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Silicon as emerging anode in solid-state batteries
Silicon is one of the most promising anode materials due to its very high specific capacity
(3590 mAh g–1), and recently its use in solid-state batteries (SSBs) has been proposed …
(3590 mAh g–1), and recently its use in solid-state batteries (SSBs) has been proposed …
[HTML][HTML] Characterizing battery materials and electrodes via in situ/operando transmission electron microscopy
In situ transmission electron microscopy (TEM) research has enabled better understanding
of various battery chemistries (Li-ion, Li–S, metal–O 2, Li, and Na metal based, etc.), which …
of various battery chemistries (Li-ion, Li–S, metal–O 2, Li, and Na metal based, etc.), which …
Characterizing Electrode Materials and Interfaces in Solid-State Batteries
Solid-state batteries (SSBs) could offer improved energy density and safety, but the
evolution and degradation of electrode materials and interfaces within SSBs are distinct from …
evolution and degradation of electrode materials and interfaces within SSBs are distinct from …
A Rational Design of Silicon‐Based Anode for All‐Solid‐State Lithium‐Ion Batteries: A Review
M Kim, H Ahn, J Choi, WB Kim - Energy Technology, 2023 - Wiley Online Library
Silicon is a promising alternative to the conventional graphite anode for lithium‐ion batteries
(LIBs). However, pulverization of Si particles caused by volume expansion and formation of …
(LIBs). However, pulverization of Si particles caused by volume expansion and formation of …
In Situ/Operando Methods of Characterizing All-Solid-State Li-Ion Batteries: Understanding Li-Ion Transport during Cycle
Clean energy is an utmost need for the betterment of society. Li-ion batteries (LIBs) have
been the clean-energy choice for several decades. However, with the increasing demand for …
been the clean-energy choice for several decades. However, with the increasing demand for …
The potential of scanning electrochemical probe microscopy and scanning droplet cells in battery research
Spatially resolved characterization of electrode surfaces or electrode–electrolyte interfaces
is of fundamental interest in battery research to unravel the complex underlying …
is of fundamental interest in battery research to unravel the complex underlying …
Probing the electrolyte/electrode interface with vibrational sum frequency generation spectroscopy: A review
Over the past decades, Lithium-ion batteries have seen extensive improvements, and as a
result are now the primary choice in many applications for their power, energy, and …
result are now the primary choice in many applications for their power, energy, and …
Operando characterization of interfacial charge transfer processes
C Baeumer - Journal of Applied Physics, 2021 - pubs.aip.org
Interface science has become a key aspect for fundamental research questions and for the
understanding, design, and optimization of urgently needed energy and information …
understanding, design, and optimization of urgently needed energy and information …
Anode-less Li-based metal batteries and beyond: Challenges, strategies, and prospects
H Shi, F Chu, Y Zhang, Y Liu, L Hou, X Li, C Yuan - Materials Today, 2025 - Elsevier
Traditional lithium-ion batteries struggle to meet the escalating energy density demands of
electric vehicles, electronic devices and other applications, precipitating a surge in interest …
electric vehicles, electronic devices and other applications, precipitating a surge in interest …
Multivariate hyperspectral data analytics across length scales to probe compositional, phase, and strain heterogeneities in electrode materials
The origins of performance degradation in batteries can be traced to atomistic phenomena,
accumulated at mesoscale dimensions, and compounded up to the level of electrode …
accumulated at mesoscale dimensions, and compounded up to the level of electrode …