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二维Ti C T MXenes:可见黑色但红外白色材料。

2D Ti C T MXenes: Visible Black but Infrared White Materials.

作者信息

Li Yang, Xiong Cheng, Huang He, Peng Xudong, Mei Deqing, Li Meng, Liu Gongze, Wu Maochun, Zhao Tianshou, Huang Baoling

机构信息

Department of Mechanical and Aerospace Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, 999077, China.

School of Mechanical Engineering, Zhejiang University, Hangzhou, 310027, China.

出版信息

Adv Mater. 2021 Oct;33(41):e2103054. doi: 10.1002/adma.202103054. Epub 2021 Aug 31.

Abstract

Black inorganic materials with low infrared absorption/emission (or IR white) are rare in nature but highly desired in numerous areas, such as solar-thermal energy harvesting, multispectral camouflage, thermal insulation, and anti-counterfeiting. Due to the lack of spectral selectivity in intrinsic materials, such counter-intuitive properties are generally realized by constructing complicated subwavelength metamaterials with costly nanofabrication techniques. Here, the intrinsically low mid-IR emissivity (down to 10%) of the 2D Ti C T MXene is reported. Associated with a high solar absorptance (up to 90%), it embraces the best spectral selectivity among the reported intrinsic black solar-absorbing materials. Its appealing potential in several of the aforementioned areas is experimentally demonstrated. First-principles calculations reveal that the IR emissivity of MXene relies on both the nanoflake orientations and terminal groups, indicating great tunability. The calculations also suggest more potential low-emissivity MXenes including Ti CT , Nb CT , and V CT . This work opens the avenue to further exploration of a family of intrinsically low-emissivity materials with over 70 members.

摘要

具有低红外吸收/发射特性的黑色无机材料(即红外白色材料)在自然界中十分罕见,但在太阳能热收集、多光谱伪装、隔热和防伪等众多领域却备受青睐。由于本征材料缺乏光谱选择性,这种与直觉相悖的特性通常通过使用昂贵的纳米制造技术构建复杂的亚波长超材料来实现。在此,我们报道了二维TiC T MXene具有本征的低中红外发射率(低至10%)。结合高太阳能吸收率(高达90%),它在已报道的本征黑色太阳能吸收材料中具有最佳的光谱选择性。我们通过实验证明了它在上述几个领域的诱人潜力。第一性原理计算表明,MXene的红外发射率取决于纳米片的取向和端基,这表明其具有很大的可调性。计算还表明,包括TiCT、NbCT和VCT在内的更多MXene具有潜在的低发射率特性。这项工作为进一步探索包含70多个成员的本征低发射率材料家族开辟了道路。

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