supported by National Natural Science Foundation of China Project (Grant No. 52374133, 52262034);the Guangdong Basic and Applied Basic Research Committee Foundation (Grant No. KCXST20221021111601003);Shenzhen Science and Technology Innovation Commission Foundation (Grant No. KCXST20221021111601003)
Nanoparticles anchored on the perovskite surface have gained considerable attention for their wide-ranging applications in heterogeneous catalysis and energy conversion due to their robust and integrated structural co...
financially supported by the Outstanding Youth Project of Guangdong Natural Science Foundation (2021B1515020051);the financial support from the Basic and Applied Basic Research Foundation of Guangdong Province (2021B1515120024, 2022A1515011804)。
Electrocatalytic reduction of carbon dioxide is one of the most effective strategies to achieve carbon neutrality and energy sustainability.Although high-value multi-carbon products have been widely studied,limited el...
financial support from the US Department of Energy,Basic Energy Sciences,Catalysis Science Program under contract number DE-SC0012704。
The shale gas revolution and the carbon-neutrality goal are motivating the landscape toward the synthesis of value-added chemicals or fuels from underutilized ethane with the assistance of greenhouse gas CO_(2).Combin...
sponsored by Shanghai Pujiang Program(No.19PJ1405200);the Startup Fund for Youngman Research at SJTU(SFYR at SJTU,No.WF220516003)。
Gold(Au)as co-catalyst is remarkable for activating methane(CH4),especially atomically dispersed Au with maximized exposing active sites and specific electronic structure.Furthermore,singlet oxygen(^(1)O_(2))typically...
supported by the National Natural Science Foundation of China (NNSFC 21573232, 21576251, 21676269, 21878283);the Strategic Priority Research Program of Chinese Academy of Sciences Grant No. XDB17000000;National Key Projects for Fundamental Research and Development of China (2016YFA0202801);The Youth Innovation Promotion Association CAS (2017223);Department of Science and Technology of Liaoning province under contract of 2015020086-101。
Catalytic ethane dehydrogenation(EDH) to ethylene over Pt-based catalysts has received increasing interests in recent years as it is a potential alternative route to conventional steam cracking. However, the catalysts...
Financial support from the National Natural Science Foundation of China (grant 21606249, 21536005);the Director Innovation Fund of Key Laboratory of Biofuels, Chinese Academy of Sciences (grant Y57201190V);QIBEBT and Dalian National Laboratory For Clean Energy (DNL), CAS (Grant QIBEBT I201924)。
Ethane conversion to ethylene and aromatics over Zn/zeolite catalysts is a promising technology for efficient exploitation of light alkanes. However, the reaction faces two major hurdles including the limited ethane c...
the financial support from the Ministry of Science and Technology of China (Nos.2016YFA0204100 and 2016YFA0200200);the National Natural Science Foundation of China (Nos.21890753, 21573220 and 21802124);the Key Research Program of Frontier Sciences of the Chinese Academy of Sciences (No.QYZDB-SSW-JSC020);the DNL Cooperation Fund, CAS (No.DNL180201);the financial and technique supports from the Westlake Education Foundation, Supercomputing Systems in the Information Technology Center of Westlake University
The catalytic conversion of ethane to high value-added chemicals is significantly important for utilization of hydrocarbon resources.However, it is a great challenge due to the typically required high temperature(> 4...
support from the National Science Foundation(NSF-CBET-1264599 and 1351384);support of the Maryland NanoCenter and its NispLab;supported in part by the NSF as a MRSEC Shared Experimental Facility;the China Scholarship Council (CSC) (No. 201306150076) for a fellowship to support his study at the University of Maryland
Platinum and zinc containing LTA zeolite catalysts with tunable meso/microporosity were prepared by using ligand-metal precursors under hydrothermal condition. These materials were employed for oxidation of ethane to ...
financially supported by the Natural Science Foundation of China(91545117);the National Basic Research Program of China(Grant No.2012CB215001);Scientific Research Foundation of China University of Petroleum Beijing(Grant Nos.2462013YJRC016)
V-doped SBA-16 catalysts (V-SBA-16) with 3D nanocage mesopores have been successfully synthesized by a modified one-pot method under weak acid condition. The obtained materials were characterized by means of small ang...
supported by NSFC(21376261,21173270,21177160);Beijing Natural Science Foundation(2142027);863 Program of China(2013AA065302);the Doctor Select Foundation(20130007110007)
SBA-15 supported Mo catalysts (Moy/SBA-15) were prepared by an ultrasonic assisted incipient-wetness impregnation method. The physical and chemical properties of the catalysts were characterized by means of N2-adsor...