Title : Characterization of surface water on Au core Pt-group metal shell nanoparticles coated electrodes by surface-enhanced Raman spectroscopy.

Pub. Date : 2007 Nov 28

PMID : 17989807






4 Functional Relationships(s)
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1 We utilized the strategy of "borrowing SERS activity", by chemically coating several atomic layers of a Pt-group metal on highly SERS-active Au nanoparticles, to obtain the first SERS (also Raman) spectra of surface water on Pt and Pd metals, and propose conceptual models for water adsorbed on Pt and Pd metal surfaces. Water seryl-tRNA synthetase 2, mitochondrial Homo sapiens
2 We utilized the strategy of "borrowing SERS activity", by chemically coating several atomic layers of a Pt-group metal on highly SERS-active Au nanoparticles, to obtain the first SERS (also Raman) spectra of surface water on Pt and Pd metals, and propose conceptual models for water adsorbed on Pt and Pd metal surfaces. Water seryl-tRNA synthetase 2, mitochondrial Homo sapiens
3 We utilized the strategy of "borrowing SERS activity", by chemically coating several atomic layers of a Pt-group metal on highly SERS-active Au nanoparticles, to obtain the first SERS (also Raman) spectra of surface water on Pt and Pd metals, and propose conceptual models for water adsorbed on Pt and Pd metal surfaces. Water seryl-tRNA synthetase 2, mitochondrial Homo sapiens
4 We utilized the strategy of "borrowing SERS activity", by chemically coating several atomic layers of a Pt-group metal on highly SERS-active Au nanoparticles, to obtain the first SERS (also Raman) spectra of surface water on Pt and Pd metals, and propose conceptual models for water adsorbed on Pt and Pd metal surfaces. Water seryl-tRNA synthetase 2, mitochondrial Homo sapiens