AI Article Synopsis

  • Layered materials are special because they have a two-dimensional (2D) structure, which makes them useful for electronics and other cool technologies.
  • This study shows a way to break these materials into super-thin sheets using a process involving supercritical carbon dioxide (SC CO2).
  • The researchers found that changing things like CO2 pressure and the mix of ethanol and water affects how well they can create these thin sheets, and they also discovered that these nanosheets can be used in things like conductive paper and helping with cellular labeling.

Article Abstract

Layered materials present attractive and important properties due to their two-dimensional (2D) structure, allowing potential applications including electronics, optoelectronics, and catalysis. However, fully exploiting the outstanding properties will require a method for their efficient exfoliation. Here we present that a series of layered materials can be successfully exfoliated into single- and few-layer nanosheets using the driving forces coming from the phase inversion, i.e., from micelles to reverse micelles in the emulsion microenvironment built by supercritical carbon dioxide (SC CO2). The effect of variable experimental parameters including CO2 pressure, ethanol/water ratio, and initial concentration of bulk materials on the exfoliation yield have been investigated. Moreover, we demonstrate that the exfoliated 2D nanosheets have their worthwhile applications, for example, graphene can be used to prepare conductive paper, MoS2 can be used as fluorescent label to perform cellular labelling, and BN can effectively reinforce polymers leading to the promising mechanical properties.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4645177PMC
http://dx.doi.org/10.1038/srep16764DOI Listing

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