Opening book details…
About this book
A Y-doped P2-Na0.6Li0.11Fe0.27Mn0.62O2 cathode with improved high-rate capability and cycling stability for Na-ion batteries by Ming-Hui Cao & Ren-Yan Li & Fen-Fen Huang & Xin-Yin Cai & Miao Cui & Shi-Ya Lin & Jing-Yang Tian & Yuan-Ping Jiang & Zulipiya Shadike & Zheng-wen Fu is a book available to read on EtoBox.
- Author
- Ming-Hui Cao & Ren-Yan Li & Fen-Fen Huang & Xin-Yin Cai & Miao Cui & Shi-Ya Lin & Jing-Yang Tian & Yuan-Ping Jiang & Zulipiya Shadike & Zheng-wen Fu
- Publisher
- Royal Society of Chemistry
- Language
- EN
More by Ming-Hui Cao & Ren-Yan Li & Fen-Fen Huang & Xin-Yin Cai & Miao Cui & Shi-Ya Lin & Jing-Yang Tian & Yuan-Ping Jiang & Zulipiya Shadike & Zheng-wen Fu
Similar books
- An Aluminum-doped Sodium Manganese Hexacyano Ferrate Cathode for High-rate Safe Na-ion Batteries — P. Mohana Sundaram & S. K. Vineeth & Soumyashree Das Adhikari & C. Sanjaykumar & P. Sennu & Chhail Bihari Soni & Mahesh Chandra & Sungjemmenla & Hemant Kumar & Vipin Kumar
- Diatomic-doped Carbon Layer Decorated Na3V2(PO4)2F3 as a Durable Ultrahigh-stability Cathode for Sodium Ion Batteries — Xuntao Zhang & Hualing Tian & Yanhui Zhang & Yanjun Cai & Xiang Yao & Zhi Su
- Robust Hollow TiO2 Spheres for Lithium/sodium Ion Batteries with Excellent Cycling Stability and Rate Capability — Menglong Yao, Hongkang Wang, Ruifeng Qian, Tianhao Yao, Jian-Wen Shi, Yonghong Cheng
- Sb-Doped High-voltage LiCoO2 Enabled Improved Structural Stability and Rate Capability for High-performance Li-ion Batteries — Cong Chen & Tianyu Li & Xiaofei Yang & Chao Qu & Yang Luo & Yuxiao Wang & Huamin Zhang & Hongzhang Zhang & Xianfeng Li
- Cathode Material Stability Enhancement for Layered Manganese-based Sodium-ion Batteries by Doping Titanium — Qingmei Xiao & Soroosh Mahmoodi & Ziting Guo & Jinchao Huang & Shengwen Zhong
- Nitrogen and Sulfur Co-doped Ti3C2Tx MXenes for High-rate Lithium-ion Batteries — Renfei Cheng & Tao Hu & Jinxing Yang & Zuohua Wang & Weizhen Wang & Yan Liang & Zhiqing Yang & Hongwang Zhang & Xiaohui Wang