Design criteria for silicon‐based anode binders in half and full cells

L Deng, Y Zheng, X Zheng, T Or, Q Ma… - Advanced Energy …, 2022 - Wiley Online Library
While silicon is considered one of the most promising anode materials for the next
generation of high‐energy lithium‐ion batteries (LIBs), the industrialization of Si anodes is …

Designing polymers for advanced battery chemistries

J Lopez, DG Mackanic, Y Cui, Z Bao - Nature Reviews Materials, 2019 - nature.com
Electrochemical energy storage devices are becoming increasingly important to our global
society, and polymer materials are key components of these devices. As the demand for …

Exploring chemical, mechanical, and electrical functionalities of binders for advanced energy-storage devices

H Chen, M Ling, L Hencz, HY Ling, G Li, Z Lin… - Chemical …, 2018 - ACS Publications
Tremendous efforts have been devoted to the development of electrode materials,
electrolytes, and separators of energy-storage devices to address the fundamental needs of …

Alloy negative electrodes for Li-ion batteries

MN Obrovac, VL Chevrier - Chemical reviews, 2014 - ACS Publications
Graphite is an excellent negative electrode (anode) material for Li-ion batteries. It has high
specific capacity (eg,∼ 2.5× higher than LiCoO 2), high volumetric capacity (∼ the same as …

A commercial conducting polymer as both binder and conductive additive for silicon nanoparticle-based lithium-ion battery negative electrodes

TM Higgins, SH Park, PJ King, C Zhang, N McEvoy… - Acs Nano, 2016 - ACS Publications
This work describes silicon nanoparticle-based lithium-ion battery negative electrodes
where multiple nonactive electrode additives (usually carbon black and an inert polymer …

[图书][B] Lithium batteries

C Julien, A Mauger, A Vijh, K Zaghib, C Julien… - 2016 - Springer
First attempts to create batteries using an ion other than the proton were done in the 1970s
with the fabrication of lithium primary cells. It was the fast development of the electronic …

Confronting the challenges of next‐generation silicon anode‐based lithium‐ion batteries: role of designer electrolyte additives and polymeric binders

GG Eshetu, E Figgemeier - ChemSusChem, 2019 - Wiley Online Library
Silicon has emerged as the next‐generation anode material for high‐capacity lithium‐ion
batteries (LIBs). It is currently of scientific and practical interest to encounter increasingly …

An all‐integrated anode via interlinked chemical bonding between double‐shelled–yolk‐structured silicon and binder for lithium‐ion batteries

Y Liu, Z Tai, T Zhou, V Sencadas, J Zhang… - Advanced …, 2017 - Wiley Online Library
The concept of an all‐integrated design with multifunctionalization is widely employed in
optoelectronic devices, sensors, resonator systems, and microfluidic devices, resulting in …

Binders for Si based electrodes: Current status, modification strategies and perspective

Z Hu, R Zhao, J Yang, C Wu, Y Bai - Energy Storage Materials, 2023 - Elsevier
Silicon based materials have attracted much attention and expectations because of their
high energy densities. However, due to the failure behaviors caused by the inherent volume …

The significance of aqueous binders in lithium-ion batteries

N Lingappan, L Kong, M Pecht - Renewable and Sustainable Energy …, 2021 - Elsevier
The demand for safer and cost-effective lithium-ion batteries with higher energy density and
longer life requires thorough investigation into the structural and electrochemical behavior of …