Browse "EEW-Journal Papers(저널논문)" by Subject Schottky diode

Showing results 1 to 8 of 8

1
Amplification of hot electron flow by the surface plasmon effect on metal-insulator-metal nanodiodes

Lee, Changhwan; Nedrygailov, Ievgen I.; Lee, Young Keun; Ahn, Changui; Lee, Hyosun; Jeon, Seokwoo; Park, Jeong Young, NANOTECHNOLOGY, v.26, no.44, 2015-11

2
Direct Imaging of Surface Plasmon-Driven Hot Electron Flux on the Au Nanoprism/TiO2

Lee, Hyunhwa; Lee, Hyunsoo; Park, Jeong Young, NANO LETTERS, v.19, no.2, pp.891 - 896, 2019-02

3
Hot electron flux at solid-liquid interfaces probed with Pt/Si catalytic nanodiodes: Effects of pH during decomposition of hydrogen peroxide

Lee, Seung Hee; Nedrygailov, Ievgen I.; Oh, Sunyoung; Park, Jeong Young, CATALYSIS TODAY, v.303, pp.282 - 288, 2018-04

4
Hot Electrons at Solid-Liquid Interfaces: A Large Chemoelectric Effect during the Catalytic Decomposition of Hydrogen Peroxide

Nedrygailov, Ievgen I.; Lee, Changhwan; Moon, Song Yi; Lee, Hyosun; Park, Jeong Young, ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, v.55, no.36, pp.10859 - 10862, 2016-08

5
Hot-electron-based solar energy conversion with metal-semiconductor nanodiodes

Lee, Young Keun; Lee, Hyosun; Lee, Changhwan; Hwang, Euyheon; Park, Jeong Young, JOURNAL OF PHYSICS-CONDENSED MATTER, v.28, no.25, 2016-06

6
Isotope Effect of Hot Electrons Generated on Pt Nanoparticle Surfaces Under H-2 and D-2 Oxidation

Lee, Hyosun; Nedrygailov, Ievgen I.; Lee, Si Woo; Park, Jeong Young, TOPICS IN CATALYSIS, v.61, no.9-11, pp.915 - 922, 2018-06

7
Surface Plasmon-Driven Hot Electron Flow Probed with Metal-Semiconductor Nanodiodes

Lee, Young Keun; Jung, Chan Ho; Park, Jonghyurk; Seo, Hyungtak; Somorjai, Gabor A.; Park, JeongYoung, NANO LETTERS, v.11, no.10, pp.4251 - 4255, 2011-10

8
The genesis and importance of oxide-metal interface controlled heterogeneous catalysis; the catalytic nanodiode

Park, JeongYoung; Renzas, JR; Contreras, AM; Somorjai, GA, TOPICS IN CATALYSIS, v.46, no.1-2, pp.217 - 222, 2007-09

Discover

rss_1.0 rss_2.0 atom_1.0