Green Synthesis of Zinc Oxide Nanostructures

T. Isık, Mohamed Elhousseini Hilal, N. Horzum
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引用次数: 14

Abstract

ZnO-based nanomaterials have been proven to be of great use for several leading applications since the beginning of nanoscience due to the abundance of zinc element and the relatively easy conversion of its oxide to nanostructures. Nowadays, ZnO as nanoparticles, nanowires, nanofibers as well as plenty of other sophisticated nanostructures takes place among the pioneer nanomaterials employed in the photovoltaic sys-tems, fuel cells, and biomedical fields. Nevertheless, optimizing energy consumption and being eco-friendly are the challenging requirements that are still to be overcome for their synthesis. Green chemistry has been strongly presented recently in the scientific arena as an adequate potential alternative; worldwide investigations have been held on subjects involving bacteria, fungus, or algae-based synthesis as efficient options, and some of the intriguing scientific findings on this subject are reported hereafter. peltata , red Hypnea Valencia and brown Sargassum myriocystum in the synthesis of ZnO nanoparticles. The results revealed that among three
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氧化锌纳米结构的绿色合成
自纳米科学开始以来,由于锌元素丰富且其氧化物相对容易转化为纳米结构,zno基纳米材料已被证明在几个主要应用中具有很大的用途。目前,氧化锌作为纳米粒子、纳米线、纳米纤维以及许多其他复杂的纳米结构在光伏系统、燃料电池和生物医学领域的纳米材料应用中处于领先地位。然而,优化能源消耗和环保是它们的合成仍然需要克服的具有挑战性的要求。最近在科学领域,绿色化学作为一种充分的潜在替代方案被大力提出;世界范围内的研究已经进行了涉及细菌、真菌或藻类为基础的合成作为有效选择的主题,并在此主题上报道了一些有趣的科学发现。在氧化锌纳米颗粒合成中的应用。结果表明,在三个人中
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