Author
Listed:
- Udayabagya Halim
(University of California)
- Chu Ran Zheng
(University of California)
- Yu Chen
(University of California)
- Zhaoyang Lin
(University of California)
- Shan Jiang
(University of California)
- Rui Cheng
(University of California)
- Yu Huang
(University of California
California NanoSystems Institute, University of California)
- Xiangfeng Duan
(University of California
California NanoSystems Institute, University of California)
Abstract
Exfoliation of layered materials such as graphite and transition metal dichalcogenides into mono- or few-layers is of significant interest for both the fundamental studies and potential applications. Here we report a systematic investigation of the fundamental factors governing the liquid exfoliation process and the rational design of a cosolvent approach for the exfoliation of layered materials. We show that Young’s equation can be used to predict the optimal cosolvent concentration for the effective exfoliation of graphite and molybdenum disulphide in water mixtures with methanol, ethanol, isopropanol and t-butyl alcohol. Moreover, we find that the cosolvent molecular size has an important role in the exfoliation yield, attributed to the larger steric repulsion provided by the larger cosolvent molecules. Our study provides critical insight into the exfoliation of layered materials, and defines a rational strategy for the design of an environmentally friendly pathway to the high yield exfoliation of layered materials.
Suggested Citation
Udayabagya Halim & Chu Ran Zheng & Yu Chen & Zhaoyang Lin & Shan Jiang & Rui Cheng & Yu Huang & Xiangfeng Duan, 2013.
"A rational design of cosolvent exfoliation of layered materials by directly probing liquid–solid interaction,"
Nature Communications, Nature, vol. 4(1), pages 1-7, October.
Handle:
RePEc:nat:natcom:v:4:y:2013:i:1:d:10.1038_ncomms3213
DOI: 10.1038/ncomms3213
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