Zobrazeno 1 - 10
of 12
pro vyhledávání: '"Bai-Chuan Zhou"'
Autor:
Jian Sheng, Wen-Cui Li, Bai-Chuan Zhou, Xin-Qian Gao, Bin Qiu, Wen-Duo Lu, Rui-Ping Zhang, An-Hui Lu
Publikováno v:
New Journal of Chemistry. 47:5164-5168
Stronger interaction created by B2O3 modification mitigates the oxygen reactivity of FeOx, promoting styrene selectivity in the oxidative dehydrogenation of ethylbenzene.
Publikováno v:
Green Chemistry. 25:2653-2662
Atomically dispersed Co2+ on MgAlOx derived from CoMgAl-LDH was offered in a one-pot catalytic transformation of ethanol into the C4–10 alcohols process, which could boost the C4–10 alcohols yield of ethanol valorization at relatively low tempera
Autor:
Zhi-Jian, Wei, Ya-Ting, Qiao, Bai-Chuan, Zhou, Abigail N, Rankine, Li-Xiang, Zhang, Ye-Zhou, Su, A-Man, Xu, Wen-Xiu, Han, Pan-Quan, Luo
Publikováno v:
World Journal of Gastrointestinal Surgery. 14:788-798
In recent years, the incidence of types II and III adenocarcinoma of the esophagogastric junction (AEG) has shown an obvious upward trend worldwide. The prognostic prediction after radical resection of AEG has not been well established.To establish a
Defect-rich BN-supported Cu with superior dispersion for ethanol conversion to aldehyde and hydrogen
Autor:
Shi-Qun Cheng, Xue-Fei Weng, Qing-Nan Wang, Bai-Chuan Zhou, Wen-Cui Li, Ming-Run Li, Lei He, Dong-Qi Wang, An-Hui Lu
Publikováno v:
Chinese Journal of Catalysis. 43:1092-1100
Autor:
Lei Tang, Bai-Chuan Zhou, Xi Liu, Shuang Xu, Jia Wang, Wei Xu, XiaoHao Liu, Liwei Chen, An-Hui Lu
Publikováno v:
Catalysis Science & Technology. 12:1978-1985
A core–shell structured catalyst χ-Fe5C2 surrounded by nanosized Fe3O4 boosts C5+ hydrocarbon selectivity while suppressing CO2 selectivity.
Publikováno v:
Industrial & Engineering Chemistry Research. 60:15064-15073
Publikováno v:
ChemCatChem. 12:2341-2347
Publikováno v:
Fuel. 329:125477
Publikováno v:
Chemical Communications. 55:10420-10423
Herein, we have shown that the [Ca–O–P] sites exposed on hydroxyapatite are clearly responsible for C–C formation in ethanol direct-coupling, and their high density accelerates the C–C coupling rate and boosts C6–12 alcohol production. Nota
Publikováno v:
Chemical communications (Cambridge, England). 55(70)
Herein, we have shown that the [Ca-O-P] sites exposed on hydroxyapatite are clearly responsible for C-C formation in ethanol direct-coupling, and their high density accelerates the C-C coupling rate and boosts C6-12 alcohol production. Notably, nanow