X-ray micro-computed tomography as a non-destructive tool for imaging the uptake of metal nanoparticles by graphene-based 3D carbon structures

Author:

Smith Christopher T. G.12345ORCID,Mills Christopher A.12345ORCID,Pani Silvia67385,Rhodes Rhys12345,Bailey Josh J.91011125ORCID,Cooper Samuel J.1314155ORCID,Pathan Tanveerkhan S.91011125,Stolojan Vlad12345,Brett Daniel J. L.91011125ORCID,Shearing Paul R.91011125ORCID,Silva S. Ravi P.12345ORCID

Affiliation:

1. Nano-Electronics Centre

2. Advanced Technology Institute

3. University of Surrey

4. Guildford

5. UK

6. Centre for Nuclear and Radiation Physics

7. Department of Physics

8. Surrey GU2 7XH

9. Electrochemical Innovation Laboratory

10. Department of Chemical Engineering

11. University College London

12. London WC1E 7JE

13. Dyson School of Design Engineering

14. Imperial College London

15. London

Abstract

Showcasing X-ray micro-computerized tomography as a method to image metal nanoparticle dispersion throughout sponge-like graphene matrices suitable for environmental remediation.

Funder

Defence Science and Technology Laboratory

Publisher

Royal Society of Chemistry (RSC)

Subject

General Materials Science

Reference25 articles.

1. A review of graphene and graphene oxide sponge: material synthesis and applications to energy and the environment

2. Unconventional supercapacitors from nanocarbon-based electrode materials to device configurations

3. Y. Lu and Y.Chen , Graphene and Porous Nanocarbon Materials for Supercapacitor Applications , in Nanocarbons for Advanced Energy Storage , ed. X. Feng , 2015 , ch. 11, vol. 1 , ISBN: 978-3-527-33665-4

4. Physicochemical characterisation of reduced graphene oxide for conductive thin films

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