成果/Result
- Red@Black phosphorus core-shell heterostructure with superior air stability for high-rate and durable sodium-ion battery被引量:41收藏
- 作者:Ma, Xiangdong Ji, Chuang Li, Xiaokang Liu, Yike Xiong, Xunhui
- 机构:South China Univ Technol;Gannan Normal Univ;Guizhou Inst Technol
- 来源:MATERIALS TODAY 2022
- 关键词:Red@Black phosphorus Core-shell heterostructure Air stability Sodium-ion battery
- Zeolitic imidazolate framework-8 (ZIF-8) as a sacrificial template: one-pot synthesis of hollow poly(dopamine) nanocapsules and yolk-structured poly(dopamine) nanocomposites被引量:25收藏
- 作者:Ran, Jingyu Xiao, Lihua Wu, Weidang Liu, Yike Qiu, Wei
- 机构:Guizhou Inst Technol;Tianjin Univ;Guizhou Inst Technol;Guizhou Inst Technol;Tianjin Inst Pharmaceut Res Co Ltd
- 来源:NANOTECHNOLOGY 2017
- 关键词:poly(dopamine) metal organic frameworks sacrificial template nanocapsules yolk-structured nanocomposites
- Oxygen-rich graphene vertically grown on 3D N-Doped carbon foam for high-performance sodium ion batteries被引量:20收藏
- 作者:Ma, Xiangdong Ji, Chuang Liu, Yike Yu, Xiaoyuan Xiong, Xunhui
- 机构:South China Univ Technol;Guizhou Inst Technol;South China Agr Univ
- 来源:JOURNAL OF POWER SOURCES 2022
- 关键词:Graphene Oxygen functional group Vertical array structure Sodium ion batteries Long-term stability
- Near-infrared radiation absorption properties of covellite (CuS) using first-principles calculations被引量:19收藏
- 作者:Xiao, Lihua Wu, Jianming Ran, Jingyu Liu, Yike Qiu, Wei
- 机构:Guizhou Inst Technol;Hunan Normal Univ;Guizhou Inst Technol;Hunan Univ
- 来源:AIP ADVANCES 2016
- 关键词:Calculations - Copper compounds - Density functional theory - Electronic structure - Infrared devices - Infrared radiation - Optical lattices - Plasma oscillations - Sulfide minerals
- A Covalent Heterostructure of Metal Phosphide Quantum Dots Anchored in N, P Co-doped Carbon Nanocapsules for Fast and Durable Lithium Storage被引量:14收藏
- 作者:Ma, Xiangdong Ji, Chuang Yu, Xiaoyuan Liu, Yike Xiong, Xunhui
- 机构:South China Univ Technol;South China Agr Univ;Guizhou Inst Technol
- 来源:ACS APPLIED MATERIALS & INTERFACES 2021
- 关键词:Co2P anode materials covalent heterostructure conversion reaction kinetics lithium ion batteries
- Solar radiation shielding properties of transparent LaB6 filters through experimental and first-principles calculation methods被引量:12收藏
- 作者:Xiao, Lihua Su, Yuchang Qiu, Wei Liu, Yike Ran, Jingyu
- 机构:Guizhou Inst Technol;Cent S Univ;Hunan Normal Univ;Guizhou Inst Technol;Hunan Univ
- 来源:CERAMICS INTERNATIONAL 2016
- 关键词:LaB6 filters Solar radiation shielding properties Transparent First-principles
- Efficient photothermal alcohol dehydration over a plasmonic W18O49 nanostructure under visible-to-near-infrared irradiation被引量:1收藏
- 作者:Zhang, Xueliang Luo, Dajun Liu, Yike Wang, Xin Hu, Huilin
- 机构:Guizhou Inst Technol;Tianjin Univ;Natl Inst Mat Sci NIMS
- 来源:JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY A-CHEMISTRY 2023
- 关键词:Photothermal catalysis Plasmonic semiconductor Alcohol dehydration Ethylene
- Enhanced photothermal dehydration of methanol over W18O49/Au/SAPO-34 catalysts with broadened light absorption被引量:0收藏
- 作者:Tang, Ya-Qin Yan, Meng-Xia Lu, Chang-Qian Li, Shao-Yuan Wei, Kui-Xian
- 机构: Faculty of Metallurgical and Energy Engineering; School of Materials and Energy Engineering
- 来源:Rare Metals 2023
- 关键词:Catalyst selectivity - Chemical bonds - Dehydration - Ethylene - Fossil fuels - Gold - Image enhancement - Light absorption - Methanol - Molecular sieves - Nanoparticles - Surface plasmon resonance
- Visible-Light-Driven C-C Coupling Over Plasmonic Catalysts for Photothermal Mto Reaction被引量:0收藏
- 作者:Zhang, Xueliang Wang, Xin Yang, Caiyi Lu, Changqian Yang, Di
- 机构: School of Materials and Energy Engineering; China Automotive Technology and Research Center Co.
- 来源:SSRN 2022
- 关键词:Catalysis - Catalyst selectivity - Energy conservation - Ethylene - Methanol - Nanorods - Plasmonics - Surface plasmon resonance
- First-principles prediction of solar radiation shielding performance for transparent windows of GdB6被引量:0收藏
- 作者:Xiao, Lihua Su, Yuchang Ran, Jingyu Liu, Yike Qiu, Wei
- 机构: School of Materials and Metallurgical Engineering; School of Materials Science and Engineering; Guizhou Special Functional Materials 2011 Collaborative Innovation Center; College of Physics and Information Science; School of Materials Science and Engineering
- 来源:Journal of Applied Physics 2016
- 关键词:Calculations - Gadolinium compounds - Optical properties - Solar radiation - Infrared devices - Magnetism - Radiation shielding
- Regulation of dual-scale structure of polypropylene/poly(ethylene-co-vinyl alcohol) hollow fiber membranes with bimodal pore base on lamellae optimization during annealing被引量:0收藏
- 作者:Luo, Dajun Zhang, Xueliang Qin, Shuhao Liu, Yike
- 机构:Guizhou Inst Technol;Guizhou Univ;Natl Engn Res Ctr Compounding & Modificat Polymer
- 来源:REACTIVE & FUNCTIONAL POLYMERS 2023
- 关键词:Hollow fiber membrane Melt spinning -stretching Bimodal pore Annealing temperature Dual -scale structure
- First-principles investigation on solar radiation shielding performance of rutile VO2 filters for smart windows被引量:0收藏
- 作者:Xiao, Lihua Su, Yuchang Qiu, Wei Ran, Jingyu Liu, Yike
- 机构: School of Materials and Metallurgical Engineering; School of Materials Science and Engineering; Guizhou Special Functional Materials 2011 Collaborative Innovation Center; School of Materials Science and Engineering
- 来源:Applied Physics Letters 2016
- 关键词:Metal insulator boundaries - Optical properties - Titanium dioxide - Vanadium dioxide - Energy dissipation - Infrared devices - Metal insulator transition - Bandpass filters - Light absorption - Oxide minerals - Calculations - Semiconductor insulator boundaries
- Ti掺杂的WO3纳米片光阳极的能带调控和光电化学分解水性能被引量:0收藏
- 作者:Tang, Ya-qin Jiang, Di Wang, Huan Zheng, Hong-ye Ren, Lu-jun
- 机构: Faculty of Metallurgical and Energy Engineering; School of Materials and Energy Engineering
- 来源:[1] Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming, 650093, China; [2] School of Materials and Energy Engineering, Guizhou Institute of Technology, Guiyang, 550003, China 2022