Spatial control of chemical processes on nanostructures through nano-localized water heating

通过纳米局部水加热对纳米结构上的化学过程进行空间控制

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作者:Calum Jack, Affar S Karimullah, Ryan Tullius, Larousse Khosravi Khorashad, Marion Rodier, Brian Fitzpatrick, Laurence D Barron, Nikolaj Gadegaard, Adrian J Lapthorn, Vincent M Rotello, Graeme Cooke, Alexander O Govorov, Malcolm Kadodwala

Abstract

Optimal performance of nanophotonic devices, including sensors and solar cells, requires maximizing the interaction between light and matter. This efficiency is optimized when active moieties are localized in areas where electromagnetic (EM) fields are confined. Confinement of matter in these 'hotspots' has previously been accomplished through inefficient 'top-down' methods. Here we report a rapid 'bottom-up' approach to functionalize selective regions of plasmonic nanostructures that uses nano-localized heating of the surrounding water induced by pulsed laser irradiation. This localized heating is exploited in a chemical protection/deprotection strategy to allow selective regions of a nanostructure to be chemically modified. As an exemplar, we use the strategy to enhance the biosensing capabilities of a chiral plasmonic substrate. This novel spatially selective functionalization strategy provides new opportunities for efficient high-throughput control of chemistry on the nanoscale over macroscopic areas for device fabrication.

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