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Tin oxide based nanostructured materials: synthesis and potential applications

机译:基于氧化锡纳米材料:合成和应用前景

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In view of their inimitable characteristics and properties, SnO2 nanomaterials and nanocomposites have been used not only in the field of diverse advanced catalytic technologies and sensors but also in the field of energy storage such as lithium-ion batteries and supercapacitors, and in the field of energy production such as solar cells and water splitting. This review discusses the various synthesis techniques such as traditional methods, including processes like thermal decomposition, chemical vapor deposition, electrospinning, sol–gel, hydrothermal, solvothermal, and template-mediated methods and green methods, which include synthesis through plant-mediated, microbe-mediated, and biomolecule-mediated processes. Moreover, the advantages and limitations of these synthesis procedures and how to overcome them that would lead to future research are also discussed. This literature also focuses on various applications such as environmental remediation, energy production, energy storage, and removal of biological contaminants. Therefore, the rise and journey of SnO2-based nanocomposites will motivate the modern generation of chemists to modify and design robust nanoparticles and nanocomposites that can effectively tackle significant environmental challenges. This overview concludes by providing future perspectives on research into tin oxide in synthesis and its various applications.
机译:鉴于其独特的特点属性,SnO2纳米材料和纳米复合材料已经使用不仅在不同的领域吗先进的催化技术和传感器在储能等领域锂离子电池和超级电容器,太阳能等能源生产领域细胞分裂和水。各种合成等技术传统的方法,包括流程热分解、化学汽相淀积电纺的,溶胶-凝胶法、水热solvothermal, template-mediated方法和绿色的方法,包括合成plant-mediated microbe-mediated,biomolecule-mediated流程。这些合成的优点和局限性程序和如何克服它们导致未来的研究进行了讨论。文学还集中在各种应用程序环境治理、能源等生产、能源存储和删除生物污染物。之旅SnO2-based纳米复合材料激励现代代的化学家健壮的纳米颗粒和修改和设计纳米复合材料,可以有效地解决重要的环境挑战。概述总结,提供未来观点研究二氧化锡合成及其各种应用程序。

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