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纳米晶体中的区域特异性阳离子交换及其在扩展纳米结构库方面的潜力。

Regiospecific Cation Exchange in Nanocrystals and Its Potential in Diversifying the Nanostructural Library.

作者信息

Hong Yongju, Venkateshalu Sandhya, Jeong Sangyeon, Park Jongsik, Lee Kwangyeol

机构信息

Department of Chemistry and Research Institute for Natural Sciences Korea University Seoul 02841 Republic of Korea.

Department of Chemistry Kyonggi University Suwon 16227 Republic of Korea.

出版信息

Small Sci. 2022 Dec 3;3(1):2200063. doi: 10.1002/smsc.202200063. eCollection 2023 Jan.

Abstract

The cation-exchange reaction (CER), a promising nanocrystal (NC) engineering strategy, has undergone rapid progress in the past decade, sparking a big wave of interest in the post-synthetic tuning of chemical compositions, crystal phases, interfaces, morphologies, and corresponding properties. However, a significant gap has existed between the theoretical and actual CERs, hindering the popularization of CERs for explosive expansion in NC designs. A notable roadblock in this area has been the inability to control the site of cation exchange within the nanostructure, although partial cation exchange at desired sites can open an avenue to the vast structural diversity of nanostructures and accompany new physicochemical properties. Several notable successes have been recorded recently in fabricating predesigned hetero-nanostructures by thoroughly understanding the principles of cation exchange and by exploiting the peculiarity of each crystal system. Herein, recent advances achieved in the CER are introduced, unraveling the critical factors controlling regiospecificity by analyzing the developed theories and accumulated experimental results. It is further described how this knowledge can be harnessed to design advanced NCs, and the beneficial effect of regiospecificity on material properties is highlighted. Finally, the challenges and research directions are provided to encourage further research in this burgeoning field.

摘要

阳离子交换反应(CER)是一种很有前景的纳米晶体(NC)工程策略,在过去十年中取得了快速进展,引发了人们对合成后化学成分、晶相、界面、形态及相应性质调控的广泛关注。然而,理论上的CER与实际的CER之间存在显著差距,这阻碍了CER在纳米晶体设计中实现爆发式扩展的推广。该领域一个显著的障碍是无法控制纳米结构内阳离子交换的位点,尽管在期望位点进行部分阳离子交换可为纳米结构的巨大结构多样性开辟一条道路,并带来新的物理化学性质。最近,通过深入理解阳离子交换原理并利用每个晶体系统的特性,在制备预先设计的异质纳米结构方面取得了一些显著成功。在此,介绍了CER最近取得的进展,通过分析已发展的理论和积累的实验结果,揭示了控制区域特异性的关键因素。进一步阐述了如何利用这些知识来设计先进的纳米晶体,并强调了区域特异性对材料性质的有益影响。最后,提出了挑战和研究方向,以鼓励在这个新兴领域进行进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a47/11935895/7e65d3fd6859/SMSC-3-2200063-g005.jpg

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