Indubala E, Dhanasekar M, Sudha V, Malar E J Padma, Divya P, Sherine Jositta, Rajagopal Revathy, Bhat S Venkataprasad, Harinipriya S
Electrochemical Systems Lab, SRM Research Institute, SRM Institute of Science and Technology Kattankulathur Chennai - 603203 India
Department of Chemistry, SRM Institute of Science and Technology Kattankulathur Chennai - 603203 India.
RSC Adv. 2018 Jan 31;8(10):5350-5361. doi: 10.1039/c7ra12385j. eCollection 2018 Jan 29.
ZnO nanorods were capped with a simple amino acid, , l-alanine to increase the carrier concentration and improve the performance of ZnO/CuI heterojunction diodes. The effect of l-alanine capping on the morphology, structural, optical, electrochemical and electrical properties of ZnO nanorods had been studied in detail. The stable structure with two equally strong Zn-O coordinate bonds predicted by density functional theory was in agreement with the experimental results of FTIR spectroscopy. Due to the presence of electron-releasing (+I effect) moieties in l-Alanine, the carrier concentration of capped ZnO nanorods was two orders of magnitude higher and the ZnO/CuI heterojunction device showed more than a two-fold increase in the photovoltaic power conversion efficiency.
用一种简单的氨基酸L-丙氨酸包覆氧化锌纳米棒,以提高载流子浓度并改善氧化锌/碘化亚铜异质结二极管的性能。详细研究了L-丙氨酸包覆对氧化锌纳米棒的形貌、结构、光学、电化学和电学性质的影响。密度泛函理论预测的具有两个同等强度的锌-氧配位键的稳定结构与傅里叶变换红外光谱的实验结果一致。由于L-丙氨酸中存在供电子(+I效应)基团,包覆后的氧化锌纳米棒的载流子浓度高出两个数量级,并且氧化锌/碘化亚铜异质结器件的光伏功率转换效率提高了两倍多。