Cheon Ki Beom, Hwang Sun Kyung, Seo Se Won, Park Jae-Hyun, Park Min-Ah, Kim Jin Young
ACS Appl Mater Interfaces. 2019 Jul 10;11(27):24088-24095. doi: 10.1021/acsami.9b05852. Epub 2019 Jun 27.
Copper zinc tin sulfo-selenide (CZTSSe) is a promising light-absorbing material of thin-film solar cells because of its low material cost especially when it is prepared by cost-effective processes like the electrochemical deposition process. The CZTSSe thin-film solar cells, however, suffer from the relatively low efficiency, mostly because of the significant charge recombination. Given that the surface recombination is one of the major recombination paths, controlling the surface roughness, and thus the interfacial area is one of the key factors for improving their device performances. In this study, we demonstrated a simple but effective strategy for reducing the surface roughness during the electrochemical deposition process of the CZTSSe thin films. By adopting an initial nucleation stage with higher deposition currents ahead of the steady-state galvanostatic deposition, the surface of the copper-zinc-tin (CZT) precursor and CZTSSe thin films became significantly smoother and uniform (Δ: -43.8% for CZT, -28.9% for CZTSSe). The effects of the surface roughness on the photovoltaic properties of the CZTSSe thin-film solar cells have been investigated systematically with various characterization techniques like the diode analysis, lifetime measurement, and the temperature dependency of the open-circuit voltage. The device with the smoother surface exhibited higher open-circuit voltage and fill factor, mostly because of the significantly reduced charge recombination, leading to the high conversion efficiency of 8.64% (active).
铜锌锡硫硒(CZTSSe)是一种很有前景的薄膜太阳能电池吸光材料,因其材料成本低,特别是当它通过诸如电化学沉积工艺等具有成本效益的方法制备时。然而,CZTSSe薄膜太阳能电池的效率相对较低,主要原因是存在严重的电荷复合。鉴于表面复合是主要的复合路径之一,控制表面粗糙度,进而控制界面面积是提高其器件性能的关键因素之一。在本研究中,我们展示了一种在CZTSSe薄膜电化学沉积过程中降低表面粗糙度的简单而有效的策略。通过在稳态恒电流沉积之前采用具有较高沉积电流的初始成核阶段,铜锌锡(CZT)前驱体和CZTSSe薄膜的表面变得明显更光滑且均匀(CZT的Δ为 -43.8%,CZTSSe的Δ为 -28.9%)。利用二极管分析、寿命测量以及开路电压的温度依赖性等各种表征技术,系统地研究了表面粗糙度对CZTSSe薄膜太阳能电池光伏性能的影响。表面更光滑的器件表现出更高的开路电压和填充因子,主要是因为电荷复合显著减少,从而实现了8.64%(有源区)的高转换效率。