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Hanna He

Sichuan University · CN
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Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Advancements in Battery Materials, Advanced Battery Materials and Technologies, Supercapacitor Materials and Fabrication, and Advanced battery technologies research.
h-index
40
citations
6,050
works
93
NIH funding
primary concept
email

Recent publications

Correction to “Anion Vacancies Regulating Endows MoSSe with Fast and Stable Potassium Ion Storage”
ACS Nano 2024cited by 1position: firstdoi
A Review on Mechanochemistry: Approaching Advanced Energy Materials with Greener Force
Advanced Materials 2022cited by 269position: middledoi
Harnessing Plasma‐Assisted Doping Engineering to Stabilize Metallic Phase MoSe<sub>2</sub> for Fast and Durable Sodium‐Ion Storage
Advanced Materials 2022cited by 136position: firstdoi
Engineering Textile Electrode and Bacterial Cellulose Nanofiber Reinforced Hydrogel Electrolyte to Enable High‐Performance Flexible All‐Solid‐State Supercapacitors
Advanced Energy Materials 2021cited by 236position: middledoi
Electron-Injection-Engineering Induced Phase Transition toward Stabilized 1T-MoS<sub>2</sub> with Extraordinary Sodium Storage Performance
ACS Nano 2021cited by 134position: firstdoi
Interfacing MXene flakes on fiber fabric as an ultrafast electron transport layer for high performance textile electrodes
Energy storage materials 2020cited by 108position: middledoi
Designing a hybrid electrode toward high energy density with a staged Li <sup>+</sup> and PF <sub>6</sub> <sup>−</sup> deintercalation/intercalation mechanism
Proceedings of the National Academy of Sciences 2020cited by 67position: middledoi
Tuning nitrogen species in three-dimensional porous carbon via phosphorus doping for ultra-fast potassium storage
Nano Energy 2019cited by 400position: firstdoi
Anion Vacancies Regulating Endows MoSSe with Fast and Stable Potassium Ion Storage
ACS Nano 2019cited by 297position: firstdoi
Synergistic effect of N-doping and rich oxygen vacancies induced by nitrogen plasma endows TiO2 superior sodium storage performance
Electrochimica Acta 2019cited by 56position: middledoi
Plasma‐Induced Amorphous Shell and Deep Cation‐Site S Doping Endow TiO<sub>2</sub> with Extraordinary Sodium Storage Performance
Advanced Materials 2018cited by 212position: firstdoi

Grants

No grants ingested yet.

Frequent collaborators

Dan Huang · Guangxi University7 papers (2018–2024)Junnan Hao · Nantong University6 papers (2019–2024)Yougen Tang · Central South University6 papers (2018–2024)Wei Kong Pang · University of Wollongong5 papers (2018–2024)Haiyan Wang · Shandong University of Technology4 papers (2018–2024)Chuhong Zhang · Sichuan University3 papers (2021–2022)Zhanhu Guo · North Carolina State University3 papers (2019–2020)Sailin Liu · University of Wollongong3 papers (2019–2024)Bernt Johannessen · University of Wollongong2 papers (2019–2024)Qingmeng Gan · National University of Singapore2 papers (2019–2024)Gemeng Liang · Shandong University2 papers (2020–2021)Qi Wang · Collaborative Innovation Center of Advanced Microstructures2 papers (2018–2019)Rong Liu · Nantong University2 papers (2020–2021)Xiaolong Li · University of Wollongong2 papers (2021–2022)Yuanming Wang · ARC Centre of Excellence for Gravitational Wave Discovery2 papers (2020–2021)Zhibin Wu · University of Wollongong2 papers (2019–2024)Guohui Yuan · Harbin Institute of Technology2 papers (2020–2021)Jing‐Li Luo · University of Alberta2 papers (2019–2024)Xiaobo Ji · Central South University2 papers (2018–2019)Fuhua Yang · University of Wollongong1 papers (2020–2020)
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