《溶剂热和水热技术用于纳米合成:综述》,作者:Manisha Bora博士

Dinesh Amalnerkar
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引用次数: 0

摘要

在2023年10月诺贝尔化学奖授予三位美国教授Bawendi, Brus和Yekimov的同时,manisha Bora博士带来了一本关于纳米热液和水热技术的小册子,以表彰他们对纳米技术最小组成部分Q Dots的开创性研究。真是太巧了!因此,这本小册子在纳米技术领域是一个及时和受欢迎的补充。它包括在所有12章之后,在最后适当的参考文献。在适当的地方提供了说明图形和综合方程。表1总结了典型纳米材料合成的水热反应和溶剂热反应条件及其重点应用。众所周知,水热/溶剂热合成条件导致形成具有复杂形态特征/分层纳米结构的纳米结构,这反过来又可以提高设想的最终应用的实用性。也许,在这本小册子中包含代表性的FESEM和FETEM图像可能对纳米级地层的清晰度非常有用,也可以证明热液/溶剂热的优点
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review of the Booklet : Solvothermal and Hydrothermal Techniques for Nano-synthesis: An Overview by Dr. Manisha Bora
Dr.Manisha Bora has come with handy booklet on hermal and Hydrothermal Techniques for Nano- in the same timeframe of October 2023 when Nobel prize in Chemistry has been awarded to three American Professors Bawendi, Brus and Yekimov for their pioneering research on Q Dots, the tiniest components of nanotechnology. What a great coincidence! This booklet is thus a timely and welcome addition in the sphere of nanotechnology. It comprises in all 12 chapters followed by apt references at the end. Illustrative figures and synthesis equations are provided at appropriate places. Table-1 furnishes summary of hydrothermal and solvothermal reaction conditions for the synthesis of typical nanomaterials and their focussed end-applications. It is well established that hydrothermal/solvothermal synthesis conditions lead to formation of nanostructures with complex morphological features/ hierarchical nano- architecture which, in turn, can enhance the utility of the envisaged end-application. Perhaps, inclusion of representative FESEM and FETEM images in this booklet could have been very useful for clarity on nano-scale formation and also to prove the merits of hydrothermal/solvothermal
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