Novel Iodide-Modified Bismuth Molybdate Quantum Dot/Monolayer Graphene (0d/2d) Heterojunction for Efficient Photothermal Catalytic Reduction of Co 2

Author:

Guo Mingnv,Liu Jiahao,Qiu Jiaqi,Wang Ziqi,Yang Zhongqing

Publisher

Elsevier BV

Reference52 articles.

1. Separation of CO 2 using biochar and KOH and ZnCl 2 activated carbons derived from pine sawdust[J];C Pimentel;Journal of Environmental Chemical Engineering,2023

2. Interfacial catalysis of metal-oxide nanocatalysts in CO 2 hydrogenation to value-added C1 chemicals[J];Z Wang;Surface Science and Technology

3. Graphene with SiN 3 ligand for superior CO 2 electrochemical reduction;F Wang;Diamond and Related Materials,2023

4. Effects of torrefaction pretreatment on fuel quality and combustion characteristics of biomass: A review;X Yang;Fuel,2024

5. Promoting photothermal catalytic CO 2 reduction of Cd 2 In 2 S 5 /Cd 0. 3 Zn 0. 7 S heterojunction with encapsulated hydrogen evolution active site by accelerating charge transfer kinetics[J];H He;Chemical Engineering Journal,2023

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