光电流
材料科学
环境友好型
掺杂剂
制氢
兴奋剂
量子点
纳米技术
量子产额
光电化学电池
光电子学
量子效率
化学工程
分解水
光催化
能量转换效率
氢
电极
电解质
光学
催化作用
化学
物理化学
生态学
工程类
生物
生物化学
荧光
物理
有机化学
作者
Bing Luo,Jiabin Liu,Heng Guo,Xin Liu,Rui Song,Kai Shen,Zhiming Wang,Dengwei Jing,Gurpreet Singh Selopal,Federico Rosei
出处
期刊:Nano Energy
[Elsevier BV]
日期:2021-06-11
卷期号:88: 106220-106220
被引量:47
标识
DOI:10.1016/j.nanoen.2021.106220
摘要
Abstract Photoelectrochemical (PEC) cells using colloidal quantum dots (QDs) as sensitizers are promising for efficient hydrogen (H2) production, due to their low cost and to the size/shape/composition dependent optoelectronic properties of QDs. However, QDs that are typically used in PEC cell fabrication contain highly toxic heavy metals (e.g. Pb and Cd) cations, that limit commercial-scale applications. Herein, we synthesized eco-friendly Cu doped Zn-In-Se colloidal QDs and used them in PEC cells to efficiently produce H2 from water. PEC cells fabricated with optimized Cu (5%) doped Zn-In-Se (Zn:In=1:4) QDs/TiO2 photoanodes yield an unprecedented saturated photocurrent density of 11.23 mA cm−2 at 0.8 V vs. RHE under one sun illumination (AM 1.5, 100 mW·cm−2) and maintain ~60% of the initial photocurrent density value after 6000 s continuous illumination by using Na2S/Na2SO3 as hole scavenger. This new record value of photocurrent density from eco-friendly QDs based PEC cell demonstrates that an optimized amount of Cu dopant and Zn:In ratio significantly improves light absorption, carrier injection rates/lifetime and the spatial separation of electron-hole pairs. Our work indicates that Cu doped Zn-In-Se QDs can be used as efficient light harvesters to realize high efficiency, inexpensive and environmentally friendly solar-driven production of chemical fuels and other optoelectronic devices.
科研通智能强力驱动
Strongly Powered by AbleSci AI