光催化
光化学
光热治疗
硫化镉
材料科学
分子
三元运算
电子转移
碳纳米管
量子点
光热效应
电子
催化作用
纳米技术
化学工程
化学
有机化学
物理
量子力学
计算机科学
工程类
冶金
程序设计语言
作者
Chungseok Choi,Fengyi Zhao,James L. Hart,Yuanzuo Gao,Fabian Menges,Conor L. Rooney,Nia J. Harmon,Bo Shang,Zihao Xu,Sa Suo,Quynh P. Sam,J. Judy,Tianquan Lian,Hailiang Wang
标识
DOI:10.1002/anie.202302152
摘要
We report a ternary hybrid photocatalyst architecture with tailored interfaces that boost the utilization of solar energy for photochemical CO2 reduction by synergizing electron and heat flows in the photocatalyst. The photocatalyst comprises cobalt phthalocyanine (CoPc) molecules assembled on multiwalled carbon nanotubes (CNTs) that are decorated with nearly monodispersed cadmium sulfide quantum dots (CdS QDs). The CdS QDs absorb visible light and generate electron-hole pairs. The CNTs rapidly transfer the photogenerated electrons from CdS to CoPc. The CoPc molecules then selectively reduce CO2 to CO. The interfacial dynamics and catalytic behavior are clearly revealed by time-resolved and in situ vibrational spectroscopies. In addition to serving as electron highways, the black body property of the CNT component can create local photothermal heating to activate amine-captured CO2 , namely carbamates, for direct photochemical conversion without additional energy input.
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