CrossRef
go back to reference Jesionowski, T., Krysztafkiewicz, A.: Production of a highly dispersed sodium-aluminium silicate to be used as a whitepigment or as a polymer filler. Pigm. Resin Technol. 25, 4–14 (1996)CrossRef Jesionowski, T., Krysztafkiewicz, A.: Production of a highly dispersed sodium-aluminium silicate to be used as a whitepigment or as a polymer filler. Pigm. Resin Technol. 25, 4–14 (1996)CrossRef
go back to reference Jędrzak, A., Rębiś, T., Nowicki, M., et al.: Polydopamine grafted on an advanced Fe3O4/lignin hybrid material and its evaluation in biosensing. Appl. Surf. Sci. 455, 455–464 (2018)CrossRef Jędrzak, A., Rębiś, T., Nowicki, M., et al.: Polydopamine grafted on an advanced Fe3O4/lignin hybrid material and its evaluation in biosensing. Appl. Surf. Sci. 455, 455–464 (2018)CrossRef
go back to reference Jędrzak, A., Rębiś, T., Kuznowicz, M., et al.: Bio-inspired magnetite/lignin/polydopamine-glucose oxidase biosensing nanoplatform. From synthesis, via sensing assays to comparison with others glucose testing techniques. Int. J. Biol. Macromol. 127, 677–682 (2019)CrossRef Jędrzak, A., Rębiś, T., Kuznowicz, M., et al.: Bio-inspired magnetite/lignin/polydopamine-glucose oxidase biosensing nanoplatform. From synthesis, via sensing assays to comparison with others glucose testing techniques. Int. J. Biol. Macromol. 127, 677–682 (2019)CrossRef
go back to reference Kerdlap, W., Thongpitaka, C., Keawmaungkom, S., et al.: Natural rubber as a template for making hollow silica spheres and their use as antibacterial agents. Microporous Mesoporous Mater. 273, 10–18 (2019)CrossRef Kerdlap, W., Thongpitaka, C., Keawmaungkom, S., et al.: Natural rubber as a template for making hollow silica spheres and their use as antibacterial agents. Microporous Mesoporous Mater. 273, 10–18 (2019)CrossRef
go back to reference Klapiszewski, Ł., Królak, M., Jesionowski, J.: Silica synthesis by the sol–gel method and its use in the preparation of multifunctional biocomposites. Cent. Eur. J. Chem. 12, 173–184 (2014)CrossRef Klapiszewski, Ł., Królak, M., Jesionowski, J.: Silica synthesis by the sol–gel method and its use in the preparation of multifunctional biocomposites. Cent. Eur. J. Chem. 12, 173–184 (2014)CrossRef
go back to reference Klapiszewski, Ł., Rzemieniecki, T., Krawczyk, M., et al.: Kraft lignin/silica–AgNPs as a functional material with antibacterial activity. Colloids Surf. B 134, 220–228 (2015)CrossRef Klapiszewski, Ł., Rzemieniecki, T., Krawczyk, M., et al.: Kraft lignin/silica–AgNPs as a functional material with antibacterial activity. Colloids Surf. B 134, 220–228 (2015)CrossRef
go back to reference Kolesnikova, T.A., Gorin, D.A., Fernandes, P., et al.: Nanocomposite microcontainers with high ultrasound sensitivity. Adv. Funct. Mater. 20, 1189–1195 (2010)CrossRef Kolesnikova, T.A., Gorin, D.A., Fernandes, P., et al.: Nanocomposite microcontainers with high ultrasound sensitivity. Adv. Funct. Mater. 20, 1189–1195 (2010)CrossRef
go back to reference Kong, C.C., Tang, L.L., Zhang, X.Z., et al.: Templating synthesis of hollow CuO polyhedron and its application for nonenzymatic glucose detection. J. Mater. Chem. A 2, 7306–7312 (2014)CrossRef Kong, C.C., Tang, L.L., Zhang, X.Z., et al.: Templating synthesis of hollow CuO polyhedron and its application for nonenzymatic glucose detection. J. Mater. Chem. A 2, 7306–7312 (2014)CrossRef
go back to reference Kumar, B.S., Amali, A.J., Pitchumani, K.: Mesoporous microcapsules through D-glucose promoted hydrothermal self–assembly of colloidal silica: Reusable catalytic containers for palladium catalyzed hydrogenation reactions. ACS Sustain. Chem. Eng. 5, 667–674 (2016)CrossRef Kumar, B.S., Amali, A.J., Pitchumani, K.: Mesoporous microcapsules through D-glucose promoted hydrothermal self–assembly of colloidal silica: Reusable catalytic containers for palladium catalyzed hydrogenation reactions. ACS Sustain. Chem. Eng. 5, 667–674 (2016)CrossRef
go back to reference Li, S., Cai, J., Wua, X., et al.: Sandwich–like TiO2@ZnO–based noble metal (Ag, Au, Pt, or Pd) for better photo–oxidation performance: synergistic effect between noble metal and metal oxide phases. Appl. Surf. Sci. 443, 603–612 (2018)CrossRef Li, S., Cai, J., Wua, X., et al.: Sandwich–like TiO2@ZnO–based noble metal (Ag, Au, Pt, or Pd) for better photo–oxidation performance: synergistic effect between noble metal and metal oxide phases. Appl. Surf. Sci. 443, 603–612 (2018)CrossRef
go back to reference Liu, J., Yang, H.Q., Kleitz, F., et al.: Yolk–shell hybrid materials with a periodic mesoporous organosilica shell: ideal nanoreactors for selective alcohol oxidation. Adv. Funct. Mater. 22, 591–599 (2012)CrossRef Liu, J., Yang, H.Q., Kleitz, F., et al.: Yolk–shell hybrid materials with a periodic mesoporous organosilica shell: ideal nanoreactors for selective alcohol oxidation. Adv. Funct. Mater. 22, 591–599 (2012)CrossRef
go back to reference Matijević, E.: Preparation and properties of uniform size colloids. Chem. Mater. 5, 412–426 (1993)CrossRef Matijević, E.: Preparation and properties of uniform size colloids. Chem. Mater. 5, 412–426 (1993)CrossRef
go back to reference Mirzaei, A., Kim, J.H., Kim, H.W., et al.: How shell thickness can affect the gas sensing properties of nanostructured materials: survey of literature. Sens. Actuator B Chem. 258, 270–294 (2018)CrossRef Mirzaei, A., Kim, J.H., Kim, H.W., et al.: How shell thickness can affect the gas sensing properties of nanostructured materials: survey of literature. Sens. Actuator B Chem. 258, 270–294 (2018)CrossRef
go back to reference Mitra, A., De, G.: Sol–gel synthesis of metal nanoparticle incorporated oxide films on glass in Glass Nanocomposites. In: Karmakar, B., Rademann, K., Stepanov, A.L. (eds.) Glass Nanocomposites: Synthesis, Properties and Applications, pp. 145–163. Elsevier Inc., Amsterdam (2016)CrossRef Mitra, A., De, G.: Sol–gel synthesis of metal nanoparticle incorporated oxide films on glass in Glass Nanocomposites. In: Karmakar, B., Rademann, K., Stepanov, A.L. (eds.) Glass Nanocomposites: Synthesis, Properties and Applications, pp. 145–163. Elsevier Inc., Amsterdam (2016)CrossRef
go back to reference Modrzejewska-Sikorska, A., Konował, E., Cichy, A., et al.: The effect of silver salts and lignosulfonates in the synthesis of lignosulfonate-stabilized silver nanoparticles. J. Mol. Liq. 240, 80–86 (2017)CrossRef Modrzejewska-Sikorska, A., Konował, E., Cichy, A., et al.: The effect of silver salts and lignosulfonates in the synthesis of lignosulfonate-stabilized silver nanoparticles. J. Mol. Liq. 240, 80–86 (2017)CrossRef
go back to reference Muresan, L.M.: Corrosion protective coatings for Ti and Ti alloys used for biomedical implants. In: Tiwari, A., Rawlins, J., Hihara, L.H. (eds.) Intelligent Coatings for Corrosion Control, pp. 585–602. Elsevier Inc., Amsterdam (2015)CrossRef Muresan, L.M.: Corrosion protective coatings for Ti and Ti alloys used for biomedical implants. In: Tiwari, A., Rawlins, J., Hihara, L.H. (eds.) Intelligent Coatings for Corrosion Control, pp. 585–602. Elsevier Inc., Amsterdam (2015)CrossRef
go back to reference Nguyen, C.C., Vu, N.N., Do, T.-O.: Recent advances in the development of sunlight–driven hollow structure photocatalysts and their applications. J. Mater. Chem. A 3, 18345–18359 (2015)CrossRef Nguyen, C.C., Vu, N.N., Do, T.-O.: Recent advances in the development of sunlight–driven hollow structure photocatalysts and their applications. J. Mater. Chem. A 3, 18345–18359 (2015)CrossRef
go back to reference Prockop, L.D., Chichkova, R.I.J.: Carbon monoxide intoxication: an updated review. Neurol Sci 262, 122–130 (2007)CrossRef Prockop, L.D., Chichkova, R.I.J.: Carbon monoxide intoxication: an updated review. Neurol Sci 262, 122–130 (2007)CrossRef
go back to reference Rafi, A.A., Mahkam, M., Davaran, S., et al.: A smart pH–responsive nano–carrier as a drug delivery system: a hybrid system comprised of mesoporous nanosilica MCM–41 (as a nano–container) & a pH–sensitive polymer (as smart reversible gatekeepers): preparation, characterization and in vitro release studies of an anti–cancer drug. Eur. J. Pharm. Biopharm. 93, 64–73 (2016) Rafi, A.A., Mahkam, M., Davaran, S., et al.: A smart pH–responsive nano–carrier as a drug delivery system: a hybrid system comprised of mesoporous nanosilica MCM–41 (as a nano–container) & a pH–sensitive polymer (as smart reversible gatekeepers): preparation, characterization and in vitro release studies of an anti–cancer drug. Eur. J. Pharm. Biopharm. 93, 64–73 (2016)
go back to reference Rao, B.G., Mukherjee, D., Reddy, B.M.: Novel approaches for preparation of nanoparticles. In: Ficai, D., Grumezescu, A. (eds.) Nanostructures for Novel Therapy, pp. 1–36. Elsevier Inc., Amsterdam (2017) Rao, B.G., Mukherjee, D., Reddy, B.M.: Novel approaches for preparation of nanoparticles. In: Ficai, D., Grumezescu, A. (eds.) Nanostructures for Novel Therapy, pp. 1–36. Elsevier Inc., Amsterdam (2017)
go back to reference Sadjadi, S., Malmir, M., Heravi, M.M.: A green approach to the synthesis of Ag doped nano magnetic g–Fe2O3@SiO2–CD core–shell hollow spheres as an efficient and heterogeneous catalyst for ultrasonic–assisted A3 and KA2 coupling reactions. RSC Adv. 7, 36807–36818 (2017)CrossRef Sadjadi, S., Malmir, M., Heravi, M.M.: A green approach to the synthesis of Ag doped nano magnetic g–Fe2O3@SiO2–CD core–shell hollow spheres as an efficient and heterogeneous catalyst for ultrasonic–assisted A3 and KA2 coupling reactions. RSC Adv. 7, 36807–36818 (2017)CrossRef
go back to reference Shchukin, D.G., Köhler, K., Möhwald, H.: Microcontainers with electrochemically reversible permeability. J. Am. Chem. Soc. 128, 4560–4561 (2006)CrossRef Shchukin, D.G., Köhler, K., Möhwald, H.: Microcontainers with electrochemically reversible permeability. J. Am. Chem. Soc. 128, 4560–4561 (2006)CrossRef
go back to reference Snoussi, Y., Bastide, S., Manef, A., et al.: Sonochemical synthesis of Fe3O4@NH2–mesoporous silica@Polypyrrole/Pd: a core/double shell nanocomposite for catalytic applications. Ultrason-Sonochem 41, 551–561 (2018)CrossRef Snoussi, Y., Bastide, S., Manef, A., et al.: Sonochemical synthesis of Fe3O4@NH2–mesoporous silica@Polypyrrole/Pd: a core/double shell nanocomposite for catalytic applications. Ultrason-Sonochem 41, 551–561 (2018)CrossRef
go back to reference Sondi, I., Salopek-Sondi, B.: Silver nanoparticles as antimicrobial agent: a case study on E. coli as a model for Gram–negative bacteria. J. Colloid Interface Sci. 275, 177–182 (2004)CrossRef Sondi, I., Salopek-Sondi, B.: Silver nanoparticles as antimicrobial agent: a case study on E. coli as a model for Gram–negative bacteria. J. Colloid Interface Sci. 275, 177–182 (2004)CrossRef
go back to reference Stöber, W., Fink, A., Bohn, E.: Controlled growth of monodisperse silica spheres in the micron size range. J. Colloid Interface Sci. 26, 62–69 (1968)CrossRef Stöber, W., Fink, A., Bohn, E.: Controlled growth of monodisperse silica spheres in the micron size range. J. Colloid Interface Sci. 26, 62–69 (1968)CrossRef
go back to reference Tardy, B.L., Richardson, J.J., Guo, J., et al.: Lignin nano– and microparticles as template for nanostructured materials: formation of hollow metal–phenolic capsules. Green Chem. 20, 1335–1344 (2018)CrossRef Tardy, B.L., Richardson, J.J., Guo, J., et al.: Lignin nano– and microparticles as template for nanostructured materials: formation of hollow metal–phenolic capsules. Green Chem. 20, 1335–1344 (2018)CrossRef
go back to reference Wang, H., Zhao, L., Song, G., et al.: Organic–inorganic hybrid shell microencapsulated phase change materials prepared from SiO2/TiC–stabilized pickering emulsion polymerization. Sol. Energy Mater. Sol. Cells 175, 102–110 (2018)CrossRef Wang, H., Zhao, L., Song, G., et al.: Organic–inorganic hybrid shell microencapsulated phase change materials prepared from SiO2/TiC–stabilized pickering emulsion polymerization. Sol. Energy Mater. Sol. Cells 175, 102–110 (2018)CrossRef
go back to reference Wang, J., Zhao, G., Wang, X., et al.: Synthesis of magnetic thermosensitive microcontainers for enzyme immobilization. J. Nanopart. Res. 17, 1–11 (2015)CrossRef Wang, J., Zhao, G., Wang, X., et al.: Synthesis of magnetic thermosensitive microcontainers for enzyme immobilization. J. Nanopart. Res. 17, 1–11 (2015)CrossRef
go back to reference Wang, X., Feng, J., Bai, Y., et al.: Synthesis, properties, and applications of hollow micro–/nanostructures. Chem. Rev. 16, 10983–11060 (2016)CrossRef Wang, X., Feng, J., Bai, Y., et al.: Synthesis, properties, and applications of hollow micro–/nanostructures. Chem. Rev. 16, 10983–11060 (2016)CrossRef
go back to reference Wei, H., Wang, Y., Guo, J., et al.: Advanced micro/nanocapsules for self–healing smart anticorrosion coatings. J. Mater. Chem. A 3, 469–480 (2015)CrossRef Wei, H., Wang, Y., Guo, J., et al.: Advanced micro/nanocapsules for self–healing smart anticorrosion coatings. J. Mater. Chem. A 3, 469–480 (2015)CrossRef
go back to reference Wu, H., Wang, Y., Zheng, C., et al.: Multi–shelled NiO hollow spheres: easy hydrothermal synthesis and lithium storage performances. J. Alloys Compd. 685, 8–14 (2016)CrossRef Wu, H., Wang, Y., Zheng, C., et al.: Multi–shelled NiO hollow spheres: easy hydrothermal synthesis and lithium storage performances. J. Alloys Compd. 685, 8–14 (2016)CrossRef
go back to reference Xu, H., Wang, W.: Template synthesis of multishelled Cu2O hollow spheres with a single–crystalline shell wall. Angew. Chem. 119, 1511–1514 (2007) Xu, H., Wang, W.: Template synthesis of multishelled Cu2O hollow spheres with a single–crystalline shell wall. Angew. Chem. 119, 1511–1514 (2007)
go back to reference Yiamsawas, D., Baier, G., Thines, E., et al.: Biodegradable lignin nanocontainers. RSC Adv. 4, 11661–11663 (2014)CrossRef Yiamsawas, D., Baier, G., Thines, E., et al.: Biodegradable lignin nanocontainers. RSC Adv. 4, 11661–11663 (2014)CrossRef
go back to reference Yu, L., Wu, H.B., Lou, X.W.D.: Self–templated formation of hollow structures for electrochemical energy. Acc. Chem. Res. 50, 293–301 (2017)CrossRef Yu, L., Wu, H.B., Lou, X.W.D.: Self–templated formation of hollow structures for electrochemical energy. Acc. Chem. Res. 50, 293–301 (2017)CrossRef
go back to reference Yu, L., Yu, X.Y., Lou, X.W.: The design and synthesis of hollow micro–/nanostructures: present and future trends. Adv. Mater. 30, 1–27 (2018) Yu, L., Yu, X.Y., Lou, X.W.: The design and synthesis of hollow micro–/nanostructures: present and future trends. Adv. Mater. 30, 1–27 (2018)
Metadata
Title
Spherical Particle Technology and Engineering: Fabrication and Practical Utility
Authors
Małgorzata Stanisz
Łukasz Klapiszewski
Teofil Jesionowski
Copyright Year
2020
DOI
https://doi.org/10.1007/978-3-030-39867-5_45