Advances in modified silica nanoparticles utilization for various applications: Now and future

The review article explores the multifaceted applications of silica nanoparticles (SNPs) across diverse industries, emphasizing their catalytic role in transformative advancements. Green nanotechnology principles are crucial for sustainable SNP synthesis, with a focus on utilizing natural extracts a...

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Main Authors: Silviana S., Dalanta Febio
Format: Article
Language:English
Published: EDP Sciences 2024-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/33/e3sconf_isac-iccme2023_09004.pdf
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author Silviana S.
Dalanta Febio
author_facet Silviana S.
Dalanta Febio
author_sort Silviana S.
collection DOAJ
description The review article explores the multifaceted applications of silica nanoparticles (SNPs) across diverse industries, emphasizing their catalytic role in transformative advancements. Green nanotechnology principles are crucial for sustainable SNP synthesis, with a focus on utilizing natural extracts and bio-agents. Standardization and enhanced collaboration between industry and academia are pivotal for realizing the broader potential of SNPs. In the biomedical realm, SNPs exhibit exceptional capabilities in drug delivery and diagnostics, promising significant medical advancements. Safe integration necessitates collaborative efforts in safety assessments, long-term studies, and standardized testing. The exploration of SNP-based advanced coatings hints at industry-specific applications, with a recommendation for continued research into new capabilities and compatibility. SNPs in Li-ion batteries show promise for energy storage, urging further investigation into scalability and long-term performance. Agriculture benefits from SNP applications in precision farming, emphasizing the need for environmentally conscious formulations. In nanocomposite materials, SNPs enhance mechanical properties, advocating collaborative research for standardization and optimization. The adaptability of SNP-based smart coatings in aerospace and automotive industries requires exploration of new functionalities and seamless integration. In conclusion, SNPs hold promising prospects in healthcare, energy storage, and agriculture, emphasizing the necessity of collaborative efforts, sustained research, and a commitment to responsible and innovative SNP integration for a technologically advanced and environmentally conscious future.
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spelling doaj.art-b7e58e459fbc41cd81e8ea8426a3ff8c2024-03-22T07:56:07ZengEDP SciencesE3S Web of Conferences2267-12422024-01-015030900410.1051/e3sconf/202450309004e3sconf_isac-iccme2023_09004Advances in modified silica nanoparticles utilization for various applications: Now and futureSilviana S.0Dalanta Febio1Department of Chemical Engineering, Faculty of Engineering, Diponegoro UniversityDepartment of Chemical Engineering, Faculty of Engineering, Diponegoro UniversityThe review article explores the multifaceted applications of silica nanoparticles (SNPs) across diverse industries, emphasizing their catalytic role in transformative advancements. Green nanotechnology principles are crucial for sustainable SNP synthesis, with a focus on utilizing natural extracts and bio-agents. Standardization and enhanced collaboration between industry and academia are pivotal for realizing the broader potential of SNPs. In the biomedical realm, SNPs exhibit exceptional capabilities in drug delivery and diagnostics, promising significant medical advancements. Safe integration necessitates collaborative efforts in safety assessments, long-term studies, and standardized testing. The exploration of SNP-based advanced coatings hints at industry-specific applications, with a recommendation for continued research into new capabilities and compatibility. SNPs in Li-ion batteries show promise for energy storage, urging further investigation into scalability and long-term performance. Agriculture benefits from SNP applications in precision farming, emphasizing the need for environmentally conscious formulations. In nanocomposite materials, SNPs enhance mechanical properties, advocating collaborative research for standardization and optimization. The adaptability of SNP-based smart coatings in aerospace and automotive industries requires exploration of new functionalities and seamless integration. In conclusion, SNPs hold promising prospects in healthcare, energy storage, and agriculture, emphasizing the necessity of collaborative efforts, sustained research, and a commitment to responsible and innovative SNP integration for a technologically advanced and environmentally conscious future.https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/33/e3sconf_isac-iccme2023_09004.pdf
spellingShingle Silviana S.
Dalanta Febio
Advances in modified silica nanoparticles utilization for various applications: Now and future
E3S Web of Conferences
title Advances in modified silica nanoparticles utilization for various applications: Now and future
title_full Advances in modified silica nanoparticles utilization for various applications: Now and future
title_fullStr Advances in modified silica nanoparticles utilization for various applications: Now and future
title_full_unstemmed Advances in modified silica nanoparticles utilization for various applications: Now and future
title_short Advances in modified silica nanoparticles utilization for various applications: Now and future
title_sort advances in modified silica nanoparticles utilization for various applications now and future
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/33/e3sconf_isac-iccme2023_09004.pdf
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AT dalantafebio advancesinmodifiedsilicananoparticlesutilizationforvariousapplicationsnowandfuture