DOPING

作品数:1646被引量:2696H指数:15
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相关领域:理学更多>>
相关作者:李酽张莉李平邓胜华李义宝更多>>
相关机构:中国科学院中国科学技术大学东北师范大学重庆大学更多>>
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相关基金:国家自然科学基金国家重点基础研究发展计划中国博士后科学基金国家高技术研究发展计划更多>>
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Review on Heteroatom Doping Carbonaceous Materials Toward Electrocatalytic Carbon Dioxide Reduction被引量:3
《Transactions of Tianjin University》2022年第4期292-306,共15页Youan Ji Juan Du Aibing Chen 
financially supported by the Natural Science Foundation of Hebei Province (B02020208088, H2020206514, and B2021208074);the S&T Program of Hebei Province (20544401D, 20314401D, 206Z4406G, 21314402D, 21344601D, 22344402D, and 22373709D);the Research Start-up Funding at Hebei University of Science and Technology (1181381)
Carbon dioxide(CO_(2))reduction into chemicals or fuels by electrocatalysis can eff ectively reduce greenhouse gas emissions and alleviate the energy crisis.Currently,CO_(2)electrocatalytic reduction(CO_(2)RR)has been...
关键词:Heteroatoms doping Carbonaceous materials CO_(2)reduction ELECTROCATALYTIC 
Phosphorus-doping-tuned PtNi concave nanocubes with high-index facets for enhanced methanol oxidation reaction被引量:3
《Nano Research》2022年第8期6961-6968,共8页Aixin Fan Congli Qin Ruxia Zhao Haixiao Sun Hui Sun Xiaoping Dai Jin-Yu Ye Shi-Gang Sun Yanhong Lu Xin Zhang 
the National Natural Science Foundation of China(No.21573286);the Natural Science Foundation of Hebei Province of China(No.E2020408004);the Funded by Science and Technology Project of Hebei Education Department(No.QN2021124).
Surface engineering has been found to be an efficient strategy to boost the catalytic performance of noble-metal-based nanocatalysts.In this work,a small amount of P was doped to the surface of PtNi concave cube(P-PtN...
关键词:P doping high-index facets methanol oxidation reaction in situ Fourier transform infrared spectroscopy 
Research progress of tunnel-type sodium manganese oxide cathodes for SIBs被引量:2
《Chinese Chemical Letters》2022年第5期2316-2326,共11页Jie Feng Shaohua Luo Kexing Cai Shengxue Yan Qing Wang Yahui Zhang Xin Liu 
supported by the National Natural Science Foundation of China (NSFC, Nos. 51804035, 51874079 and 51674068;the Hebei Province Key Research and Development Plan Project (No.19211302D);the support from Natural Science Foundation of Hebei Province (No. E2018501091);The Fundamental Research Funds for the Central Universities (Nos. N172302001, N182306001, N182312007, N2023040);the support from Research Project on the Distribution of Heavy Metals in Soil and Comprehensive Utilization Technology of Tailings in Typical Iron Tailing Reservoir Areas of Hebei Province (No. 802060671901)
Among the large energy storage batteries,the sodium ion batteries(SIBs)are attracted huge interest due to the fact of its abundant raw materials and low cost,and has become the most promising secondary battery.Tunnel-...
关键词:Sodium-ion batteries Na 0.44 MnO_(2) Cathode materials DOPING Nonaqueous electrolytes 
Pt and Te codoped ultrathin MoS_(2) nanosheets for enhanced hydrogen evolution reaction with wide pH range被引量:9
《Rare Metals》2022年第2期378-384,共7页Cui-Hua An Wei Kang Qi-Bo Deng Ning Hu 
This work was financially supported by the Chinese National Natural Science Fund(No.U1864208);the National Science and Technology Major Project(No.2017-VII-0011-0106);the Science and Technology Planning Project of Tianjin(No.20ZYJDJC00030);the Key Program of Research and Development of Hebei Province(No.202030507040009);the Fund for Innovative Research Groups of Natural Science Foundation of Hebei Province(No.A2020202002).Dr.Qibo Deng acknowledges support from Yuanguang Scholar Program of Hebei University of Technology.
Transition metal dichalcogenides,especially MoS_(2),have been examined as promising catalysts for hydrogen evolution reaction(HER).Meanwhile,MoS_(2)with various nanostructures and exposed more active sites has been br...
关键词:DOPING kinetics SYNERGISTIC 
Effect of Al_(82.8)Cu_(17)Fe_(0.2) alloy doping on structure and magnetic properties of SmCo5-based ribbons被引量:1
《Journal of Rare Earths》2022年第1期93-101,共9页Zhixin Dong Shu Wang Siyi Chen Yunfei Cao Zihui Ge Jibing Sun 
Project supported by the National Natural Science Foundation of China(51671078);the Natural Science Foundation of Hebei Province,China(E2019202035)。
This work tries to improve the magnetic properties by multi-element doping in the form of a ternary alloy.SmCo_(5+)χwt%Al-Cu-Fe(x=0-7)ribbons melt-spun at 40 m/s were produced by adding Al_(82.8)Cu_(17)Fe_(0.2)alloy ...
关键词:Rare earth alloys and compounds Rapid solidification Crystal structure Phase transitions Microstructure Magnetic property 
Molecular dynamics simulations of dopant effects on lattice trapping of cracks in Ni matrix
《Chinese Physics B》2021年第11期461-466,共6页Shulan Liu Huijing Yang 
Project supported by the National Natural Science Foundation of China(Grant No.11604237);the Natural Science Foundation of Hebei Province of China(Grant Nos.E2019105073 and E2015105079);the Scientific Research Foundation of Tangshan Normal University of China(Grant Nos.2016A06 and 2020C03);the Department of Education of Guangdong Province,China(Grant No.2019GKTSCX128).
Molecular dynamic analysis was performed on pure and doped(by Re,Ru,Co or W)Ni at 300 K using the embeddedatom-method(EAM)potentials to understand the crack formation of the doped Ni matrix in the(010)[001]orientation...
关键词:alloying elements DOPING Ni crack lattice trapping 
Sulfur-doped 3D hierarchical porous carbon network toward excellent potassium-ion storage performance被引量:6
《Rare Metals》2021年第9期2464-2473,共10页Dan Wang Kang-Hui Tian Jie Wang Zhi-Yuan Wang Shao-Hua Luo Yan-Guo Liu Qing Wang Ya-Hui Zhang Ai-Min Hao Ting-Feng Yi 
financially supported by the National Natural Science Foundation of China(Nos.51871046,51902046,52071073,51874079,51571054,51771046 and 51674068);the Natural Science Foundation of Liaoning Province(No.201602257);the Natural Science Foundation of Hebei Province(Nos.E2019501097,E2018501091 and E2020501004);the Science and Technology Project of Hebei Province(No.15271302D);the Training Foundation for Scientific Research of Talents Project Hebei Province(No.A2016005004);the Young Talents Program in University of Hebei Province(No.BJ2018014);Hebei Province Higher Education Science and Technology Research Project(No.QN2017103);the Fundamental Research Funds for the Central Universities(Nos.N182304017,N182304015,N172302001 and N172304044)。
Carbonaceous materials are promising anode candidates for potassium-ion batteries, but currently the unsatisfactory cycling and rate performances due to the sluggish diffusion kinetic and serious structure damage duri...
关键词:Potassium-ion batteries Porous carbon Sulfur-doping Density functional theory(DFT)calculations 
Stabilizing Na_(3)SbS_(4)/Na interface by rational design via Cl doping and aqueous processing
《Journal of Materials Science & Technology》2021年第11期168-175,共8页Haonan Cao Meiqi Yu Long Zhang Zhaoxing Zhang Xinlin Yan Peng Li Chuang Yu 
supported by the National Key R&D Program of China(Grant No.2018YFB0104300);the Natural Science Foundation of Hebei Province(E2018203301)。
Solution-synthesis method is attractive for solid electrolytes because it is a facile and scalable process to be used to permeate electrodes and to construct a thin electrolyte coating layer on active materials.In thi...
关键词:Interfacial stability Sulfides Solid electrolytes Chemical synthesis All-solid-state sodium battery 
Influence ofγ-Fe2O3 nanoparticles doping on the image sticking in VAN-LCD
《Chinese Optics Letters》2020年第3期68-74,共7页Ningning Liu Mohan Wang Zongyuan Tang Lin Gao Shuai Jing Na Gao Hongyu Xing Xiangshen Meng Zhenghong He Jian Li Minglei Cai Xiaoyan Wang Wenjiang Ye 
supported by the National Natural Science Foundation of China(NSFC)(Nos.11374087 and11504080);the Natural Science Foundation of Hebei Province of China(Nos.A2019202235 and A2017202004);the Key Subject Construction Project of Hebei Province University。
Image sticking in liquid crystal display(LCD)is related to the residual direct current(DC)voltage(RDCV)on the cell and the dynamic response of the liquid crystal materials.According to the capacitance change of the li...
关键词:NANOPARTICLES DOPING image STICKING SRDCV response time VAN-LCD 
Improved electrochemical properties in the Li_3Fe_2(PO_4)_3 by titanium and vanadium doping
《Chinese Chemical Letters》2019年第3期792-796,共5页Zhengshen Hua Xin Zhang Xiaojing Feng Xiaoran Wang Jun He Xin Wang Huifen Peng 
supported by Natural Science Foundation of Hebei Province (No. E2016202358)
The nominal Li_(3-x)Fe_(2-x)Ti_x(PO_4)_(2.55)(VO_4)_(0.45)(x=0~0.3) compounds were synthesized by a sol-gel process.Different from the single V043 doping, further introduction of Ti^(4+) ion was easy to result in pre...
关键词:Li3Fe2(PO4)3 LITHIUM ion battery CATHODE DOPING ELECTROCHEMICAL property 
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