Thermal properties of nanoporous gold
نویسندگان
چکیده
منابع مشابه
Structural evolution of nanoporous gold during thermal coarsening
The three-dimensional evolution of nanoligaments of nanoporous gold created by Ag–Au dealloying was studied during isothermal coarsening by X-ray nanotomography and microbeam Laue diffraction. The surface normal orientation, curvature and size of the gold nanoligaments were measured as a function of coarsening time (from 2 to 320 min). The following observations were made at 550, 600 and 650 C....
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Thermal Conductivity in Nanoporous Gold Films during Electron-Phonon Nonequilibrium
The reduction of nanodevices has given recent attention to nanoporous materials due to their structure and geometry. However, the thermophysical properties of these materials are relatively unknown. In this article, an expression for thermal conductivity of nanoporous structures is derived based on the assumption that the finite size of the ligaments leads to electron-ligament wall scattering. ...
متن کاملElectrochemical tuning of the optical properties of nanoporous gold
Using optical in-situ measurements in an electrochemical environment, we study the electrochemical tuning of the transmission spectrum of films from the nanoporous gold (NPG) based optical metamaterial, including the effect of the ligament size. The long wavelength part of the transmission spectrum around 800 nm can be reversibly tuned via the applied electrode potential. The NPG behaves as dil...
متن کاملOptical and Thermal Properties of Nanoporous Material and Devices
Title of dissertation: OPTICAL AND THERMAL PROPERTIES OF NANOPOROUS MATERIAL AND DEVICES Kyowon Kim, Doctor of Philosophy, 2015 Dissertation directed by: Professor Thomas E. Murphy Dept. of Electrical & Computer Engineering In this thesis, we investigate the optical and thermal properties of porous silicon and its applications. In first part, porous silicon’s optical properties and application ...
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ژورنال
عنوان ژورنال: Physical Review B
سال: 2012
ISSN: 1098-0121,1550-235X
DOI: 10.1103/physrevb.85.195419