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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Controlling the preferred orientation of layered BiOI solar absorbers
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Controlling the preferred orientation of layered BiOI solar absorbers

机译:控制分层Bioi太阳能吸收剂的优选方向

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Bismuth oxyiodide (BiOI) has gained attention for photovoltaics, photocatalysis and photodetectors owing to its composition of non-toxic elements, tolerance to point defects, and highly-suitable optical properties. But like many other bismuth-based compounds, BiOI is a layered material with anisotropic transport properties, making control over the preferred orientation critical for achieving optimal device performance. In this work, we develop new insights into the growth mechanism of BiOI synthesized by chemical vapor deposition (CVD) and show how the preferred orientation can be controlled. By adjusting the precursor and substrate temperatures to tune whether or not we are in a nucleation- or growth-controlled regime, we reproducibly vary the ratio of the (001) and (110) orientations by over two orders of magnitude. As a result, we achieve highlyc-axis oriented films, which leads to less shunting thana/b-axis oriented films, resulting in improved open-circuit voltages from a median value of 0.7 V (a/b-axis oriented) to 0.9 V (c-axis oriented) in BiOI solar cells. More broadly, the described mechanisms can be used to control the preferred orientation in other low-dimensional materials, which will be important for achieving improved performance across a wide variety of devices.
机译:由于其非毒性元素的组成,对点缺陷和高度合适的光学性质而导致光伏,光催化和光电探测器的铋,光催化剂和光电探测器的注意力升高。但与许多其他基于铋的化合物一样,Bioi是具有各向异性传输性能的分层材料,使得对实现最佳装置性能的优选取向进行控制。在这项工作中,我们对化学气相沉积(CVD)合成的生物增长机制(CVD)开发了新的见解,并显示如何控制优选的取向。通过调节前体和基板温度来调整我们是否处于成核或生长控制的方案,我们可重复地改变(001)和(110)取向的比例超过两个数量级。结果,我们实现了高度轴取向薄膜,这导致较少的分流,从而改善了从0.7V(A / B轴定向)的中值值的开路电压为0.9V (C轴取向)在生物太阳能电池中。更广泛地,所描述的机构可用于控制其他低维材料中的优选方向,这对于在各种设备上实现改进的性能是重要的。

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