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Yihan Xiao
Researcher at Lawrence Berkeley National Laboratory
Publications - 12
Citations - 1178
Yihan Xiao is an academic researcher from Lawrence Berkeley National Laboratory. The author has contributed to research in topics: Fast ion conductor & Cathode. The author has an hindex of 7, co-authored 10 publications receiving 543 citations. Previous affiliations of Yihan Xiao include University of California, Berkeley.
Papers
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Journal ArticleDOI
Understanding interface stability in solid-state batteries
Yihan Xiao,Yihan Xiao,Yan Wang,Shou-Hang Bo,Shou-Hang Bo,Jae Chul Kim,Jae Chul Kim,Lincoln J. Miara,Gerbrand Ceder,Gerbrand Ceder +9 more
TL;DR: In this paper, the authors summarize the experimental findings for various classes of solid electrolytes and relate them to computational predictions, with the aim of providing a deeper understanding of the interfacial reactions and insight for the future design and engineering of interfaces in SSBs.
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Computational Screening of Cathode Coatings for Solid-State Batteries
TL;DR: In this paper, a computational framework was employed to evaluate and screen polyanionic materials as cathode coatings, focusing on their phase stability, electrochemical and chemical stability, and ionic conductivity.
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High Active Material Loading in All‐Solid‐State Battery Electrode via Particle Size Optimization
Tan Shi,Qingsong Tu,Yaosen Tian,Yihan Xiao,Yihan Xiao,Lincoln J. Miara,Olga Kononova,Gerbrand Ceder,Gerbrand Ceder +8 more
TL;DR: Shi et al. as mentioned in this paper demonstrated with both modeling and experiments that in the regime of high cathode loading, the utilization of cathode material in the solid-state composite is highly dependent on the particle size ratio of the cathode to the solid state conductor.
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Reactivity-Guided Interface Design in Na Metal Solid-State Batteries
Yaosen Tian,Yaosen Tian,Yingzhi Sun,Yingzhi Sun,Daniel C. Hannah,Yihan Xiao,Yihan Xiao,Hao Liu,Karena W. Chapman,Karena W. Chapman,Shou-Hang Bo,Shou-Hang Bo,Gerbrand Ceder,Gerbrand Ceder +13 more
TL;DR: In this article, a reactivity-driven strategy was employed to improve the interfacial stability between a Na3SbS4 solid-state electrolyte and sodium metal, which leads to the generation of passivating decomposition products upon contact of the electrolyte with sodium metal.
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Direct Visualization of the Interfacial Degradation of Cathode Coatings in Solid State Batteries: A Combined Experimental and Computational Study
Ya-Qian Zhang,Ya-Qian Zhang,Yaosen Tian,Yaosen Tian,Yihan Xiao,Yihan Xiao,Lincoln J. Miara,Yuichi Aihara,Tomoyuki Tsujimura,Tan Shi,Tan Shi,Mary Scott,Mary Scott,Gerbrand Ceder,Gerbrand Ceder +14 more
TL;DR: In this paper, the performance of uncoated, Li2ZrO3-coated and Li3B11O18-coating LiNi0.5Co 0.2Mn 0.3O2 cathodes are compared using first-principles computations and electron microscopy characterization.