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Featured researches published by Hao Mu.


Journal of Chemistry | 2015

Aging Mechanisms of Electrode Materials in Lithium-Ion Batteries for Electric Vehicles

Cheng Lin; Aihua Tang; Hao Mu; Wenwei Wang; Chun Wang

Electrode material aging leads to a decrease in capacity and/or a rise in resistance of the whole cell and thus can dramatically affect the performance of lithium-ion batteries. Furthermore, the aging phenomena are extremely complicated to describe due to the coupling of various factors. In this review, we give an interpretation of capacity/power fading of electrode-oriented aging mechanisms under cycling and various storage conditions for metallic oxide-based cathodes and carbon-based anodes. For the cathode of lithium-ion batteries, the mechanical stress and strain resulting from the lithium ions insertion and extraction predominantly lead to structural disordering. Another important aging mechanism is the metal dissolution from the cathode and the subsequent deposition on the anode. For the anode, the main aging mechanisms are the loss of recyclable lithium ions caused by the formation and increasing growth of a solid electrolyte interphase (SEI) and the mechanical fatigue caused by the diffusion-induced stress on the carbon anode particles. Additionally, electrode aging largely depends on the electrochemical behaviour under cycling and storage conditions and results from both structural/morphological changes and side reactions aggravated by decomposition products and protic impurities in the electrolyte.


Applied Energy | 2016

A novel multi-model probability battery state of charge estimation approach for electric vehicles using H-infinity algorithm

Cheng Lin; Hao Mu; Rui Xiong; Weixiang Shen


Applied Energy | 2017

A systematic model-based degradation behavior recognition and health monitoring method for lithium-ion batteries

Rui Xiong; Jinpeng Tian; Hao Mu; Chun Wang


Applied Energy | 2017

A comparative study on the applicability of ultracapacitor models for electric vehicles under different temperatures

Chun Wang; Hongwen He; Yongzhi Zhang; Hao Mu


Applied Energy | 2017

A novel method on estimating the degradation and state of charge of lithium-ion batteries used for electrical vehicles

Ruixin Yang; Rui Xiong; Hongwen He; Hao Mu; Chun Wang


Applied Energy | 2017

Multi-model probabilities based state fusion estimation method of lithium-ion battery for electric vehicles: State-of-energy

Cheng Lin; Hao Mu; Rui Xiong; Jiayi Cao


Applied Energy | 2017

A novel fractional order model based state-of-charge estimation method for lithium-ion battery

Hao Mu; Rui Xiong; Hongfei Zheng; Yuhua Chang; Zeyu Chen


Applied Energy | 2017

A novel parameter and state-of-charge determining method of lithium-ion battery for electric vehicles

Zhirun Li; Rui Xiong; Hao Mu; Hongwen He; Chun Wang


Applied Energy | 2018

An electrochemical model based degradation state identification method of Lithium-ion battery for all-climate electric vehicles application

Rui Xiong; Linlin Li; Zhirun Li; Quanqing Yu; Hao Mu


Applied Energy | 2018

Design and real-time test of a hybrid energy storage system in the microgrid with the benefit of improving the battery lifetime

Jianwei Li; Rui Xiong; Hao Mu; Bertrand Cornélusse; Philippe Vanderbemden; Damien Ernst; Weijia Yuan

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Rui Xiong

Beijing Institute of Technology

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Chun Wang

Beijing Institute of Technology

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Hongwen He

Beijing Institute of Technology

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Cheng Lin

Beijing Institute of Technology

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Zhirun Li

Beijing Institute of Technology

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Hongfei Zheng

Beijing Institute of Technology

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Jiayi Cao

Beijing Institute of Technology

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Jinpeng Tian

Beijing Institute of Technology

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