In-situ implantation of plasmonic Ag into metal-organic frameworks for constructing efficient Ag/NH2-MIL-125/TiO2 photoanode
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Industrial and Manufacturing Engineering,General Chemical Engineering,Environmental Chemistry,General Chemistry
Reference67 articles.
1. Interface engineering for modulation of charge carrier behavior in ZnO photoelectrochemical water splitting;Kang;Adv. Funct. Mater.,2019
2. Conformally coated BiVO4 nanodots on porosity-controlled WO3 nanorods as highly efficient type II heterojunction photoanodes for water oxidation;Lee;Nano Energy,2016
3. Photorechargeable high voltage redox battery enabled by Ta3N5 and GaN/Si dual-photoelectrode;Cheng;Adv. Mater.,2017
4. Semiconducting materials for photoelectrochemical energy conversion;Sivula;Nat. Rev. Mater.,2016
5. Enhancing light harvesting and charge separation of Cu2O photocathodes with spatially separated noble-metal cocatalysts towards highly efficient water splitting;Chen;J. Mater. Chem. A,2018
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