Wenping Li
Jiangnan University
11 Papers
Wenping Li is an academic researcher from Jiangnan University. The author has contributed to research in topics: Chemistry & Catalysis. The author has an hindex of 5, co-authored 6 publications.
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Papers
Selective production of aromatics from CO2
TL;DR: In this paper, a composite Na/Fe and HZSM-5 catalyst system was used for the direct and selective production of aromatics from CO2, and the selectivity to aromatics in liquid hydrocarbons could reach over 94% under industrially relevant conditions.
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Carbonate-mediated Mars–van Krevelen mechanism for CO oxidation on cobalt-doped ceria catalysts: facet-dependence and coordination-dependence
TL;DR: Atomic-scale insights are provided into the reaction mechanism involving carbonate intermediates and the structure-mechanism relationship for CO oxidation over cobalt-ceria catalysts and the results indicate that the coordination environment of the dopant species is a key factor that determines the carbonate-mediated M-vK mechanism.
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Two-dimensional graphene-directed formation of cylindrical iron carbide nanocapsules for Fischer–Tropsch synthesis
TL;DR: In this article, the authors showed that the originally large spherical Fe2O3 particles of around 120 nm assisted by graphene without an additional promoter can gradually evolve during the Fischer-Tropsch synthesis, forming much smaller cylindrical Hagg carbide nanocapsules of about 10 nm with a single (510) crystal facet, that display excellent activity nearly 40 times that of the unmodified one, olefin selectivity of 76% (84% if methane is not considered) and high stability.
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Ultrathin ZIF‐8 Membrane through Inhibited Ostwald Ripening for High‐Flux C3H6/C3H8 Separation
Jianyu Wang,Yan L. Wang,Yutao Liu,Hongshuai Wu,Ming Zhao,Yanxiong Ren,Yunchuan Pu,Wenping Li,Shaoyu Wang,Shuqing Song,Xu Liang,Guangwei He,Youkyung Han,Zhongyi Jiang +13 more
TL;DR: In this paper , an inhibited Ostwald ripening (IOR) strategy is proposed to fabricate ultrathin ZIF-8 membranes, through incorporating polymer-based inhibitors into the membrane formula to inhibit the growth process of ZIF•8 crystals via the metal-organic coordination.
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Nano-Sized Mesoporous Hydrogen-Bonded Organic Frameworks for in situ Enzyme Immobilization
Wenping Li,Jiafu Shi,Yu Chen,Xinyue Liu,X. S. Meng,Zheyuan Guo,Shihao Li,Bo-Yu Zhang,Zhongyi Jiang +8 more
TL;DR: In this paper , a nano-sized mesoporous HOF for in situ enzyme immobilization is presented, where tetrakis(4-amidiniumphenyl) methane (TAM) and 1,3,6,8-tetrakis (p-benzoic acid) pyrene (H4TBAPy) are used as building blocks.
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