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A review of high-temperature selective absorbing coatings for solar thermal applications

机译:用于太阳能热应用的高温选择性吸收涂层综述

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Solar selective absorbing coatings directly harvest solar energy in the form of heat. The higher temperatures are required to drive higher power-cycle efficiencies in favor of lower costs of energy. According to different dielectrics, high temperature coatings can mainly be divided to double cermet solar selective coatings, transition metal nitride multilayer coatings and transition metal oxide multilayer coatings. This paper assesses the photothermal conversion efficiency and thermal stability, and discusses the challenges and strategies of improving both thermal and optical properties. Double cermet layers can stabilize nanocrystalline structures by alloying, while transition metal nitride/oxide layers generally choose the reliable materials with superior mechanical properties and thermal stability. The purpose of this review is to get the optimized systems, and propose further research directions at higher temperature, such as all-ceramic absorbing coatings.
机译:太阳能选择性吸收涂料以热量的形式直接收获太阳能。较高的温度需要推动更高的电源效率,以利用较低的能量成本。根据不同的电介质,高温涂层主要可分为双金属陶瓷太阳能选择性涂层,过渡金属氮化物多层涂层和过渡金属氧化物多层涂层。本文评估了光热转换效率和热稳定性,并探讨了改善热敏和光学性质的挑战和策略。双金属陶瓷层可以通过合金化稳定纳米晶体结构,而过渡金属氮化物/氧化物层通常选择具有优异机械性能和热稳定性的可靠材料。本综述的目的是获得优化的系统,并在更高的温度下提出进一步的研究方向,例如全陶瓷吸收涂层。

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