CO-CATALYSIS

作品数:8被引量:8H指数:2
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相关期刊:《Journal of Energy Chemistry》《Chinese Journal of Chemistry》《Green Energy & Environment》《Nano-Micro Letters》更多>>
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Solar fuel production through concentrating light irradiation
《Green Energy & Environment》2024年第10期1550-1580,共31页Yiwei Fu Yi Wang Jie Huang Kejian Lu Maochang Liu 
support by the National Key Research and Development Program of China(2022YFB3803600);the National Natural Science Foundation of China(No.52276212);the Natural Science Foundation of Jiangsu Province(No.BK20231211);the Suzhou Science and Technology Program(SYG202101);the Key Research and Development Program in Shaanxi Province of China(No.2023-YBGY-300);the China Fundamental Research Funds for the Central Universities.
The climate crisis necessitates the development of non-fossil energy sources.Harnessing solar energy for fuel production shows promise and offers the potential to utilize existing energy infrastructure.However,solar f...
关键词:Concentrated solar energy Solar fuel Photo-electrochemistry THERMOCHEMISTRY Photo-thermal co-catalysis 
Cooperation between single atom catalyst and support to promote nitrogen electroreduction to ammonia:A theoretical insight
《Journal of Energy Chemistry》2024年第9期336-344,共9页Wanying Guo Siyao Wang Hongxia Wang Qinghai Cai Jingxiang Zhao 
financially supported in China by the Natural Science Funds for Distinguished Young Scholar of Heilongjiang Province (No. JC2018004)
The co-catalysis between single atom catalyst(SAC)and its support has recently emerged as a promising strategy to synergistically boost the catalytic activity of some complex electrochemical reactions,encompassing mul...
关键词:CO-CATALYSIS Single atom catalyst Nitrogen reduction DFT computations 
Synthesis of 2,3-Diaminoindoles via a Copper-Iodine Co-catalytic Strategy
《Chinese Journal of Chemistry》2023年第24期3567-3572,共6页Wenhua Yu Yingying Zhang Xiaoxiang Zhang Xiaoting Gu Xirui Qing Wanxing Wei Zhuan Zhang Guanghua Li Taoyuan Liang 
the National Natural Science Foundation of China(22201048);the Natural Science Foundation of Guangxi Province(2022GXNSFBA035480);the Specific Research Project of Guangxi for Research Bases and Talents(2022AC21099);the Start-up Fund of Guangxi University(A3040051013)for financial support.
A one-pot synthesis of vicinal diamines using indoles,azoles and phenothiazines in a tandem multi-component reaction is developed.The utilization of a copper-iodine co-catalytic system enables the generation of a dive...
关键词:INDOLES Tandem dual C—H amination Vicinal diamines Copper-iodine co-catalysis Multi-component reaction 
FeMo@porous carbon derived from MIL-53(Fe)@MoO_(3) as excellent heterogeneous electro-Fenton catalyst: Co-catalysis of Mo被引量:1
《Journal of Environmental Sciences》2023年第5期652-666,共15页Xuedong Du Wenyang Fu Pei Su Qizhan Zhang Minghua Zhou 
supported by National Key R&D Program International Cooperation Project(No.2021YFE0106500);Natural Science Foundation of China(Nos.52170085 and 21976096);Tianjin Development Program for Innovation and Entrepreneurship,Key Project of Natural Science Foundation of Tianjin(No.21JCZDJC00320);Tianjin Post-graduate Students Research and Innovation Project(No.2019YJSB075);Fundamental Research Funds for the Central Universities,Nankai University(No.63221313).
An ultra-efficient electro-Fenton catalyst with porous carbon coated Fe-Mo metal(FeMo@PC),was prepared by calcining MIL-53(Fe)@MoO_(3).This FeMo@PC-2 exhibited impressive catalytic performance for sulfamethazine(SMT)d...
关键词:Metal-organic frameworks derivatives Fe-Mo bimetal Porous carbon CO-CATALYSIS Heterogeneous electro-Fenton 
Enhancing the side-chain alkylation of toluene with methanol to styrene over the Cs-modified X zeolite by the assistance of basic picoline as a co-catalyst被引量:2
《Green Energy & Environment》2022年第6期1241-1252,共12页Zhe Hong Guoqing Zhao Fangtao Huang Xiaoxia Wang Zhirong Zhu 
Supported by the National Natural Science Foundation of China(#91534115).
Side-chain alkylation of toluene with methanol is a green pathway to realize the one-step production of styrene under mild conditions,but the low selectivity of styrene is difficult to be improved with by-products of ...
关键词:Basic co-catalysis TOLUENE Side-chain alkylation ZEOLITE STYRENE 
A novel co-catalyzed system between persulfate and chlorite by sonolysis for removing triphenylmethane derivative
《Journal of Environmental Sciences》2022年第2期291-306,共16页Qihui Xu Haoran Leng Hong You Shutao Wang Haoyang Li Yibo Yu 
supported by the State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology (No. 2019DX08);the Natural Science Foundation of Shandong Province of China (No. ZR2019QEE012)。
Triphenylmethane(tpm) derivatives(e.g. tpm CV) have threatened the safety of the aquatic environment due to the potential toxicity and carcinogenicity. In this study, the novel ultrasonic/persulfate/chlorite(US/S_(2)O...
关键词:Ultrasonic/Persulfate/Chlorite Non-integer kinetics Simulation Degradation mechanism CO-CATALYSIS 
Boosting Chemodynamic Therapy by the Synergistic Effect of Co‑Catalyze and Photothermal Effect Triggered by the Second Near‑Infrared Light被引量:5
《Nano-Micro Letters》2020年第12期318-330,共13页Songtao Zhang Longhai Jin Jianhua Liu Yang Liu Tianqi Zhang Ying Zhao Na Yin Rui Niu Xiaoqing Li Dongzhi Xue Shuyan Song Yinghui Wang Hongjie Zhang 
This work was supported by the financial aid from the National Natural Science Foundation of China(Grant Nos.51502284,21834007,21521092,21590794,and 21673220);the Program of Science and Technology Development Plan of Jilin Province of China(No.20170101186JC);the Strategic Priority Research Program of the Chinese Academy of Sciences(Grant No.XDB20030300);the Youth Innovation Promotion Association of Chinese Academy of Sciences(2019232).
In spite of the tumor microenvironments responsive cancer therapy based on Fenton reaction(i.e.,chemodynamic therapy,CDT)has been attracted more attentions in recent years,the limited Fenton reaction efficiency is the...
关键词:Chemodynamic therapy Fenton reaction CO-CATALYSIS Photothermal effect NIR II biowindows 
Oxidation of Amino Acids by Chlorpromazine Cation Radical and Co-Catalysis by Chlorpromazine
《Pharmacology & Pharmacy》2012年第1期29-36,共8页Valdecir F. Ximenes Giovana B. Quaggio Fernanda S. Graciani Manoel L. de Menezes 
The long-tem use of chlorpromazine (CPZ) may cause severe side effects. This property of CPZ might be related to pro-oxidant effects of the chlorpromazine cation radical (CPZ·+), which can be easily generated by cata...
关键词:TRYPTOPHAN TYROSINE Nitrite CHLORPROMAZINE HORSERADISH PEROXIDASE 
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