Bayesian Optimization of Environmentally Sustainable Graphene Inks Produced by Wet Jet Milling

石墨烯 材料科学 石墨 剥脱关节 纳米技术 化学工程 工艺工程 复合材料 工程类
作者
Lindsay E. Chaney,Anton van Beek,Julia R. Downing,Jinrui Zhang,Hengrui Zhang,Janan Hui,Eva Sørensen,Maryam Khalaj,Jennifer B. Dunn,Wei Chen,Mark C. Hersam
出处
期刊:Small [Wiley]
卷期号:20 (33) 被引量:3
标识
DOI:10.1002/smll.202309579
摘要

Liquid phase exfoliation (LPE) of graphene is a potentially scalable method to produce conductive graphene inks for printed electronic applications. Among LPE methods, wet jet milling (WJM) is an emerging approach that uses high-speed, turbulent flow to exfoliate graphene nanoplatelets from graphite in a continuous flow manner. Unlike prior WJM work based on toxic, high-boiling-point solvents such as n-methyl-2-pyrollidone (NMP), this study uses the environmentally friendly solvent ethanol and the polymer stabilizer ethyl cellulose (EC). Bayesian optimization and iterative batch sampling are employed to guide the exploration of the experimental phase space (namely, concentrations of graphite and EC in ethanol) in order to identify the Pareto frontier that simultaneously optimizes three performance criteria (graphene yield, conversion rate, and film conductivity). This data-driven strategy identifies vastly different optimal WJM conditions compared to literature precedent, including an optimal loading of 15 wt% graphite in ethanol compared to 1 wt% graphite in NMP. These WJM conditions provide superlative graphene production rates of 3.2 g hr

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