Abstract
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We propose an empirical parameter, which can predict an analytespecific sensitivity of a AuNW, rendering them as effective sensor for a wide range of chemical analytes
Summary
Semiconductor-like sensitivity in metallic ultrathin gold nanowire-based sensors. The sensitivity exhibits a linear relationship with the electron affinities of the respective analytes Based on this relationship, we propose an empirical parameter, which can predict an analytespecific sensitivity of a AuNW, rendering them as effective sensor for a wide range of chemical analytes. Organic photovoltaic devices with a 30 % improvement in power conversion efficiency are achieved when gold nanorods (Au NR) are incorporated into the active bulk heterojunction (BHJ) layer, as described by US researchers Gold nanoparticle dispersion liquid for forming conductive coating film, method for producing the same and conductive coating material composition containing the same. This work provides insights for the better understanding and designing of noble metal nanoparticles-based plasmonic heterostructures for antibacterial application
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