首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Tunable infrared radiation properties of hybrid films co-assembled with semiconductor quantum chips and exfoliated ultra-thin LDH nanosheets
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Tunable infrared radiation properties of hybrid films co-assembled with semiconductor quantum chips and exfoliated ultra-thin LDH nanosheets

机译:用半导体量子芯片共组装混合膜的可调谐红外辐射性能,并剥落超薄LDH纳米液

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The controllability of glass surface radiation is of great significance on regulating temperature for applications in energy conservation in residential buildings. In this work, nano-scale hybrid films with tunable surface radiation are successfully prepared via layer-by-layer assembly of exfoliated layered double hydroxide (LDH) nanosheets with In2O3 quantum chips covering the surface of glass substrates. In this hybrid system, the ultra-thin LDH nanosheets are exfoliated from hexagonal plate-like particles of Mg-Al-NO32- LDH nanosheets after anion-exchange of Mg-Al-CO32- LDH nanosheets. And In2O3 semiconductor quantum chips are obtained after an annealing treatment from In(OH)(3) nanosheets which are prepared in sodium oleate/indium chloride hydrothermal system. The prepared LDH nanosheets and In2O3 quantum chips are assembled layer-by-layer onto glass substrates to form the multilayer films. Morphological and structural evolution of the hybrid films is investigated by X-ray diffraction (XRD) and UV-vis absorption spectra. The characterization results show that the hybrid films exhibit ordered tunable structures, which predicts that the infrared emissivity can be adjusted throughout the infrared spectrum. The surface radiation properties of the hybrid films are studied, and the results show that the number of the layers has a significance influence on the surface radiation properties of the films. Attractively, the hybrid films possess thickness-dependent surface radiation properties with the lowest infrared emissivity of 0.420. The nano-scale hybrid films obtained in this work show great tunability on infrared emission and illustrate to be good candidates for saving energy in the field of energy conservation buildings and smart windows. (C) 2018 Elsevier B.V. All rights reserved.
机译:玻璃表面辐射的可控性对住宅建筑中节能应用的温度具有重要意义。在这项工作中,通过用剥离的层状双氢氧化物(LDH)纳米晶片的层 - 逐层组装成功制备具有可调谐表面辐射的纳米垢混合膜,其覆盖玻璃基板表面的IN2O3量子芯片。在该杂交系统中,在Mg-Al-Co32-LDH纳米晶片的阴离子交换后,超薄LDH纳米片被从Mg-Al-No32-LDH纳米液的六边形板状颗粒剥离。并且在从油酸钠/氯化钠水热系统中制备的(OH)(3)纳晶片中的退火处理之后获得IN2O3半导体量子芯片。将制备的LDH纳米片和IN2O3量子芯片组装在玻璃基板上以形成多层膜。通过X射线衍射(XRD)和UV-Vis吸收光谱研究了混合膜的形态学和结构演化。表征结果表明,混合膜表现出有序可调结构,其预测可以在整个红外光谱中调节红外发射率。研究了混合膜的表面辐射特性,结果表明,层的数量对薄膜的表面辐射性质具有重要性。有吸引力地,混合膜具有厚度依赖性表面辐射特性,红外发射率最低为0.420。在这项工作中获得的纳米凝聚杂种薄膜在红外排放方面表现出巨大的可调性,并说明是节能在节能建筑和智能窗口领域的能量的好候选人。 (c)2018年elestvier b.v.保留所有权利。

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