Novel 2D CaCl crystals with metallicity, room-temperature ferromagnetism, heterojunction, piezoelectricity-like property and monovalent calcium ions

石墨烯 材料科学 铁磁性 离子 氧化物 凝聚态物理 铁磁材料性能 异质结 化学工程 价(化学) 无机化学 纳米技术 光电子学 化学 磁场 有机化学 冶金 生物化学 量子力学 物理 工程类 磁化
作者
Lei Zhang,Guosheng Shi,Bingquan Peng,Pengfei Gao,Liang Chen,Ni Zhong,Liuhua Mu,Lijuan Zhang,Peng Zhang,Lu Gou,Yimin Zhao,Shanshan Liang,Jie Jiang,Zejun Zhang,Hongtao Ren,Xiaoling Lei,Ruobing Yi,Yinwei Qiu,Yufeng Zhang,Xing Liu,Minghong Wu,Long Yan,Chun‐Gang Duan,Shengli Zhang,Haiping Fang
出处
期刊:National Science Review [Oxford University Press]
被引量:28
标识
DOI:10.1093/nsr/nwaa274
摘要

Under ambient conditions, the only known valence state of calcium ions is +2, and the corresponding crystals with calcium ions are insulating and nonferromagnetic. Here, using cryo-electron microscopy, we report direct observation of two-dimensional (2D) CaCl crystals on reduced graphene oxide (rGO) membranes, in which the calcium ions are only monovalent (i.e. +1). Remarkably, metallic rather than insulating properties are displayed by those CaCl crystals. More interestingly, room-temperature ferromagnetism, graphene-CaCl heterojunction, coexistence of piezoelectricity-like property and metallicity, as well as the distinct hydrogen storage and release capability of the CaCl crystals in rGO membranes are experimentally demonstrated. We note that such CaCl crystals are obtained by simply incubating rGO membranes in salt solutions below the saturated concentration, under ambient conditions. Theoretical studies suggest that the formation of those abnormal crystals is attributed to the strong cation-π interactions of the Ca cations with the aromatic rings in the graphene surfaces. The findings highlight the realistic potential applications of such abnormal CaCl material with unusual electronic properties in designing novel transistors and magnetic devices, hydrogen storage, catalyzers, high-performance conducting electrodes and sensors, with a size down to atomic scale.
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