ZnO nanostructured materials and their potential applications: progress, challenges and perspectives
Наноструктурированные материалы на основе ZnO и их потенциальные применения: достижения, проблемы и перспективы
2022-01-01
SCID: 54.1/w36rbdrt
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ZnO nanostructured materialsapplications (photocatalysis, biomedical, rubber, pharmaceutical, cosmetics, textile, opto-electronics, agriculture)green synthesis (plant extract-mediated ZnO nanoparticles)surface modification (carboxylic acids, silanes, metal oxides, polymer matrices)synthesis methods (mechanochemical, sol-gel, vapour transport, solvothermal, hydrothermal, precipitation, emulsion/micro-emulsion)
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Abstract (AI)
, the mechanochemical process, controlled precipitation, sol-gel method, vapour transport method, solvothermal and hydrothermal methods, and methods using emulsion and micro-emulsion environments. The paper further describes the green methods employing the use of plant extracts, in particular, for the synthesis of ZnO NPs. The modifications of ZnO with organic (carboxylic acid, silanes) and inorganic (metal oxides) compounds and polymer matrices have then been described. The multitudinous applications of ZnO NPs across a variety of fields such as the rubber industry, pharmaceutical industry, cosmetics, textile industry, opto-electronics and agriculture have been presented. Elaborative narratives on the photocatalytic and a variety of biomedical applications of ZnO have also been included. The ecotoxic impacts of ZnO NPs have additionally been briefly highlighted. Finally, efforts have been made to examine the current challenges and future scope of the synthetic modes and applications of ZnO NPs.
Key Findings
1
Green synthesis of ZnO nanoparticles using plant extracts is described as a viable environmentally friendly route.
2
Surface modification strategies for ZnO are detailed, including organic modifiers (carboxylic acids, silanes), inorganic metal oxides, and incorporation into polymer matrices.
3
The review highlights ecotoxicological impacts of ZnO nanoparticles and discusses current challenges and future directions for synthesis methods and applications.
4
The review summarizes multiple synthesis methods for ZnO nanostructures, including mechanochemical, controlled precipitation, sol-gel, vapor transport, solvothermal/hydrothermal, and (micro)emulsion techniques.
5
ZnO nanoparticles have multifunctional applications across rubber, pharmaceutical, cosmetic, textile, optoelectronic, and agricultural industries, with explicit emphasis on photocatalytic and diverse biomedical uses.
Research Object
Zinc oxide (ZnO) nanostructured materials / ZnO nanoparticles
Research Subject
Synthesis methods, surface modifications, applications (photocatalytic, biomedical, industrial sectors), ecotoxic impacts, and challenges/future perspectives of ZnO nanostructured materials
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2022-01-01
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