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ACS Applied Energy Materials
Resumen/Descripción – provisto por la editorial en inglés
ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.Palabras clave – provistas por la editorial
No disponibles.
Disponibilidad
Institución detectada | Período | Navegá | Descargá | Solicitá |
---|---|---|---|---|
No detectada | desde ene. 2018 / hasta dic. 2023 | ACS Publications |
Información
Tipo de recurso:
revistas
ISSN electrónico
2574-0962
Editor responsable
American Chemical Society (ACS)
País de edición
Estados Unidos
Fecha de publicación
2019-
Tabla de contenidos
Direct Observation of the Inhibition of Phase Segregation by Quaternary Ammonium in Mixed-Halide Perovskite
Xue Ren; Zhe-Yong Chen; Hui-Ling Hu; Yi Liu; Feng-Lei Jiang
Palabras clave: Electrical and Electronic Engineering; Materials Chemistry; Electrochemistry; Energy Engineering and Power Technology; Chemical Engineering (miscellaneous).
Pp. No disponible
Aluminum-Doped Lithium-Vacant Layered Li1–xCr1–xAlxO2: A Potentially Active Electrocatalyst for the Oxygen Evolution Reaction
Vaishali Soni; Shraddha Jaiswal; Preetam Singh; Asha Gupta
Palabras clave: Electrical and Electronic Engineering; Materials Chemistry; Electrochemistry; Energy Engineering and Power Technology; Chemical Engineering (miscellaneous).
Pp. No disponible
In Situ Synthesis of Mo and Ti-Dual Oxide-Incorporated Mo2Ti2C3Tx MXene Electrode Using a Lewis Acid-Assisted Method for Pseudocapacitors
Dayakar Gandla; Yun’an Zhou; Yihao Yan; Yifan Niu; Fuming Zhang; Daniel Q. Tan
Palabras clave: Electrical and Electronic Engineering; Materials Chemistry; Electrochemistry; Energy Engineering and Power Technology; Chemical Engineering (miscellaneous).
Pp. No disponible
Providing More Active Sites via Reactivation of “Dead Li2S” to Enhance the Long Cycle Performance of Lithium–Sulfur Batteries
Jiazhen Du; Xianxian Zhou; Yue Ma; Huazhao Yang; Xiaoxiao Liu; Donghong Duan; Qinbo Yuan; Shibin Liu
Palabras clave: Electrical and Electronic Engineering; Materials Chemistry; Electrochemistry; Energy Engineering and Power Technology; Chemical Engineering (miscellaneous).
Pp. No disponible
N−N Heterostructure Sm2O3/ZnO Electrolyte with Enhanced Proton Conduction for Fuel Cell Application
Xiuxiu Li; Enyi Hu; Faze Wang; Peter D. Lund; Jun Wang
Pp. No disponible
Room Temperature Lattice Thermal Conductivity of GeSn Alloys
Omar Concepción; Jhonny Tiscareño-Ramírez; Ada Angela Chimienti; Thomas Classen; Agnieszka Anna Corley-Wiciak; Andrea Tomadin; Davide Spirito; Dario Pisignano; Patrizio Graziosi; Zoran Ikonic; Qing Tai Zhao; Detlev Grützmacher; Giovanni Capellini; Stefano Roddaro; Michele Virgilio; Dan Buca
Pp. No disponible
Incorporation of HNb3O8 Nanosheets into PEDOT Aerogel with Enhanced Performance for Lithium-Ion Capacitor
Zhiyuan Yu; Xianchi Zhang; Xuexia He; Qi Li; Jie Sun; Zonghuai Liu; Zhibin Lei
Pp. No disponible
Ti3C2Tx/TiO2@GO* Heterostructure: A Strategy to Design High-Specific Capacitive Electrodes for a Solid-State Supercapacitor
Sanjay D. Sutar; Indrajit Patil; Haridas Parse; Prateekshita Mukherjee; Anita Swami
Pp. No disponible
Regulating Interfacial Compositions to Build a Stable Superlattice Structure of Layered Oxide Cathode Materials for Sodium-Ion Batteries
De Fang; Jianling Li
Pp. No disponible
Large-Scale Production of Continuous Sheath-Core Composite Phase Change Fibers for Personal Thermal Management in Cold Alpine Environments by Coaxial Wet Spinning Technology
Jinfeng Xiao; Zonglei Wang; Qingqing Chen; Yongheng Zhou; Zhiqin Xu; Yu Wang; Xinli Jiang; Aixin Zhang; Haroon.A.M. Saeed; Tao Xu; Hongjun Yang
Pp. No disponible