Dual-Structured Cobalt Sites on Surface Hydroxyl and Oxygen Vacancy Riched Biocl for Cooperative Co2 Reduction and Tetracycline Oxidation

Author:

Sun Haoyu,Lin Haili,Han Qiaofeng,Li Xinyue,Li Shuang,Jin Xing,Wang Qianlong,Chen Shifu,Cao Jing

Publisher

Elsevier BV

Reference51 articles.

1. Facilitated photocatalytic CO 2 reduction in aerobic environment on a copper-porphyrin metal-organic framework;S J Xie;Angew. Chem. Int. Ed,2023

2. Rationally designed transition metal hydroxide nanosheet arrays on graphene for artificial CO 2 reduction;K Q Lu;Nat. Commun,2020

3. ZnSe nanorods-CsSnCl 3 perovskite heterojunction composite for photocatalytic CO 2 reduction;N Y Li;ACS Nano,2022

4. Interfacial engineering of Bi 12 O 17 Br 2 /g-C 3 N 4-x Sscheme junction boosting charge transfer for cooperative tetracycline decomposition and CO 2 reduction;X M Jia;Appl. Catal. B,2024

5. Oxygen vacancies synergistic cobalt phosphide electron bridge modulated bismuth oxychloride/carbon nitride Z-scheme junction for efficient carbon dioxide reduction coupled with tetracycline oxidation;H Y Sun;J Colloid Interf. Sci,2024

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