The author of ãHigh-throughput combinatorial screening of multi-component electrolyte additives to improve the performance of Li metal secondary batteriesã?were Matsuda, Shoichi; Nishioka, Kiho; Nakanishi, Shuji. And the article was published in Scientific Reports in 2019. SDS of cas: 872-36-6 The author mentioned the following in the article:
Data-driven material discovery has recently become popular in the field of next-generation secondary batteries. However, it is important to obtain large, high quality data sets to apply data-driven methods such as evolutionary algorithms or Bayesian optimization. Combinatorial high-throughput techniques are an effective approach to obtaining large data sets together with reliable quality. In the present study, we developed a combinatorial high-throughput system (HTS) with a throughput of 400 samples/day. The aim was to identify suitable combinations of additives to improve the performance of lithium metal electrodes for use in lithium batteries. Based on the high-throughput screening of 2002 samples, a specific combination of five additives was selected that drastically improved the coulombic efficiency (CE) of a lithium metal electrode. Importantly, the CE was remarkably decreased merely by removing one of these components, highlighting the synergistic basis of this mixture The results of this study show that the HTS presented herein is a viable means of accelerating the discovery of ideal yet complex electrolytes with multiple components that are very difficult to identify via conventional bottom-up approach. In the part of experimental materials, we found many familiar compounds, such as Vinylene carbonate(cas: 872-36-6SDS of cas: 872-36-6)
Vinylene carbonate(cas: 872-36-6) belongs to esters. Alkyl carbonates find applications as solvents for lithium ion battery electrolytes and the use of high quality battery grade electrolytes having extremely low water (<10 ppm) and acid (<10 ppm) contents are critical for achieving high electrochemical performance.SDS of cas: 872-36-6
Referemce:
Ester – Wikipedia,
Ester – an overview | ScienceDirect Topics