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Boron nitride colloidal solutions, ultralight aerogels and freestanding membranes through one-step exfoliation and functionalization. | LitMetric

Boron nitride colloidal solutions, ultralight aerogels and freestanding membranes through one-step exfoliation and functionalization.

Nat Commun

Institute for Frontier Materials, Deakin University, 75 Pigdons Road, Waurn Ponds, Geelong, Victoria 3216, Australia.

Published: November 2015

AI Article Synopsis

  • Manufacturing aerogels and membranes from hexagonal boron nitride (h-BN) is challenging due to its poor water dispersibility, which affects exfoliation and colloidal preparation.
  • A new one-step mechano-chemical process has been developed that exfoliates and functionalizes h-BN, resulting in highly water-dispersible few-layer h-BN with amino groups, achieving concentrations up to 30 mg/ml that remain stable for months.
  • The produced materials can create ultralight aerogels with a density of 1.4 mg/cm³ and freestanding membranes, exhibiting strong blue light emission under UV light in both dispersed and dry forms.

Article Abstract

Manufacturing of aerogels and membranes from hexagonal boron nitride (h-BN) is much more difficult than from graphene or graphene oxides because of the poor dispersibility of h-BN in water, which limits its exfoliation and preparation of colloidal solutions. Here, a simple, one-step mechano-chemical process to exfoliate and functionalize h-BN into highly water-dispersible, few-layer h-BN containing amino groups is presented. The colloidal solutions of few-layer h-BN can have unprecedentedly high concentrations, up to 30 mg ml(-1), and are stable for up to several months. They can be used to produce ultralight aerogels with a density of 1.4 mg cm(-3), which is ∼1,500 times less than bulk h-BN, and freestanding membranes simply by cryodrying and filtration, respectively. The material shows strong blue light emission under ultraviolet excitation, in both dispersed and dry state.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4674780PMC
http://dx.doi.org/10.1038/ncomms9849DOI Listing

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