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Titlebook: Interface Ionics; For All-Solid-State Yasutoshi Iriyama,Koji Amezawa,Naoaki Yabuuchi Book 2024 Materials Research Society, under exclusive

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書目名稱Interface Ionics
副標(biāo)題For All-Solid-State
編輯Yasutoshi Iriyama,Koji Amezawa,Naoaki Yabuuchi
視頻videohttp://file.papertrans.cn/477/476231/476231.mp4
概述Focuses on interface of all-solid-state batteries and solid-state-ionics devices.Summarizes topics covering experimental, analytical, and theoretical aspects.Reveals Unique ion migration mechanisms at
叢書名稱The Materials Research Society Series
圖書封面Titlebook: Interface Ionics; For All-Solid-State  Yasutoshi Iriyama,Koji Amezawa,Naoaki Yabuuchi Book 2024 Materials Research Society, under exclusive
描述.This book focuses on ion transport and storage around the interfaces in solid-state-ionics?devices, especially for all-solid-state batteries. It covers materials research from fundamental model systems to practically important materials, advanced analysis methods, and computational &?data?science. This volume is intended for researchers in academia and industry who have studied or worked in this field. It is expected to provide readers with guidelines for interface and material design aimed at advancing all-solid-state batteries, as well as insights into the development of novel solid-state?ionics?devices...This book is a summary of the studies obtained in the Grant-in-Aid for Scientific Research on Innovative Areas "Interface?Ionics” founded by the Japanese Ministry of Education, Culture, Sports, Science and Technology (MEXT) during 2019-2023..
出版日期Book 2024
關(guān)鍵詞Interface; All-solid-state Batteries; Solid State Ionics; Ion transfer; Ionic devices
版次1
doihttps://doi.org/10.1007/978-981-97-6039-8
isbn_softcover978-981-97-6041-1
isbn_ebook978-981-97-6039-8Series ISSN 2730-7360 Series E-ISSN 2730-7379
issn_series 2730-7360
copyrightMaterials Research Society, under exclusive license to Springer Nature Singapore Pte Ltd. 2024
The information of publication is updating

書目名稱Interface Ionics影響因子(影響力)




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Overview of Interface Ionics Project (2019–2024)arge reactions and high capacity electrode materials. Furthermore, those interfaces are effective to develop novel solid state ionics devices such as all-solid-state capacitor, transistor, and electret.
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Trigger of the Highly Resistive Layer Formation at the Cathode-Electrolyte Interface in All-Solid-St decomposition completes at 500?°C. Since no transition metal interdiffusion occurs below 500?°C, the reaction product is the decomposed lithium-deficient garnet phase. The present work offers that the lithium migration is the first step of highly resistive layer formation, resulting in the decomposition of the lithium-deficient garnet phase.
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Lithium Plating/Stripping Reactions at Oxide Solid Electrolyte Interfacestribution of mechanical work to deform current collectors to the overpotential and the interplay between the Li nucleation process and the reductive decomposition of SEs. Additionally, it covers short-circuit phenomena in SEs.
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Thin Film Battery with Epitaxial LiCoO2 Cathodeterface of p-type LiCoO. film on n-type SrTiO. substrate induces rectifying transport behavior with anomalous overpotentials, Pt current collectors connected to LiCoO. films enable it possible to make an ohmic contact with ignorable resistance at any interfaces.
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