首页> 外文期刊>ACS applied materials & interfaces >Spray Pyrolysis of Culn(S,Se)2 Solar Cells with 5.9% Efficiency: A Method to Prevent Mo Oxidation in Ambient Atmosphere
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Spray Pyrolysis of Culn(S,Se)2 Solar Cells with 5.9% Efficiency: A Method to Prevent Mo Oxidation in Ambient Atmosphere

机译:CULN(S,SE)2太阳能电池的喷雾热解,效率为5.9%:防止MO氧化在环境气氛中的方法

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摘要

Direct spray pyrolysis to form CuInS2 (CIS) on molybdenum substrate in ambient environment has been a challenge because of the ease of Mo oxidation at low temperatures. MoQ2 formation affects the wettability of precursor solution during spray pyrolysis, which degrades the uniformity of CIS film and acts as a resistive layer for carrier transport. In this paper, Mo oxidation was prevented by using excess sulfur in the precursor solution under a gradual heating and spray process. A thin precursor layer was initially deposited as a barrier layer to prevent oxygen adsorption on Mo surface before the temperature was increased further to form polycrystalline CuInS2. The CuIn(S,Se)2 (CISSe) device fabricated from selenization of the spray-pyrolyzed CIS film exhibited a power conversion efficiency (PCE) of 5.9%. The simple spray method proposed here can be used to deposit a variety of Cu-based chalcopyrite precursor to produce high-quality thin film solar cells.
机译:直接喷雾热解形成CuIns2(CIS)在环境环境中钼基质中的钼基质是一个挑战,因为在低温下的MO氧化方面是一种挑战。 MoQ2形成影响喷雾热解期间前体溶液的润湿性,这降低了Cis膜的均匀性,并用作载体转运的电阻层。 在本文中,通过在逐渐加热和喷涂过程中使用前体溶液中的过量硫来防止Mo氧化。 最初沉积薄的前体层作为阻挡层,以在进一步形成多晶uinS2以形成多晶uin2之前在Mo表面上防止氧吸附。 由喷雾热解的CIS膜的硒化制造的Cuin(SE,SE)2(CISSE)装置表现出5.9%的功率转换效率(PCE)。 此处提出的简单喷涂方法可用于沉积各种基于Cu基的硫铜矿前体,以产生高质量的薄膜太阳能电池。

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