用于先进锂离子电池多组分电解质高通量组合筛选的多通道电化学电池和液体处理分配器

IF 4.7 4区 材料科学 Q2 ELECTROCHEMISTRY
Shoichi Matsuda, Misato Takahashi
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引用次数: 0

摘要

锂离子电池作为储能设备,其性能要求不断提高。为了满足这些需求,优化电解质成分,特别是扩大锂离子电池的工作温度范围,仍然是一个关键的挑战。高通量实验是加速发现多组分电解质的有效途径。然而,由于集成温度控制系统的挑战,大多数关于电池电解质的高通量实验研究都集中在评估电池在室温下的性能。为了解决这一限制,本研究引入了一种高通量实验装置,该装置由(i)封闭式36孔多通道电化学电池模块,(ii)非接触式液体处理分配器,以及(iii)安装在温控室中的多电化学分析仪组成。该装置能够以组合方式制备多组分电解质添加剂,并在宽温度范围内使用所制备的电解质评估电池性能,实现每周超过400个样品的吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Multichannel Electrochemical Cell and Liquid-Handling Dispenser for High-Throughput Combinatorial Screening of Multicomponent Electrolytes for Advanced Lithium-Ion Batteries

Multichannel Electrochemical Cell and Liquid-Handling Dispenser for High-Throughput Combinatorial Screening of Multicomponent Electrolytes for Advanced Lithium-Ion Batteries

Multichannel Electrochemical Cell and Liquid-Handling Dispenser for High-Throughput Combinatorial Screening of Multicomponent Electrolytes for Advanced Lithium-Ion Batteries

Multichannel Electrochemical Cell and Liquid-Handling Dispenser for High-Throughput Combinatorial Screening of Multicomponent Electrolytes for Advanced Lithium-Ion Batteries

Multichannel Electrochemical Cell and Liquid-Handling Dispenser for High-Throughput Combinatorial Screening of Multicomponent Electrolytes for Advanced Lithium-Ion Batteries

The performance requirements of Li-ion batteries as energy storage devices are continuously increasing. To meet these demands, optimizing the electrolyte composition, especially for expanding the operating temperature range of LiBs, remains a critical challenge. High-throughput experimentation represents an effective approach for accelerating the discovery of multicomponent electrolytes. However, most high-throughput experiment studies on battery electrolytes are focused on evaluating the battery performance at room temperature owing to the challenges of integrating temperature control systems. To address this limitation, this study introduces a high-throughput experimental setup composed of a (i) closed-type 36-well multichannel electrochemical cell module, (ii) noncontact liquid-handling dispenser, and (iii) multielectrochemical analyzer installed within a temperature-controlled chamber. This setup enables the preparation of multicomponent electrolyte additives in a combinatorial manner and the evaluation of battery performance with the prepared electrolytes across a wide temperature range, achieving a throughput of over 400 samples per week.

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来源期刊
CiteScore
8.60
自引率
5.30%
发文量
223
期刊介绍: Electrochemical energy storage devices play a transformative role in our societies. They have allowed the emergence of portable electronics devices, have triggered the resurgence of electric transportation and constitute key components in smart power grids. Batteries & Supercaps publishes international high-impact experimental and theoretical research on the fundamentals and applications of electrochemical energy storage. We support the scientific community to advance energy efficiency and sustainability.
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