Sahu Meenakshi, Reddy Vasudeva Reddy Minnam, Kim Bomyung, Patro Bharati, Park Chinho, Kim Woo Kyoung, Sharma Pratibha
Department of Energy Science and Engineering, Indian Institute of Technology Bombay Powai, Mumbai 400076, India.
Korea Institute of Energy Technology (KENTECH), 200 Hyukshin-ro, Naju 58330, Korea.
Materials (Basel). 2022 Feb 24;15(5):1708. doi: 10.3390/ma15051708.
In the present study, we adopt an easy and cost-effective route for preparing CuZnSnS (CZTS)-absorber nanoparticles by a mechanochemical method using non-toxic and environmentally benign solvents (butanol, methyl ethyl ketone, and ethanol). The gram-scale synthesis of absorber nanoparticles was achieved in a non-hazardous, zero-waste process without using high-vacuum equipment. The effects of annealing and Na incorporation on the properties of spin-coated CZTS thin films were scrutinized. The deposited samples showed kesterite crystal structure and single phase. The morphological results revealed an improvement in the surface morphology after annealing. The optical bandgaps of the thin films lied in the range of 1.50-1.57 eV with p-type nature. Finally, photovoltaic devices were fabricated, and their cell performance parameters were studied. An efficiency of 0.16% was observed. The present study provides a potential route for the cost-effective fabrication of CZTS-based photovoltaic devices.
在本研究中,我们采用一种简便且经济高效的方法,通过机械化学法使用无毒且环境友好的溶剂(丁醇、甲乙酮和乙醇)来制备铜锌锡硫(CZTS)吸收剂纳米颗粒。在不使用高真空设备的情况下,通过无危害、零废物的工艺实现了吸收剂纳米颗粒的克级合成。研究了退火和掺入钠对旋涂 CZTS 薄膜性能的影响。沉积的样品呈现出硫锡铜矿晶体结构和单相。形态学结果表明退火后表面形态有所改善。薄膜的光学带隙在 1.50 - 1.57 eV 范围内,具有 p 型性质。最后,制备了光伏器件并研究了其电池性能参数。观察到效率为 0.16%。本研究为基于 CZTS 的光伏器件的经济高效制造提供了一条潜在途径。