Catalytic N2‑to-NH3 Conversion by Fe at Lower Driving Force: A Proposed Role for Metallocene-Mediated PCET

Bibliographic Details
Main Authors: Matthew J. Chalkley, Trevor J. Del Castillo, Benjamin D. Matson, Joseph P. Roddy, Jonas C. Peters
Format: Article
Language:English
Published: American Chemical Society 2017-02-01
Series:ACS Central Science
Online Access:http://dx.doi.org/10.1021/acscentsci.7b00014
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spelling doaj-92b0709cd1a7420bbdf591b530197d8c2020-11-25T02:34:40ZengAmerican Chemical SocietyACS Central Science2374-79432374-79512017-02-013321722310.1021/acscentsci.7b00014Catalytic N2‑to-NH3 Conversion by Fe at Lower Driving Force: A Proposed Role for Metallocene-Mediated PCETMatthew J. ChalkleyTrevor J. Del CastilloBenjamin D. MatsonJoseph P. RoddyJonas C. Petershttp://dx.doi.org/10.1021/acscentsci.7b00014
collection DOAJ
language English
format Article
sources DOAJ
author Matthew J. Chalkley
Trevor J. Del Castillo
Benjamin D. Matson
Joseph P. Roddy
Jonas C. Peters
spellingShingle Matthew J. Chalkley
Trevor J. Del Castillo
Benjamin D. Matson
Joseph P. Roddy
Jonas C. Peters
Catalytic N2‑to-NH3 Conversion by Fe at Lower Driving Force: A Proposed Role for Metallocene-Mediated PCET
ACS Central Science
author_facet Matthew J. Chalkley
Trevor J. Del Castillo
Benjamin D. Matson
Joseph P. Roddy
Jonas C. Peters
author_sort Matthew J. Chalkley
title Catalytic N2‑to-NH3 Conversion by Fe at Lower Driving Force: A Proposed Role for Metallocene-Mediated PCET
title_short Catalytic N2‑to-NH3 Conversion by Fe at Lower Driving Force: A Proposed Role for Metallocene-Mediated PCET
title_full Catalytic N2‑to-NH3 Conversion by Fe at Lower Driving Force: A Proposed Role for Metallocene-Mediated PCET
title_fullStr Catalytic N2‑to-NH3 Conversion by Fe at Lower Driving Force: A Proposed Role for Metallocene-Mediated PCET
title_full_unstemmed Catalytic N2‑to-NH3 Conversion by Fe at Lower Driving Force: A Proposed Role for Metallocene-Mediated PCET
title_sort catalytic n2‑to-nh3 conversion by fe at lower driving force: a proposed role for metallocene-mediated pcet
publisher American Chemical Society
series ACS Central Science
issn 2374-7943
2374-7951
publishDate 2017-02-01
url http://dx.doi.org/10.1021/acscentsci.7b00014
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AT benjamindmatson catalyticn2tonh3conversionbyfeatlowerdrivingforceaproposedroleformetallocenemediatedpcet
AT josephproddy catalyticn2tonh3conversionbyfeatlowerdrivingforceaproposedroleformetallocenemediatedpcet
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