欢迎您!
东篱公司
退出
申报数据库
申报指南
立项数据库
成果数据库
期刊论文
会议论文
著 作
专 利
项目获奖数据库
位置:
成果数据库
>
期刊
> 期刊详情页
Acacia Senegal-InspiredBi-functional Binder for Longevity of Lithium-Sulfur Batteries
ISSN号:1614-6832
期刊名称:Advanced Energy Materials
时间:2015
页码:-
相关项目:应用同步辐射原位研究铈锆复合氧化物模型催化剂的结构和性能
作者:
Zhan Lin|Zhan Lin|Shanqing Zhang|Shanqing Zhang|
同期刊论文项目
应用同步辐射原位研究铈锆复合氧化物模型催化剂的结构和性能
期刊论文 31
会议论文 1
同项目期刊论文
Surface Science Studies on the Zirconia-Based Model Catalysts
Fe3O4@MOF core-shell magnetic microspheres as excellent catalysts for the Claisen-Schmidt condensati
Interaction of Zr with CeO2(111) Thin Film and Its Influence on Supported Ag Nanoparticles
Facile fabrication of CdS-metal-organic framework nanocomposites with enhanced visible-light photoca
Multifunctional Au-Fe3O4@MOF core-shell nanocomposite catalysts with controllable reactivity and mag
Synthesis and thermal stability of ordered CeO2 thin films
High-performance lithium/sulfur cells with a bi-functionally immobilized sulfur cathode
Facile Fabrication of CdS–Metal-Organic Framework Nanocomposites with Enhanced Visible-Light Photoc
Interaction of oxygen with samarium on Al2O3 thin film grown on Ni3Al(111)
有序二氧化铈薄膜的制备与热稳定性研究
Ag Nanoparticles on Reducible CeO2(111) Thin Films: Effect of Thickness and Stoichiometry of Ceria
Investigation of surface effects through the application of the functional binders in lithium sulfur
Atomic-Scale Insight into the Metal-Support Interaction: A Case for Ag Nanoparticles on Ordered ZrO2
Understanding the degradation mechanism of rechargeable lithium/sulfur cells: A comprehensive study
Enabling unassisted solar water splitting by iron oxide and silicon
High-performance hybrid oxide catalyst of manganese and cobalt for low-pressure methanol synthesis
Structural and Optical Interplay of Palladium-Modified TiO2 Nanoheterostructure
ElectronicStructure and Thermal Stability of Ni on ZrO2(111) Thin FilmSurfaces
An efficient room temperature core-shell AgPd@MOF catalyst for hydrogen production from formic acid
Ni在ZrO2(111)薄膜表面的生长、电子结构及热稳定性
Facile fabrication of CdS-metal-organic framework nanocomposites with enhanced visible-light photocatalytic activity for organic transformation