← Назад к работе
Работы, на которые ссылается эта работа
Работ: 47
Работа: Cu-doped Bi2S3 nanorod films via chemical synthesis for improved photoelectrochemical water splitting
Electrochemical Photolysis of Water at a Semiconductor Electrode
Akira Fujishima, Kenichi Honda
Статья1972Цитирований: 24ABIThe 2020 photovoltaic technologies roadmap
Gregory Wilson, Mowafak Al‐Jassim, Wyatt K. Metzger +24
Статья2020Цитирований: 4ABISolar cell efficiency tables (Version 60)
Martin A. Green, Ewan D. Dunlop, Jochen Hohl‐Ebinger +6
Статья2022Цитирований: 4ABISolar Water Splitting: Progress Using Hematite (α‐Fe<sub>2</sub>O<sub>3</sub>) Photoelectrodes
Kevin Sivula, Florian Le Formal, Michaël Grätzel
Обзорная статья2011Цитирований: 3ABIA review of TiO 2 nanostructured catalysts for sustainable H 2 generation
Mingzheng Ge, Jingsheng Cai, James Iocozzia +9
Обзорная статья2017Цитирований: 2ABITwo-stage processed high-quality famatinite thin films for photovoltaics
U. Chalapathi, B. Poornaprakash, Hao Cui +1
Статья2017Цитирований: 2ABIPhoto-electrochemistry of metallic titanium/mixed phase titanium oxide
Sara Amouzad, Mehdi Khosravi, Niaz Monadi +3
Статья2021Цитирований: 2ABIImproved Ag doped Bi2S3 nanowire-based photodiode: Fabrication and performance
J. Arumugam, Amal George, A. Dhayal Raj +7
Статья2021Цитирований: 2ABIChemically grown Bi2S3 nanorod films for hydrogen evolution
U. Chalapathi, B. Purushotham Reddy, T.V.M. Sreekanth +1
Статья2022Цитирований: 2ABIEnhancement in photo response of spray deposited Yttrium doped Bi2S3 thin films
Mohd. Shkir, Thamraa Alshahrani
Статья2023Цитирований: 2ABI