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Localized high-concentration electrolytes for lithium metal batteries: progress and prospect

Frontiers of Chemical Science and Engineering 2023, Volume 17, Issue 10,   Pages 1354-1371 doi: 10.1007/s11705-022-2286-4

Abstract: metal is greatly considered an ideal candidate for next-generation battery systems.metal batteries due to the inevitable growth of lithium dendrites and poor interface stability.metal batteries.metal batteries are discussed.metal batteries.

Keywords: high-concentration electrolyte     localized high-concentration electrolyte     lithium metal battery     solid    

Three-dimensional composite Li metal anode by simple mechanical modification for high-energy batteries

Frontiers in Energy 2023, Volume 17, Issue 5,   Pages 569-584 doi: 10.1007/s11708-023-0875-7

Abstract: Lithium (Li) metal is believed to be the “Holy Grail” among all anode materials for next-generation Li-basedIt is well accepted that the construction of three-dimensional (3D) composite Li metal anode could tackleHowever, most strategies to build 3D composite Li metal anode require either electrodeposition or melt-infusionsystematic and in-depth investigation of this mechanical deformation technique to build 3D composite Li metal

Keywords: lithium (Li)-ion battery (LIB)     Li metal battery     three-dimensional (3D) composite Li metal anode     mechanical    

Lithium-based draw solute for forward osmosis to treat wastewater discharged from lithium-ion battery

Frontiers of Chemical Science and Engineering 2022, Volume 16, Issue 5,   Pages 755-763 doi: 10.1007/s11705-022-2137-3

Abstract: trifluoromethylsulfonyl)imide ([Hbet][Tf2N]) and Li2CO3 recovered from lithium-ionbattery (LIB) wastes is proposed as a novel draw solute to treat Li+-containing wastewater

Keywords: forward osmosis     lithium-ion battery     draw solution     lithium-containing wastewater     water treatment    

Evaluating R&D efficiency of China’s listed lithium battery enterprises

Frontiers of Engineering Management   Pages 473-485 doi: 10.1007/s42524-022-0213-5

Abstract: Promoting the growth of the lithium battery sector has been a critical aspect of China’s energy policyTo guide future policies and understand proper ways of promoting R&D efficiency, we looked into the lithiumbattery industry of China., data envelopment analysis (DEA) was used as the primary approach based on evidence from 22 listed lithiumbattery enterprises.

Keywords: Data Envelopment Analysis     R&D investment efficiency     China’s listed lithium battery enterprises     technical    

Recent Advances in Energy Chemical Engineering of Next-Generation Lithium Batteries Review

Xue-Qiang Zhang, Chen-Zi Zhao, Jia-Qi Huang, Qiang Zhang

Engineering 2018, Volume 4, Issue 6,   Pages 831-847 doi: 10.1016/j.eng.2018.10.008

Abstract:

Rechargeable lithium-ion batteries (LIBs) afford a profound impact on our modern daily life.Therefore, battery chemistries beyond LIBs are being widely investigated.Next-generation lithium (Li) batteries, which employ Li metal as the anode and intercalation or conversionKey challenges and recent progress in lithium-ion, lithium–sulfur, and lithium–oxygen batteries

Keywords: Lithium-ion batteries     Lithium–sulfur batteries     Lithium–oxygen batteries     Lithium metal     Solid-state batteries     Battery chemistry     Electrolyte    

Engineering zirconium-based metal-organic framework-801 films on carbon cloth as shuttle-inhibiting interlayersfor lithium-sulfur batteries

Frontiers of Chemical Science and Engineering 2022, Volume 16, Issue 4,   Pages 511-522 doi: 10.1007/s11705-021-2068-4

Abstract: Lithium-sulfur batteries have been regarded as the next-generation rechargeable batteries due to theirNevertheless, the shuttle effect of lithium polysulfides has hindered the development of lithium-sulfurHerein, a novel zirconium-based metal-organic framework-801 film on carbon cloth was developed as a versatileinterlayer for lithium-sulfur batteries.Based on the above advantages, the lithium-sulfur battery, with the proposed interlayer, delivers an

Keywords: lithium-sulfur batteries     metal-organic framework-801 film     interlayer     shuttle effect    

Modeling and optimization of an enhanced battery thermal management system in electric vehicles

Mao LI, Yuanzhi LIU, Xiaobang WANG, Jie ZHANG

Frontiers of Mechanical Engineering 2019, Volume 14, Issue 1,   Pages 65-75 doi: 10.1007/s11465-018-0520-z

Abstract: This paper models and optimizes an air-based battery thermal management system (BTMS) in a battery modulewith 36 battery lithium-ion cells.study the effects of three key parameters (i.e., mass flow rate of cooling air, heat flux from the batterycell to the cooling air, and passage spacing size) on the battery thermal performance.module, (ii) the temperature uniformity in the battery module, and (iii) the pressure drop.

Keywords: thermal management     electric vehicle     lithium-ion battery     temperature uniformity     design optimization    

Preparation of biomass-derived carbon loaded with MnO as lithium-ion battery anode for improving its

Frontiers of Chemical Science and Engineering 2023, Volume 18, Issue 1, doi: 10.1007/s11705-023-2376-y

Abstract: Biomass-derived carbon materials for lithium-ion batteries emerge as one of the most promising anodes

Keywords: biomass-derived carbon     MnO2     lithium-ion batteries     anode material     high reversible capacity    

A comparative study on polypropylene separators coated with different inorganic materials for lithium-ion

Linghui Yu, Jiansong Miao, Yi Jin, Jerry Y.S. Lin

Frontiers of Chemical Science and Engineering 2017, Volume 11, Issue 3,   Pages 346-352 doi: 10.1007/s11705-017-1648-9

Abstract: materials can improve the thermal stability of the polyolefin separators and hence improve the safety of lithium-ion

Keywords: lithium-ion battery     battery safety     composite separator     porosity     tortuosity    

anthraquinone-based polyimide enclosed SnO/reduced graphene oxide composite as high-performance anode for lithium-ionbattery

Frontiers of Chemical Science and Engineering 2023, Volume 17, Issue 9,   Pages 1231-1243 doi: 10.1007/s11705-023-2306-z

Abstract: The cycling stability of SnO2 anode as lithium-ion battery is poor due to volume expansion

Keywords: anthraquinone-based polyimide     multi-effect     tin dioxide     reduced graphene oxide     lithium-ion battery    

Lithium-ion modified cellulose as a water-soluble binder for Li-O battery

Frontiers in Energy 2022, Volume 16, Issue 3,   Pages 502-508 doi: 10.1007/s11708-021-0750-3

Abstract: An environment-friendly, water-soluble, and cellulose based binder (lithium carboxymethyl cellulose,can be a green substitute for poly(vinylidene fluoride) (PVDF) binder based on organic solvent in the lithium

Keywords: cellulose     binder     specific capacity     cyclabi- lity     lithium-oxygen batteries    

Machine learning and neural network supported state of health simulation and forecasting model for lithium-ionbattery

Frontiers in Energy doi: 10.1007/s11708-023-0891-7

Abstract: This paper reviews the value of AI methods in lithium-ion battery health management and in particularanalyses the application of machine learning (ML), one of the many branches of AI, to lithium-ion batteryparameters to characterize the actual lithium-ion battery SOH to a greater extent.The in-depth application of NN in lithium-ion battery SOH will certainly further enhance the science,reliability, stability, and robustness of lithium-ion battery management.

Keywords: machine learning     lithium-ion battery     state of health     neural network     artificial intelligence    

Lithium Batteries for Electric Vehicles

Chen Liquan

Strategic Study of CAE 2002, Volume 4, Issue 11,   Pages 32-36

Abstract: situation of electric vehicle (EV) in China, it has been pointed out that the neck for developing EV is batteryout that the key fact at the moment is to develop materials which can meet the requirements of Li-ion battery

Keywords: electric vehicle     hybrid electric vehicle     Li-ion battery     battery materials    

Development of Lithium and Its Downstream Power Battery Industry Chain in China

Xing Jiayun, Chen Qishen, Zhang Yanfei, Yu Wenjia, Long Tao , Zheng Guodong, Wang Kun

Strategic Study of CAE 2022, Volume 24, Issue 3,   Pages 10-19 doi: 10.15302/J-SSCAE-2022.03.002

Abstract:

The high-quality development of lithium resources and the downstreamThis paper analyzes the implications of lithium and its downstream power battery industry chain, whichDue to natural and ecological constraints, the expansion of domestic lithium ore production is restrictedFocusing on the high-quality development of lithium and its downstream power battery industry chain,technologies by strengthening the lithium battery technology system and talent reserves, and promoting

Keywords: lithium     power battery     industrial chain     high-quality development    

Preparation and lithium storage performances of g-C

Zhengxu BIAN, Zehua TANG, Jinfeng XIE, Junhao ZHANG, Xingmei GUO, Yuanjun LIU, Aihua YUAN, Feng ZHANG, Qinghong KONG

Frontiers in Energy 2020, Volume 14, Issue 4,   Pages 759-766 doi: 10.1007/s11708-020-0810-0

Abstract: As the anode material of lithium-ion battery, silicon-based materials have a high theoretical capacityThe superior lithium storage performances benefit from the unique g-C N /Si nanostructure, which improveselectroconductivity, reduces volume expansion, and accelerates lithium-ion transmission compared to

Keywords: thermal reduction     g-C3N4/Si nanocomposites     volume expansion     electroconductivity     lithium-ionbattery    

Title Author Date Type Operation

Localized high-concentration electrolytes for lithium metal batteries: progress and prospect

Journal Article

Three-dimensional composite Li metal anode by simple mechanical modification for high-energy batteries

Journal Article

Lithium-based draw solute for forward osmosis to treat wastewater discharged from lithium-ion battery

Journal Article

Evaluating R&D efficiency of China’s listed lithium battery enterprises

Journal Article

Recent Advances in Energy Chemical Engineering of Next-Generation Lithium Batteries

Xue-Qiang Zhang, Chen-Zi Zhao, Jia-Qi Huang, Qiang Zhang

Journal Article

Engineering zirconium-based metal-organic framework-801 films on carbon cloth as shuttle-inhibiting interlayersfor lithium-sulfur batteries

Journal Article

Modeling and optimization of an enhanced battery thermal management system in electric vehicles

Mao LI, Yuanzhi LIU, Xiaobang WANG, Jie ZHANG

Journal Article

Preparation of biomass-derived carbon loaded with MnO as lithium-ion battery anode for improving its

Journal Article

A comparative study on polypropylene separators coated with different inorganic materials for lithium-ion

Linghui Yu, Jiansong Miao, Yi Jin, Jerry Y.S. Lin

Journal Article

anthraquinone-based polyimide enclosed SnO/reduced graphene oxide composite as high-performance anode for lithium-ionbattery

Journal Article

Lithium-ion modified cellulose as a water-soluble binder for Li-O battery

Journal Article

Machine learning and neural network supported state of health simulation and forecasting model for lithium-ionbattery

Journal Article

Lithium Batteries for Electric Vehicles

Chen Liquan

Journal Article

Development of Lithium and Its Downstream Power Battery Industry Chain in China

Xing Jiayun, Chen Qishen, Zhang Yanfei, Yu Wenjia, Long Tao , Zheng Guodong, Wang Kun

Journal Article

Preparation and lithium storage performances of g-C

Zhengxu BIAN, Zehua TANG, Jinfeng XIE, Junhao ZHANG, Xingmei GUO, Yuanjun LIU, Aihua YUAN, Feng ZHANG, Qinghong KONG

Journal Article