Promoting the Transformation of Li 2 S 2 to Li 2 S: Significantly Increasing Utilization of Active Materials for High‐Sulfur‐Loading Li–S Batteries

Author:

Yang Xiaofei123,Gao Xuejie14,Sun Qian1,Jand Sara Panahian5,Yu Ying23,Zhao Yang1,Li Xia1,Adair Keegan1,Kuo Liang‐Yin5,Rohrer Jochen6,Liang Jianneng1,Lin Xiaoting1,Banis Mohammad Norouzi1,Hu Yongfeng7,Zhang Hongzhang2,Li Xianfeng2,Li Ruying1,Zhang Huamin2,Kaghazchi Payam58,Sham Tsun‐Kong4,Sun Xueliang1ORCID

Affiliation:

1. Department of Mechanical and Materials EngineeringUniversity of Western Ontario London Ontario N6A 5B9 Canada

2. Division of Energy StorageDalian Institute of Chemical PhysicsChinese Academy of Sciences Zhongshan Road 457 Dalian 116023 China

3. School of Chemical ScienceUniversity of Chinese Academy of Sciences Beijing 100049 China

4. Department of ChemistryUniversity of Western Ontario ON N6A 5B9 Canada

5. Theoretical ElectrochemistryPhysikalische und Theoretische ChemieFreie Universität, Berlin Takustr. 3 D‐14195 Berlin Germany

6. Institut für MaterialwissenschaftFachgebiet MaterialmodellierungTechnische Universität Darmstadt Otto‐Berndt‐Str. 3 64287 Darmstadt Germany

7. Canadian Light Source 44 Innovation Boulevard Saskatoon SK S7N 2V3 Canada

8. Forschungszentrum Jülich GmbHInstitute of Energy and Climate Research IEK‐1 D‐52425 Jülich Germany

Funder

Natural Sciences and Engineering Research Council of Canada

Canada Excellence Research Chairs, Government of Canada

Canada Foundation for Innovation

Western University

National Natural Science Foundation of China

Youth Innovation Promotion Association of the Chinese Academy of Sciences

Natural Science Foundation of Liaoning Province

Dalian Institute of Chemical Physics

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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