Rhodopsin driven microbial CO2 fixation using synthetic biology design

Bibliographic Details
Main Authors: Tu, W, Huang, WE
Format: Journal article
Language:English
Published: Wiley 2022
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author Tu, W
Huang, WE
author_facet Tu, W
Huang, WE
author_sort Tu, W
collection OXFORD
description
first_indexed 2024-03-07T07:33:23Z
format Journal article
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institution University of Oxford
language English
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spelling oxford-uuid:6b2166e5-22d1-4202-85f2-cc031ddd05e02023-02-17T15:34:17ZRhodopsin driven microbial CO2 fixation using synthetic biology designJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:6b2166e5-22d1-4202-85f2-cc031ddd05e0EnglishSymplectic ElementsWiley2022Tu, WHuang, WE
spellingShingle Tu, W
Huang, WE
Rhodopsin driven microbial CO2 fixation using synthetic biology design
title Rhodopsin driven microbial CO2 fixation using synthetic biology design
title_full Rhodopsin driven microbial CO2 fixation using synthetic biology design
title_fullStr Rhodopsin driven microbial CO2 fixation using synthetic biology design
title_full_unstemmed Rhodopsin driven microbial CO2 fixation using synthetic biology design
title_short Rhodopsin driven microbial CO2 fixation using synthetic biology design
title_sort rhodopsin driven microbial co2 fixation using synthetic biology design
work_keys_str_mv AT tuw rhodopsindrivenmicrobialco2fixationusingsyntheticbiologydesign
AT huangwe rhodopsindrivenmicrobialco2fixationusingsyntheticbiologydesign