Exfoliation of a non-van der Waals material from iron ore hematite

被引:0
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作者
Aravind Puthirath Balan
Sruthi Radhakrishnan
Cristiano F. Woellner
Shyam K. Sinha
Liangzi Deng
Carlos de los Reyes
Banki Manmadha Rao
Maggie Paulose
Ram Neupane
Amey Apte
Vidya Kochat
Robert Vajtai
Avetik R. Harutyunyan
Ching-Wu Chu
Gelu Costin
Douglas S. Galvao
Angel A. Martí
Peter A. van Aken
Oomman K. Varghese
Chandra Sekhar Tiwary
Anantharaman Malie Madom Ramaswamy Iyer
Pulickel M. Ajayan
机构
[1] Rice University,Department of Materials Science and NanoEngineering
[2] Cochin University of Science and Technology,Department of Physics
[3] State University of Campinas – UNICAMP,Applied Physics Department and Center for Computational Engineering and Sciences
[4] Max Planck Institute for Solid State Research,Stuttgart Center for Electron Microscopy
[5] University of Houston,Texas Center for Superconductivity
[6] Rice University,Department of Chemistry
[7] University of Houston,Department of Physics
[8] Honda Research Institute USA Inc.,Department of Earth, Environmental and Planetary Sciences
[9] Lawrence Berkeley National Lab,undefined
[10] Rice University,undefined
来源
Nature Nanotechnology | 2018年 / 13卷
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摘要
With the advent of graphene, the most studied of all two-dimensional materials, many inorganic analogues have been synthesized and are being exploited for novel applications. Several approaches have been used to obtain large-grain, high-quality materials. Naturally occurring ores, for example, are the best precursors for obtaining highly ordered and large-grain atomic layers by exfoliation. Here, we demonstrate a new two-dimensional material ‘hematene’ obtained from natural iron ore hematite (α-Fe2O3), which is isolated by means of liquid exfoliation. The two-dimensional morphology of hematene is confirmed by transmission electron microscopy. Magnetic measurements together with density functional theory calculations confirm the ferromagnetic order in hematene while its parent form exhibits antiferromagnetic order. When loaded on titania nanotube arrays, hematene exhibits enhanced visible light photocatalytic activity. Our study indicates that photogenerated electrons can be transferred from hematene to titania despite a band alignment unfavourable for charge transfer.
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页码:602 / 609
页数:7
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