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A novel BMSN (biologically synthesized mesoporous silica nanoparticles) material: synthesis using a bacteria-mediated biosurfactant and characterization

Mesoporous materials (MMs) have recently been applied as advanced nanomaterials in different fields (separation, catalysis, adsorption etc.). Synthesis of MMs by chemical surfactants is not ecofriendly. This study focused on the biological synthesis of a MM by sol–gel method, using a Bacillus subtil...

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Autores principales: Sharma, Raju Kumar, Wang, Shau-Chun, Maity, Jyoti Prakash, Banerjee, Pritam, Dey, Gobinda, Huang, Yi-Hsun, Bundschuh, Jochen, Hsiao, Ping-Gune, Chen, Tsung-Hsien, Chen, Chien-Yen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9042205/
https://www.ncbi.nlm.nih.gov/pubmed/35493595
http://dx.doi.org/10.1039/d1ra05852e
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author Sharma, Raju Kumar
Wang, Shau-Chun
Maity, Jyoti Prakash
Banerjee, Pritam
Dey, Gobinda
Huang, Yi-Hsun
Bundschuh, Jochen
Hsiao, Ping-Gune
Chen, Tsung-Hsien
Chen, Chien-Yen
author_facet Sharma, Raju Kumar
Wang, Shau-Chun
Maity, Jyoti Prakash
Banerjee, Pritam
Dey, Gobinda
Huang, Yi-Hsun
Bundschuh, Jochen
Hsiao, Ping-Gune
Chen, Tsung-Hsien
Chen, Chien-Yen
author_sort Sharma, Raju Kumar
collection PubMed
description Mesoporous materials (MMs) have recently been applied as advanced nanomaterials in different fields (separation, catalysis, adsorption etc.). Synthesis of MMs by chemical surfactants is not ecofriendly. This study focused on the biological synthesis of a MM by sol–gel method, using a Bacillus subtilis BBK006-mediated surfactant (template) and a precursor (TEOS). The biologically synthesized mesoporous silica nanoparticles (BMSN) were formed at calcination temperatures of 450–600 °C. The BMSN comprise Si and O elements with specific weights of 56.09% and 42.13% respectively, where the atomic% was detected to be 41.79% and 55.10%, respectively. The phase identity of the synthesized particles (61–300 nm uniform spherical shape; surface area: 8.2616 m(2) g(−1); pore diameter at 550 °C: 14.8516 nm) was confirmed with wide-angle XRD (10°–81°). A typical type IV isotherm was exhibited (BET curves) following IUPAC nomenclature and confirmed the mesoporous nature. The green-synthesized biosurfactant-mediated BMSN is an environmentally promising material to apply in biomedical science (e.g., antimicrobial activity, drug delivery, CMC, anticancer activity) and oil spill management.
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spelling pubmed-90422052022-04-28 A novel BMSN (biologically synthesized mesoporous silica nanoparticles) material: synthesis using a bacteria-mediated biosurfactant and characterization Sharma, Raju Kumar Wang, Shau-Chun Maity, Jyoti Prakash Banerjee, Pritam Dey, Gobinda Huang, Yi-Hsun Bundschuh, Jochen Hsiao, Ping-Gune Chen, Tsung-Hsien Chen, Chien-Yen RSC Adv Chemistry Mesoporous materials (MMs) have recently been applied as advanced nanomaterials in different fields (separation, catalysis, adsorption etc.). Synthesis of MMs by chemical surfactants is not ecofriendly. This study focused on the biological synthesis of a MM by sol–gel method, using a Bacillus subtilis BBK006-mediated surfactant (template) and a precursor (TEOS). The biologically synthesized mesoporous silica nanoparticles (BMSN) were formed at calcination temperatures of 450–600 °C. The BMSN comprise Si and O elements with specific weights of 56.09% and 42.13% respectively, where the atomic% was detected to be 41.79% and 55.10%, respectively. The phase identity of the synthesized particles (61–300 nm uniform spherical shape; surface area: 8.2616 m(2) g(−1); pore diameter at 550 °C: 14.8516 nm) was confirmed with wide-angle XRD (10°–81°). A typical type IV isotherm was exhibited (BET curves) following IUPAC nomenclature and confirmed the mesoporous nature. The green-synthesized biosurfactant-mediated BMSN is an environmentally promising material to apply in biomedical science (e.g., antimicrobial activity, drug delivery, CMC, anticancer activity) and oil spill management. The Royal Society of Chemistry 2021-10-06 /pmc/articles/PMC9042205/ /pubmed/35493595 http://dx.doi.org/10.1039/d1ra05852e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Sharma, Raju Kumar
Wang, Shau-Chun
Maity, Jyoti Prakash
Banerjee, Pritam
Dey, Gobinda
Huang, Yi-Hsun
Bundschuh, Jochen
Hsiao, Ping-Gune
Chen, Tsung-Hsien
Chen, Chien-Yen
A novel BMSN (biologically synthesized mesoporous silica nanoparticles) material: synthesis using a bacteria-mediated biosurfactant and characterization
title A novel BMSN (biologically synthesized mesoporous silica nanoparticles) material: synthesis using a bacteria-mediated biosurfactant and characterization
title_full A novel BMSN (biologically synthesized mesoporous silica nanoparticles) material: synthesis using a bacteria-mediated biosurfactant and characterization
title_fullStr A novel BMSN (biologically synthesized mesoporous silica nanoparticles) material: synthesis using a bacteria-mediated biosurfactant and characterization
title_full_unstemmed A novel BMSN (biologically synthesized mesoporous silica nanoparticles) material: synthesis using a bacteria-mediated biosurfactant and characterization
title_short A novel BMSN (biologically synthesized mesoporous silica nanoparticles) material: synthesis using a bacteria-mediated biosurfactant and characterization
title_sort novel bmsn (biologically synthesized mesoporous silica nanoparticles) material: synthesis using a bacteria-mediated biosurfactant and characterization
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9042205/
https://www.ncbi.nlm.nih.gov/pubmed/35493595
http://dx.doi.org/10.1039/d1ra05852e
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