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通过配位纳米片的顺序金属转移制备的横向异质金属结整流器

Lateral Heterometal Junction Rectifier Fabricated by Sequential Transmetallation of Coordination Nanosheet.

作者信息

Tan Choon Meng, Fukui Naoya, Takada Kenji, Maeda Hiroaki, Selezneva Ekaterina, Bourgès Cédric, Masunaga Hiroyasu, Sasaki Sono, Tsukagoshi Kazuhito, Mori Takao, Sirringhaus Henning, Nishihara Hiroshi

机构信息

Research Institute for Science and Technology, Tokyo University of Science, 2641 Yamazaki, Noda, Chiba 278 8510, Japan.

WPI International Center for Materials Nanoarchitectonics (WPI-MANA), National Institute for Materials Science (NIMS), Namiki 1-1, Tsukuba, 305-0044, Japan.

出版信息

Angew Chem Int Ed Engl. 2024 Feb 26;63(9):e202318181. doi: 10.1002/anie.202318181. Epub 2024 Jan 23.

Abstract

Heterostructures of two-dimensional materials realise novel and enhanced physical phenomena, making them attractive research targets. Compared to inorganic materials, coordination nanosheets have virtually infinite combinations, leading to tunability of physical properties and are promising candidates for heterostructure fabrication. Although stacking of coordination materials into vertical heterostructures is widely reported, reports of lateral coordination material heterostructures are few. Here we show the successful fabrication of a seamless lateral heterojunction showing diode behaviour, by sequential and spatially limited immersion of a new metalladithiolene coordination nanosheet, Zn BHT, into aqueous Cu(II) and Fe(II) solutions. Upon immersion, the Zn centres in insulating Zn BHT are replaced by Cu or Fe ions, resulting in conductivity. The transmetallation is spatially confined, occurring only within the immersed area. We anticipate that our results will be a starting point towards exploring transmetallation of various two-dimensional materials to produce lateral heterojunctions, by providing a new and facile synthetic route.

摘要

二维材料的异质结构实现了新颖且增强的物理现象,使其成为具有吸引力的研究目标。与无机材料相比,配位纳米片具有几乎无限的组合,从而导致物理性质的可调节性,并且是异质结构制造的有前途的候选材料。尽管将配位材料堆叠成垂直异质结构的报道很多,但横向配位材料异质结构的报道却很少。在这里,我们展示了通过将一种新型金属二硫纶配位纳米片Zn BHT依次且在空间上受限地浸入Cu(II)和Fe(II)水溶液中,成功制备出具有二极管行为的无缝横向异质结。浸入后,绝缘的Zn BHT中的Zn中心被Cu或Fe离子取代,从而产生导电性。金属转移在空间上受到限制,仅在浸入区域内发生。我们预计,我们的结果将成为探索各种二维材料的金属转移以产生横向异质结的起点,为其提供一种新的、简便的合成路线。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4ad/11497271/ffa5dde7ade4/ANIE-63-e202318181-g001.jpg

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