Formation of palladium nano-gap on self-cracked WO3 for hydrogen gas sensors

Author:

Kim Noeul,Cho Hyeon Ho,Kim Youngho,Hwang JongkookORCID,Choi Jae-Young,Yu Hak Ki

Funder

Ajou University

Publisher

Elsevier BV

Subject

Energy Engineering and Power Technology,Condensed Matter Physics,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference30 articles.

1. Sustainability assessment of a hybrid energy system with hydrogen-based storage;Hacatoglu;Int J Hydrogen Energy,2015

2. Efficient H2 gas sensor based on 2D SnO2 disks: experimental and theoretical studies;Umar;Int J Hydrogen Energy,2020

3. Investigation of WO3/ZnO thin-film heterojunction based Schottky diodes for H2 gas sensing;Liu;Int J Hydrogen Energy,2014

4. Hydrogen gas sensor based on mesoporous In2O3 with fast response/recovery and ppb level detection limit;Li;Int J Hydrogen Energy,2018

5. Hydrogen gas sensing properties of WO3 sputter-deposited thin films enhanced by on-top deposited CuO nanoclusters;Haviar;Int J Hydrogen Energy,2018

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