supported by National Natural Science Foundation of China(Nos.21773184,21671158 and 21601164);Natural Science Foundation of Henan(No.162300410052);Key Science and Technology Project of Henan(No.172102310137)。
Structural and functional biomimicking of the active site of [NiFe]-hydrogenases can provide helpful hints for designing bioinspired catalysts to replace the expensive noble metal catalysts for H2 generation and uptak...
supported by the Natural Science Foundation of Zhejiang Province(LY19B020002);National Natural Science Foundation of China(21501124);Science&Technology Department of Sichuan Province(2018JY0235);Education Department of Sichuan Province(18ZA0337);Sichuan University of Science&Engineering(S201910622022)。
In this paper,a novel diiron ethane-1,2-dithiolate complex[Fe2(CO)4{κ2-(Ph2P)2(1,2-C6H4)}(μ-SCH2CH2S)]has been prepared and structurally characterized.Treatment of the parent complex[Fe2(CO)6(μ-SCH2CH2S)]with 1 equ...
supported by the National Natural Science Foundation of China(Nos.21231003 and 21203195)
Two diiron dithiolate complexes [Fe2(CO)6(1,8-S2-2-CH2OOCPhC(10)H5)] 1 and[Fe2(CO)6(1,8-S2-2-CH2OOCPh-4-NO2C(10)H5)]2 were synthesized in high yield. The complexes have been confirmed by single-crystal X-r...
supported by Science & Technology Department of Sichuan Province (2011JY0052,2012JY0115, 2010GZ0130);Sichuan University of Science & Engineering (2011RC06, 2012PY04, 2012PY14)
Two new diiron ethanedithiolate complexes Fe2(S2C2H4)(CO)5(2-Ph2PC6H4NH2) (1) and Fez(S2CzH4)(CO)5(2-PhzPC6H4CHzNH2) (2) as active site models of [FeFe] hydrogenases have been prepared by the treatment...
The use of cyanobacteria for producing molecular hydrogen is one of the desirable tasks of photobiotechnology. Some years ago, we isolated several chemically induced mutants of the cyanobacterium Anabaena variabilis A...
supported by the National Natural Science Foundation of China (Grant Nos. 30570023 and 30870043);National High Technol-ogy Research and Development Program of China (Grant No2007AA021805)
This study addressed the effect of hydrogen metabolism on cell growth and magnetosome synthesis in Magnetospirillum gryphiswaldense strain MSR-1. Two deletion mutants were generated: L206, with single deletion of the ...
Hydrogenases are enzymes that can reversibly split molecular hydrogen. Study on the structure of the active site and the mechanism of catalysis has drawn great attention because the results may be useful for the desig...
Hydrogenase is an enzyme widely distributed in nature, being found in bacteria, algae and plants. It catalyzes the reversible oxidation of the simplest molecule H2, as represented by the