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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Revival of Solar Paint Concept: Air-Processable Solar Paints for the Fabrication of Quantum Dot-Sensitized Solar Cells
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Revival of Solar Paint Concept: Air-Processable Solar Paints for the Fabrication of Quantum Dot-Sensitized Solar Cells

机译:太阳能涂料概念的复兴:用于制造量子点敏化太阳能电池的空气加工太阳能涂料

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摘要

One way to revolutionize solar energy production and expand it to a large scale is to reduce the manufacturing cost and complexity of the fabrication process. The ability to make solar cells on the surface of any shape would further transform this technology. Quantum dot-sensitized solar cells (QDSSCs) are an ideal candidate to push solar cell technology in this direction. In this regard, making a paint that can be applied by a paint brush to any transparent conductive surface to turn it into the photoanode of QDSSCs, is the ultimate goal. We herein demonstrate the feasibility of one-coat fabrication of QDSSCs from a lead sulfide (PbS)-based solar paint. This is possible because of its unique ability to regenerate after oxidation during the heat treatment. Hence, the whole fabrication process can be carried out in air unlike a first-generation solar paint based on cadmium sulfide (CdS) and cadmium selenide (CdSe). Two solar paints using a commercially available titanium dioxide (TiO2) and a p-type TiO2 powder were synthesized and evaluated. Also, the performance limiting parameters are thoroughly investigated using various spectroscopic and electrochemical characterization methods. The implication of new insights into the PbS-based solar paint for further development of paint-on solar cells is discussed.
机译:彻底改变太阳能生产的一种方法,将其扩展到大规模的是降低制造过程的制造成本和复杂性。在任何形状的表面上使太阳能电池的能力进一步改变该技术。量子点敏化太阳能电池(QDSSCS)是在此方向推动太阳能电池技术的理想候选者。在这方面,使油漆刷将涂料施加到任何透明导电表面以将其转换为QDSSC的光电码,是最终目标。我们在本文中证明了从硫化铅(PBS)的太阳涂料中QDSSCs的单涂层制备的可行性。这是可能的,因为它在热处理过程中氧化后的独特能力。因此,与基于硫化镉(Cds)和硒化镉(CDSE)的第一代太阳涂料不同,整个制造过程可以在空气中进行。合成并评价了使用市售二氧化钛(TiO 2)和P型TiO2粉末的两种太阳能涂料。此外,使用各种光谱和电化学表征方法彻底研究了性能限制参数。讨论了新见解对基于PBS的太阳能涂料的影响,以进一步发展涂漆太阳能电池。

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