Issue 33, 2015

Viral nano-hybrids for innovative energy conversion and storage schemes

Abstract

Typical rod-like viruses (the Tobacco Mosaic Virus (TMV) and the Bacteriophage M13) are biological nanostructures that couple a 1D mono-dispersed morphology with a precisely defined topology of surface spaced and orthogonal reactive domains. These biogenic scaffolds offer a unique alternative to synthetic nano-platforms for the assembly of functional molecules and materials. Spatially resolved 1D arrays of inorganic–organic hybrid domains can thus be obtained on viral nano-templates resulting in the functional arrangement of photo-triggers and catalytic sites with applications in light energy conversion and storage. Different synthetic strategies are herein highlighted depending on the building blocks and with a particular emphasis on the molecular design of viral-templated nano-interfaces holding great potential for the dream-goal of artificial photosynthesis.

Graphical abstract: Viral nano-hybrids for innovative energy conversion and storage schemes

Article information

Article type
Review Article
Submitted
15 May 2015
Accepted
25 Jun 2015
First published
25 Jun 2015

J. Mater. Chem. B, 2015,3, 6718-6730

Viral nano-hybrids for innovative energy conversion and storage schemes

D. Vilona, R. Di Lorenzo, M. Carraro, G. Licini, L. Trainotti and M. Bonchio, J. Mater. Chem. B, 2015, 3, 6718 DOI: 10.1039/C5TB00924C

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