DEHYDROGENATION

作品数:258被引量:471H指数:9
导出分析报告
相关领域:理学更多>>
相关作者:杨新征李伟作郭新闻王小丽魏晓伟更多>>
相关机构:中国科学院中航工业北京航空制造工程研究所西华大学大连理工大学更多>>
相关期刊:更多>>
相关基金:国家自然科学基金中国博士后科学基金国家重点基础研究发展计划天津市自然科学基金更多>>
-

检索结果分析

结果分析中...
选择条件:
  • 期刊=Journal of Energy Chemistryx
条 记 录,以下是1-10
视图:
排序:
Anomalous metastable hcp Ni nanocatalyst induced by non-metal N doping enables promoted ammonia borane dehydrogenation被引量:1
《Journal of Energy Chemistry》2023年第4期72-82,共11页Ping Li Yuqi Huang Quhua Huang Ran Chen Jixin Li Shuanghong Tian 
supported by the National Natural Science Foundation of China (52002412 and 22072186);the Natural Science Foundation of Guangdong Province (2021A1515010575);the Guangzhou Science and Technology Plan General Project (202102020862)。
Developing high-performing non-noble transition metal catalysts for H_(2) evolution from chemical hydrogen storage materials is of great significance for the hydrogen economy system, yet challenging. Herein,we present...
关键词:Hcp Ni Non-metal doping Phase engineering Electronic regulation Ammonia borane dehydrogenation 
Dynamic active sites on plasma engraved Ni hydroxide for enhanced electro-catalytic urea oxidation被引量:2
《Journal of Energy Chemistry》2022年第8期150-158,I0005,共10页Dan Li Yuefeng Zhang Xiaomin Zhou Chao Huang Ying Wen Liangliang Liu Qingwei Li Yue Xu Yuzheng Wu Qingdong Ruan Yinghe Ma Fangyu Xiong Dezhi Xiao Pei Liu Guomin Wang Babak Mehrjou Bin Wang Hao Li Rongsheng Chen Hongwei Ni Zhiyuan Zeng Paul K.Chu 
the financial support from City University of Hong Kong Strategic Research Grant(SRG)(7005505);the National Natural Science Foundation of China(51601136 and 51604202)。
The urea oxidization reaction(UOR)is an important anodic reaction in electro-catalytic energy conversion.However,the sluggish reaction kinetics and complex catalyst transformation in electrocatalysis require activity ...
关键词:Urea oxidization reaction Ni hydroxide Plasma processing DEHYDROGENATION Active site 
Ultrasmall AuPd nanoclusters on amine-functionalized carbon blacks as high-performance bi-functional catalysts for ethanol electrooxidation and formic acid dehydrogenation被引量:1
《Journal of Energy Chemistry》2022年第5期556-563,共8页Yuhuan Cui Ming Zhao Yining Zou Junyu Zhang Jiuhui Han Zhili Wang Qing Jiang 
supported by the National Natural Science Foundation of China (51901083);the Fundamental Research Funds for the Central Universities。
The synthesis of ultrasmall metal nanoclusters(NCs) with high catalytic activities is of great importance for the development of clean and renewable energy technologies but remains a challenge. Here we report a facile...
关键词:Ethanol electrooxidation Formic acid dehydrogenation AuPd NANOCLUSTERS Bi-functional catalyst 
Ultrafine PdAg alloy nanoparticles anchored on NH2-functionalized 2D/2D TiO_(2) nanosheet/rGO composite as efficient and reusable catalyst for hydrogen release from additive-free formic acid at room temperature被引量:3
《Journal of Energy Chemistry》2021年第8期455-464,I0010,共11页Xi Zhao Ping Dai Dongyan Xu Xumei Tao Xien Liu Qingjie Ge 
the financial supports from the Shandong Provincial Natural Science Foundation(Grant No.ZR201910220216);the Key Research and Development Plan of Shandong Province(2019GGX104034);the Foundation of State Key Laboratory of High-efficiency Utilization of Coal,and Green Chemical Engineering(Grant No.2020-KF-18);the Taishan Scholar Program of Shandong Province(No.ts201712045)。
A 2 D-2 D titanium dioxide nanosheet-reduced graphene oxide(TNS-r GO)composite with better electronic conductivity and hydrophilicity was prepared by the hydrothermal method.The as-obtained TNS-r GO composite was furt...
关键词:Formic acid DEHYDROGENATION TNS-rGO composite PdAg alloy Amine-functionalization 
Dimethyl ether as circular hydrogen carrier:Catalytic aspects of hydrogenation/dehydrogenation steps
《Journal of Energy Chemistry》2021年第7期55-77,共23页Enrico Catizzone Cesare Freda Giacobbe Braccio Francesco Frusteri Giuseppe Bonura 
The intermittent nature of renewable resources requires for most applications the development of efficient and cost-effective technologies for steady supply of electrical energy.The storage of energy in the form of hy...
关键词:DME CO_(2)hydrogenation Steam Reforming Hybrid catalysts Hydrogen carrier 
Boron nitride for enhanced oxidative dehydrogenation of ethylbenzene被引量:1
《Journal of Energy Chemistry》2021年第6期477-484,I0012,共9页Rui Han Jiangyong Diao Sonu Kumar Andrey Lyalin Tetsuya Taketsugu Gilberto Casillas Christopher Richardson Feng Liu Chang Won Yoon Hongyang Liu Xudong Sun Zhenguo Huang 
support under the Australian Research Council’s Discovery Projects funding scheme(project number DP170101773);support from Alexander von Humboldt Foundation.T.T.;financial support from the program of the Ministry of Education,Culture,Sports,Science,and Technology(MEXT,Japan)“Priority Issue on Post-K computer”(Development of new fundamental technologies for high-efficiency energy creation,conversion/storage and use);support from the Ministry of Science and Technology(2016YFA0204100);the National Natural Science Foundation of China(21961160722,91845201,21573254);the Liaoning Revitalization Talents Program XLYC1907055。
It is demonstrated experimentally and confirmed theoretically that highly defective boron nitride showed outstanding performance for oxidative dehydrogenation of ethylbenzene.The catalyst is derived from carbon-doped ...
关键词:Boron nitride DEHYDROGENATION ETHYLBENZENE Carbon-doping Heterogeneous catalysis 
Synthesis of palladium-rhodium bimetallic nanoparticles for formic acid dehydrogenation被引量:1
《Journal of Energy Chemistry》2021年第1期301-309,I0010,共10页Ilaria Barlocco Sofia Capelli Elisa Zanella Xiaowei Chen Juan JDelgado Alberto Roldan Nikolaos Dimitratos Alberto Villa 
Herein,we report for the first time the synthesis of preformed bimetallic Pd-Rh nanoparticles with different Pd:Rh ratios(nominal molar ratio:80-20,60-40,40-60,20-80) and the corresponding Pd and Rh monometallic ones ...
关键词:PALLADIUM RHODIUM ALLOY Formic acid HYDROGEN Muconic acid 
Interface electron collaborative migration of Co–Co3O4/carbon dots:Boosting the hydrolytic dehydrogenation of ammonia borane被引量:9
《Journal of Energy Chemistry》2020年第9期43-53,I0002,共12页Han Wu Min Wu Boyang Wang Xue Yong Yushan Liu Baojun Li Baozhong Liu Siyu Lu 
financially supported by the National Natural Science Foundation of China(21774041 and 51433003);the China Postdoctoral Science Foundation(2018M640681 and 2019T120632)。
Ammonia borane(AB)is an excellent candidate for the chemical storage of hydrogen.However,its practical utilization for hydrogen production is hindered by the need for expensive noble-metal-based catalysts.Herein,we re...
关键词:Ammonia borane Hydrogen evolution Co-Co3O4 interface Carbon dots Nanoparticles 
Synthesis and dehydrogenation properties of NaZn(BH4)3·en and NaZn(BH4)3·2en(en= ethylene diamine)被引量:1
《Journal of Energy Chemistry》2020年第3期233-236,共4页Yong Wu Yue Qi Jie Zheng Xingguo Li 
Beijing Municipal Science and Technology Commission(Z17110000091702).
Two new hydrogen storage compounds,Na Zn(BH4)3·en and Na Zn(BH4)3·2en(en=ethylene diamine)are synthesized by a solution method.They can release 6.4 wt%and 6.3 wt%pure hydrogen below 200℃,respectively,demonstrating ...
关键词:BOROHYDRIDE ETHYLENE DIAMINE HYDROGEN storage 
A study on hydrogen uptake and release of a eutectic mixture of biphenyl and diphenyl ether被引量:2
《Journal of Energy Chemistry》2020年第3期11-16,共6页Munjeong Jang Byeong Soo Shin Young Suk Jo Jeong Won Kang Sang Kyu Kwak Chang Won Yoon Hyangsoo Jeong 
supported by the Technology Development Program to Solve Climate Changes of the National Research Foundation(NRF)funded by the Ministry of Science,ICT,and Future Planning(2015M1A2A2074688);KISTI-HPC(KSC-2018-CRE-0022)for computational resources;the KIST institutional program funded by the Korea Institute of Science and Technology(2E29610).
Hydrogen storage in Liquid Organic Hydrogen Carrier(LOHC)systems is appealing for the safe storage and distribution of excess renewable energy via existing gasoline infrastructures to end-users.We present the eutectic...
关键词:HYDROGEN storage Liquid organic HYDROGEN carrier DIPHENYL ETHER DEHYDROGENATION Thermodynamics 
检索报告 对象比较 聚类工具 使用帮助 返回顶部