异质结
纳米片
纳米晶
钙钛矿(结构)
化学
开尔文探针力显微镜
材料科学
光电子学
光催化
卤化物
载流子
超快激光光谱学
纳米技术
结晶学
无机化学
激光器
光学
原子力显微镜
催化作用
物理
生物化学
作者
Xu‐Dong Wang,Yuhua Huang,Jin‐Feng Liao,Yong Jiang,Lei Zhou,Xiaoyan Zhang,Hong‐Yan Chen,Dai‐Bin Kuang
摘要
Heterojunction engineering has played an indispensable role in the exploitation of innovative artificial materials with exceptional properties and has consequently triggered a new revolution in achieving high-performance optoelectronic devices. Herein, an intriguing halide perovskite (PVK) and metal dichalcogenide (MD) heterojunction, i.e., a lead-free Cs2SnI6 perovskite nanocrystal/SnS2 nanosheet hybrid, was fabricated in situ for the first time. Comprehensive investigations with experimental characterizations and theoretical calculations demonstrate that cosharing of the Sn atom enables intimate contact in the Cs2SnI6/SnS2 hybrid together with a type II band alignment structure. Additionally, ultrafast carrier separation between SnS2 and Cs2SnI6 has been observed in the Cs2SnI6/SnS2 hybrid by transient absorption measurements, which efficiently prolongs the lifetime of the photogenerated electrons in SnS2 (from 1290 to 3080 ps). The resultant spatial charge separation in the Cs2SnI6/SnS2 hybrid evidenced by Kelvin probe force microscopy (KPFM) significantly boosts the photocatalytic activity toward CO2 reduction and the photoelectrochemical performance, with 5.4-fold and 10.6-fold enhancements compared with unadorned SnS2. This work provides a facile and effective method for the in situ preparation of PVK-MD heterojunctions, which may significantly stimulate the synthesis of various perovskite-based hybrid materials and their further optoelectronic applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI