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Electrochemical impedance spectroscopy for all‐solid‐state batteries: theory, methods and future outlook
Electrochemical impedance spectroscopy (EIS) is widely used to probe the physical and
chemical processes in lithium (Li)‐ion batteries (LiBs). The key parameters include state‐of …
chemical processes in lithium (Li)‐ion batteries (LiBs). The key parameters include state‐of …
In situ polymerization process: an essential design tool for lithium polymer batteries
Polymer electrolytes (PEs), a type of solid-state electrolytes (SSEs), have been in contention
for nearly half a century to replace organic liquid electrolytes (LEs) that are used in state-of …
for nearly half a century to replace organic liquid electrolytes (LEs) that are used in state-of …
Enhancing the d/p‐band center proximity with amorphous‐crystalline interface coupling for boosted pH‐robust water electrolysis
Rationalizing non‐precious pH‐robust electrocatalysts is a crucial priority and required for
multi‐scenario hydrogen production customization. Herein, an amorphous–crystalline …
multi‐scenario hydrogen production customization. Herein, an amorphous–crystalline …
Synergizing Hydrogen Spillover and Deprotonation by the Internal Polarization Field in a MoS2/NiPS3 Vertical Heterostructure for Boosted Water Electrolysis
Hydrogen spillover (HSo) has emerged to upgrade the hydrogen evolution reaction (HER)
activity of Pt‐support electrocatalysts, but it is not applicable to the deprotonated oxygen …
activity of Pt‐support electrocatalysts, but it is not applicable to the deprotonated oxygen …
Anodic TiO2 nanotubes: A promising material for energy conversion and storage
Self-organized TiO 2 nanotube (TNT) layers formed by an anodization process have
emerged for the conception of innovative systems in the conversion and storage of energy …
emerged for the conception of innovative systems in the conversion and storage of energy …
Amorphous–crystalline CoFeB/NiPS 3 vertical heterostructure with a built-in electric field for robust ampere-level water oxidation
Highly efficient oxygen evolution reaction (OER) electrocatalysts play a paramount role in
future hydrogen energy deployment. The quest for earth-abundant OER catalysts is actively …
future hydrogen energy deployment. The quest for earth-abundant OER catalysts is actively …
Evaluating the performance of hybrid proton exchange membrane for PEM water electrolysis
Owing to their attractive properties (eg reduced gas permeation, comparable proton
conductivity, enhanced thermal stability, lower cost), hybrid nanocomposite membranes …
conductivity, enhanced thermal stability, lower cost), hybrid nanocomposite membranes …
Molecules to Masterpieces: Bridging Materials Science and the Arts
Abstract Art and materials innovation have always been intertwined, dating back to the
earliest human creations. In modern times, however, the increasing specialization of …
earliest human creations. In modern times, however, the increasing specialization of …
Modified polymer electrolyte membrane for microbial fuel cell: Performance analysis, investigation on anti-biofouling effect, and microbial community analysis on …
Sulphonation is limited in Sulphonated Polyether Ether Ketone (SPEEK) due to its solubility
in water beyond an extent. However, to enhance performance of polymer electrolyte …
in water beyond an extent. However, to enhance performance of polymer electrolyte …
Deep reconstruction of crystalline–amorphous heterojunction electrocatalysts for efficient and stable water and methanol electrolysis
During electrocatalytic water splitting, surface reconstruction often occurs to generate truly
active species for catalytic reactions, but the stability and mass activity of the catalysts is a …
active species for catalytic reactions, but the stability and mass activity of the catalysts is a …