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Self-assembly of anthraquinone covalent organic frameworks as 1D superstructures for highly efficient CO2 electroreduction to CH4 [期刊论文]
Science Bulletin, 2021-01-01, 66 (16
Liu M.;  Wang Y.-R.;  Ding H.-M.;  Lu M.;  Gao G.-K.;  Dong L.-Z.;  Li Q.;  Chen Y.;  Li S.-L.;  Lan Y.-Q.
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Decorating graphdiyne on ultrathin bismuth subcarbonate nanosheets to promote CO2 electroreduction to formate [期刊论文]
Science Bulletin, 2021-01-01, 66 (15
Tang S.-F.;  Lu X.-L.;  Zhang C.;  Wei Z.-W.;  Si R.;  Lu T.-B.
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Unveiling in situ evolved In/In2O3−x heterostructure as the active phase of In2O3 toward efficient electroreduction of CO2 to formate [期刊论文]
Science Bulletin, 2020-01-01, 65 (18
Liang Y.;  Zhou W.;  Shi Y.;  Liu C.;  Zhang B.
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Core@shell structured Au@SnO2 nanoparticles with improved N2 adsorption/activation and electrical conductivity for efficient N2 fixation [期刊论文]
Science Bulletin, 2020-01-01, 65 (5
Wang P.;  Ji Y.;  Shao Q.;  Li Y.;  Huang X.
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Chloroplast-like porous bismuth-based core–shell structure for high energy efficiency CO2 electroreduction [期刊论文]
Science Bulletin, 2020-01-01, 65 (19
Wang Y.-R.;  Yang R.-X.;  Chen Y.;  Gao G.-K.;  Wang Y.-J.;  Li S.-L.;  Lan Y.-Q.
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Energy storage through CO2 electroreduction: A brief review of advanced Sn-based electrocatalysts and electrodes [期刊论文]
Journal of CO2 Utilization, 2018-01-01, 27
Li Q.;  Rao X.;  Sheng J.;  Xu J.;  Yi J.;  Liu Y.;  Zhang J.
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Electro-osmotic-based catholyte production by Microbial Fuel Cells for carbon capture [期刊论文]
water Research, 2015-01-01, Volume 86) : Pages 108-115
Iwona Gajdaa;  ;  ;  John Greenmana;  b;  Chris Melhuisha;  Carlo Santoroc;  d;  e;  Baikun Lic;  d;  Pierangela Cristianif;  Ioannis Ieropoulosa;  b;  ;  
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