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首页> 外文期刊>Journal of Colloid and Interface Science >Self-floating black phosphorous nanosheets as a carry-on solar vapor generator
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Self-floating black phosphorous nanosheets as a carry-on solar vapor generator

机译:自漂浮黑色磷纳米片作为随身携带太阳能蒸汽发生器

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Efficient solar vapor generation has provided a feasible way to solve the water shortage in undeveloped and arid areas. However, some photo-thermal materials need additional large-volume support materials being harmful to carry around to obtain float capacity, while suppressing the solar steam generation. Herein, the decrease approach of surface tension was presented for solving the moist-environment degradation behavior of black phosphorus (BP) nanosheets and obtaining the self-floating capacity, thus applying BP nanosheets in solar vapor generation field. With the in situ cross-linking polymerization, trichloro (1H,1H,2H,2H-perfluorooctyl) silane successfully modified BP nanosheets (F-BP). Due to the significantly decreased surface tension, F-BP nanosheets are capable of self-floating easily on water surface and spreading out spontaneously. With assistance of desirable photo-thermal conversion capacity, self-floating BP nanosheets convert the incident photon into local heat, showing excellent vapor generation performance. With simulated sun illumination (1 kW/m(2)), 238.7 g/m(2) BP nanosheets present the evaporation rate of similar to 0.9437 kg/(m(2).h) and efficiency of similar to 64.63 +/- 2.3%. Meanwhile, the superhydrophobicity successfully imparts BP nanosheets with resistance to the deterioration caused by salt precipitation. The carriable F-BP nanosheets are an ideal photo-thermal convertor to produce drinking water, successfully providing a feasible way to solve water shortage in limited condition. (C) 2020 Elsevier Inc. All rights reserved.
机译:高效的太阳能蒸汽发电为解决欠发达和干旱地区的缺水问题提供了一条可行的途径。然而,一些光热材料需要额外的大体积支撑材料,这些材料对携带有害,以获得浮力,同时抑制太阳能蒸汽的产生。本文提出了降低表面张力的方法,以解决黑磷(BP)纳米片在潮湿环境中的降解行为,并获得自浮能力,从而将BP纳米片应用于太阳能蒸汽发生领域。通过原位交联聚合,三氯(1H,1H,2H,2H全氟辛基)硅烷成功地修饰了BP纳米片(F-BP)。由于表面张力显著降低,F-BP纳米片能够很容易地在水面上自浮并自发扩散。借助理想的光热转换能力,自浮BP纳米片将入射光子转换为局部热量,显示出优异的蒸汽生成性能。在模拟太阳光照(1 kW/m(2))下,238.7 g/m(2)BP纳米片的蒸发率与0.9437 kg/(m(2)相近。h) 效率为64.63+/-2.3%。同时,超疏水性成功地赋予BP纳米片抗盐沉淀引起的劣化的能力。携带式F-BP纳米片是一种理想的饮用水光热转换器,成功地解决了有限条件下的缺水问题。(C) 2020爱思唯尔公司版权所有。

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