Free-standing gold-nanoparticle monolayer film fabricated by protein self-assembly of α-synuclein

Angew Chem Int Ed Engl. 2015 Apr 7;54(15):4571-6. doi: 10.1002/anie.201412461. Epub 2015 Feb 18.

Abstract

Free-standing nanoparticle films are of great importance for developing future nano-electronic devices. We introduce a protein-based fabrication strategy of free-standing nanoparticle monolayer films. α-Synuclein, an amyloidogenic protein, was utilized to yield a tightly packed gold-nanoparticle monolayer film interconnected by protein β-sheet interactions. Owing to the stable protein-protein interaction, the film was successfully expanded to a 4-inch diameter sheet, which has not been achieved with any other free-standing nanoparticle monolayers. The film was flexible in solution, so it formed a conformal contact, surrounding even microspheres. Additionally, the monolayer film was readily patterned at micrometer-scale and thus unprecedented double-component nanoparticle films were fabricated. Therefore, the free-floating gold-nanoparticle monolayer sheets with these properties could make the film useful for the development of bio-integrated nano-devices and high-performance sensors.

Keywords: nanoparticles; protein-protein interactions; self-assembly; supramolecular chemistry; thin films.