arrow
返回

Van der Waals Electrides

delete2024-08-19
delete0
PRE
AI
J
Jun Zhou
尤景阳 (Jing‐Yang You)
Y
Yi-Ming Zhao
Y
Yuan Ping Feng
沈蕾 封面图
沈蕾 (Lei Shen) *
DOI:10.1021/acs.accounts.4c00394delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Electrides make up a fascinating group of materials with unique physical and chemical properties. In these materials, excess electrons do not behave like normal electrons in metals or form any chemical bonds with atoms. Instead, they float freely in the gaps within the material's structure, acting like negatively charged particles called anions (see the graph). Recently, there has been a surge of interest in van der Waals (vdW) electrides or electrenes in two dimensions. A typical example is layered lanthanum bromide (LaBr2), which can be taken as [La3+(Br1-)(2)](+)center dot(e(-)). Each excess free electron is trapped within a hexagonal pore, forming dense dots of electron density. These anionic electrons are loosely bound, giving vdW electrides some unique properties such as ferromagnetism, superconductivity, topological features, and Dirac plasmons. The high density of the free electron makes electrides very promising for applications in thermionic emission, organic light-emitting diodes, and high-performance catalysts. In this Account, we first discuss the discovery of numerous vdW electrides through high-throughput computational screening of over 67,000 known inorganic crystals in Materials Project. A dozen of them have been newly discovered and have not been reported before. Importantly, they possess completely different structural prototypes and properties of anionic electrons compared to widely studied electrides such as Ca2N. Finding these new vdW electrides expands the variety of electrides that can be made in the experiment and opens up new possibilities for studying their unique properties and applications. Then, based on the screened vdW electrides, we delve into their various emerging properties. For example, we developed a new magnetic mechanism specific to atomic-orbital-free ferromagnetism in electrides. We uncover the dual localized and extended nature of the anionic electrons in such electrides and demonstrate the formation of the local moment by the localized feature and the ferromagnetic interaction by the direct overlapping of their extended states. We further show the effective tuning of the magnetic properties of vdW electrides by engineering their structural, electronic, and compositional properties. Besides, we show that the complex interaction between the multiple quantum orderings in vdW electrides leads to many interesting properties including valley polarization, charge density waves, a topological property, a superconducting property, and a thermoelectrical property. Moreover, we discuss strategies to leverage the unique intrinsic properties of vdW electrides for practical applications. We show that these properties make vdW electrides potential candidates for advanced applications such as spin-orbit torque memory devices, valleytronic devices, K-ion batteries, and thermoelectricity. Finally, we discuss the current challenges and future perspectives for research using these emerging materials.
Keyword:
2-DIMENSIONAL ELECTRIDE
CESIUM 18-CROWN-6
PREDICTION
CRYSTAL

期刊

Accounts of Chemical Research 封面图
Accounts of Chemical Research
IF:
17.7
论文数:
6.3K
被引数:
8.7W

机构

A
a*star - institute of materials research & engineering (imre)
学者数:
2.5K
论文数: 2.0K
被引数: 11
A
agency for science technology & research (a*star)
学者数:
2.2W
论文数: 1.9W
被引数: 57
N
National University of Singapore
学者数:
7.6W
论文数: 6.5W
被引数: 11.4W
学者 查看更多机构
引用论文

引用论文

wannier90: A tool for obtaining maximally-localised Wannier functionswannier90: 一种获得最大本地化Wannier函数的工具
err2008-05-01
err3.3K
errOAAI
errMostofi, Arash A.; Yates, Jonathan R.; Lee, Young-Su; Souza, Ivo; Vanderbilt, David; Marzari, Nicola
err分享
err收藏
Two-dimensional intrinsic ferrovalley GdI2 with large valley polarization
err2021-03-10
err132
PREAI
errCheng, Hai-Xia; Zhou, Jun; Ji, Wei; Zhang, Yan-Ning; Feng, Yuan-Ping
err分享
err收藏
Recent advances and applications of deep learning methods in materials science深度学习方法在材料科学中的最新进展与应用
err2022-04-05
err407
errOAAI
errChoudhary, Kamal; DeCost, Brian; Chen, Chi; Jain, Anubhav; Tavazza, Francesca; Cohn, Ryan; Park, Cheol Woo; Choudhary, Alok; Agrawal, Ankit; Billinge, Simon J. L.; Holm, Elizabeth; Ong, Shyue Ping; Wolverton, Chris
err分享
err收藏
Sunscreens
err2014-07-01
err0
PREAI
errSilvia E. Mancebo; Judy Y. Hu; Steven Q. Wang
err分享
err收藏
err分享
err收藏
err分享
err收藏
Exploration of Stable Strontium Phosphide-Based Electrides: Theoretical Structure Prediction and Experimental Validation
err2017-10-26
err90
PREAI
errWang, Junjie; Hanzawa, Kota; Hiramatsu, Hidenori; Kim, Junghwan; Umezawa, Naoto; Iwanaka, Koki; Tada, Tomofumi; Hosono, Hideo
err分享
err收藏
学者 查看更多内容