Al homogeneous deposition induced by N-containing functional groups for enhanced cycling stability of Al-ion battery negative electrode
暂无分享,去创建一个
D. Fang | S. Jiao | Haosen Chen | Na Li | Jiguo Tu | Handong Jiao | X. Xiao | Mingyong Wang | D. She | Weili Song
[1] D. Fang,et al. Liquid gallium as long cycle life and recyclable negative electrode for Al-ion batteries , 2020 .
[2] Wei-li Song,et al. Cu-Al Composite as the Negative Electrode for Long-life Al-Ion Batteries , 2019, Journal of The Electrochemical Society.
[3] D. Fang,et al. Rechargeable ultrahigh-capacity tellurium–aluminum batteries , 2019, Energy & Environmental Science.
[4] Huanglong Li,et al. Enhancing Catalytic Activity of Titanium Oxide in Lithium–Sulfur Batteries by Band Engineering , 2019, Advanced Energy Materials.
[5] S. Jiao,et al. Self-supporting lithiophilic N-doped carbon rod array for dendrite-free lithium metal anode , 2019, Chemical Engineering Journal.
[6] Wei Weng,et al. In Situ Pyrolysis Concerted Formation of Si/C Hybrids during Molten Salt Electrolysis of SiO2@Polydopamine. , 2019, ACS applied materials & interfaces.
[7] Huanglong Li,et al. Enhanced Sulfur Transformation by Multifunctional FeS2/FeS/S Composites for High‐Volumetric Capacity Cathodes in Lithium–Sulfur Batteries , 2019, Advanced science.
[8] S. Jiao,et al. A Rechargeable Al–Te Battery , 2018, ACS Applied Energy Materials.
[9] Daining Fang,et al. Dense graphene papers: Toward stable and recoverable Al-ion battery cathodes with high volumetric and areal energy and power density , 2018, Energy Storage Materials.
[10] D. Fang,et al. In operando observation of chemical and mechanical stability of Li and Na dendrites under quasi-zero electrochemical field , 2018 .
[11] Wei Wang,et al. Short‐Range Order in Mesoporous Carbon Boosts Potassium‐Ion Battery Performance , 2018 .
[12] Chao Gao,et al. Ultrafast all-climate aluminum-graphene battery with quarter-million cycle life , 2017, Science Advances.
[13] Yingjun Liu,et al. A Defect‐Free Principle for Advanced Graphene Cathode of Aluminum‐Ion Battery , 2017, Advanced materials.
[14] J. Tu,et al. Exploring Advanced Sandwiched Arrays by Vertical Graphene and N‐Doped Carbon for Enhanced Sodium Storage , 2017, Advanced Energy Materials.
[15] D. Fang,et al. High-Performance Aluminum-Ion Battery with CuS@C Microsphere Composite Cathode. , 2017, ACS nano.
[16] S. Jiao,et al. An industrialized prototype of the rechargeable Al/AlCl3-[EMIm]Cl/graphite battery and recycling of the graphitic cathode into graphene , 2016 .
[17] S. Jiao,et al. Hexagonal NiS nanobelts as advanced cathode materials for rechargeable Al-ion batteries. , 2016, Chemical communications.
[18] S. Jiao,et al. A Novel Aluminum‐Ion Battery: Al/AlCl3‐[EMIm]Cl/Ni3S2@Graphene , 2016 .
[19] X. Lou,et al. Electrolytic Formation of Crystalline Silicon/Germanium Alloy Nanotubes and Hollow Particles with Enhanced Lithium-Storage Properties. , 2016, Angewandte Chemie.
[20] Masanobu Chiku,et al. Amorphous Vanadium Oxide/Carbon Composite Positive Electrode for Rechargeable Aluminum Battery. , 2015, ACS applied materials & interfaces.
[21] S. Jiao,et al. A new aluminium-ion battery with high voltage, high safety and low cost. , 2015, Chemical communications.
[22] Linxiao Geng,et al. Reversible Electrochemical Intercalation of Aluminum in Mo6S8 , 2015 .
[23] Feixiang Wu,et al. Li-ion battery materials: present and future , 2015 .
[24] Bing-Joe Hwang,et al. An ultrafast rechargeable aluminium-ion battery , 2015, Nature.
[25] Wei Wang,et al. A new cathode material for super-valent battery based on aluminium ion intercalation and deintercalation , 2013, Scientific Reports.
[26] L. Archer,et al. The rechargeable aluminum-ion battery. , 2011, Chemical communications.
[27] B. Delley. From molecules to solids with the DMol3 approach , 2000 .
[28] D. Karpuzov,et al. Investigation of d.c.-reactive magnetron-sputtered AlN thin films by electron microprobe analysis, X-ray photoelectron spectroscopy and polarised infra-red reflection , 1998 .
[29] B. Rauschenbach,et al. XPS investigation of AlN formation in aluminum alloys using plasma source ion implantation , 1998 .
[30] J. Schultze,et al. XPS and XTEM study of AlN formation by N+2 implantation of aluminium , 1998 .
[31] Robert A. Huggins,et al. Application of A-C Techniques to the Study of Lithium Diffusion in Tungsten Trioxide Thin Films , 1980 .
[32] Hong Li,et al. Confirming reversible Al3+ storage mechanism through intercalation of Al3+ into V2O5 nanowires in a rechargeable aluminum battery , 2017 .
[33] B. Delley. An all‐electron numerical method for solving the local density functional for polyatomic molecules , 1990 .