Temperature dependence of spherical electron transfer in a nanosized [Fe14] complex

Fast intermetallic electron transfer is expected in principle in nanozised transition metal complexes, but has been prevented by the bridging ligands. Here the authors synthesize a mixed-valence iron metal-ligand nanocluster with cyanide bridges, showing extended delocalized electronic structure

Bibliographic Details
Main Authors: Wei Huang, Shuqi Wu, Xiangwei Gu, Yao Li, Atsushi Okazawa, Norimichi Kojima, Shinya Hayami, Michael L. Baker, Peter Bencok, Mariko Noguchi, Yuji Miyazaki, Motohiro Nakano, Takumi Nakanishi, Shinji Kanegawa, Yuji Inagaki, Tatsuya Kawae, Gui-Lin Zhuang, Yoshihito Shiota, Kazunari Yoshizawa, Dayu Wu, Osamu Sato
Format: Article
Language:English
Published: Nature Portfolio 2019-12-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-019-13279-y
_version_ 1818682312259272704
author Wei Huang
Shuqi Wu
Xiangwei Gu
Yao Li
Atsushi Okazawa
Norimichi Kojima
Shinya Hayami
Michael L. Baker
Peter Bencok
Mariko Noguchi
Yuji Miyazaki
Motohiro Nakano
Takumi Nakanishi
Shinji Kanegawa
Yuji Inagaki
Tatsuya Kawae
Gui-Lin Zhuang
Yoshihito Shiota
Kazunari Yoshizawa
Dayu Wu
Osamu Sato
author_facet Wei Huang
Shuqi Wu
Xiangwei Gu
Yao Li
Atsushi Okazawa
Norimichi Kojima
Shinya Hayami
Michael L. Baker
Peter Bencok
Mariko Noguchi
Yuji Miyazaki
Motohiro Nakano
Takumi Nakanishi
Shinji Kanegawa
Yuji Inagaki
Tatsuya Kawae
Gui-Lin Zhuang
Yoshihito Shiota
Kazunari Yoshizawa
Dayu Wu
Osamu Sato
author_sort Wei Huang
collection DOAJ
description Fast intermetallic electron transfer is expected in principle in nanozised transition metal complexes, but has been prevented by the bridging ligands. Here the authors synthesize a mixed-valence iron metal-ligand nanocluster with cyanide bridges, showing extended delocalized electronic structure
first_indexed 2024-12-17T10:16:50Z
format Article
id doaj.art-139c48ef6def400aa029e0e9c54d0a92
institution Directory Open Access Journal
issn 2041-1723
language English
last_indexed 2024-12-17T10:16:50Z
publishDate 2019-12-01
publisher Nature Portfolio
record_format Article
series Nature Communications
spelling doaj.art-139c48ef6def400aa029e0e9c54d0a922022-12-21T21:52:53ZengNature PortfolioNature Communications2041-17232019-12-011011910.1038/s41467-019-13279-yTemperature dependence of spherical electron transfer in a nanosized [Fe14] complexWei Huang0Shuqi Wu1Xiangwei Gu2Yao Li3Atsushi Okazawa4Norimichi Kojima5Shinya Hayami6Michael L. Baker7Peter Bencok8Mariko Noguchi9Yuji Miyazaki10Motohiro Nakano11Takumi Nakanishi12Shinji Kanegawa13Yuji Inagaki14Tatsuya Kawae15Gui-Lin Zhuang16Yoshihito Shiota17Kazunari Yoshizawa18Dayu Wu19Osamu Sato20Jiangsu Key Laboratory of Advanced Catalytic Materials and Technology, Advanced Catalysis & Green Manufacturing Collaborative Innovation Center, School of Petrochemical Engineering, Changzhou UniversityInstitute for Materials Chemistry and Engineering & IRCCS, Kyushu UniversityJiangsu Key Laboratory of Advanced Catalytic Materials and Technology, Advanced Catalysis & Green Manufacturing Collaborative Innovation Center, School of Petrochemical Engineering, Changzhou UniversityJiangsu Key Laboratory of Advanced Catalytic Materials and Technology, Advanced Catalysis & Green Manufacturing Collaborative Innovation Center, School of Petrochemical Engineering, Changzhou UniversityDepartment of Basic Science, Graduation School of Arts and Sciences, The University of TokyoToyota Physical and Chemical Research InstituteDepartment of Chemistry, Graduate School of Science and Technology and Institute of Pulsed Power Science (IPPS), Kumamoto UniversityThe School of Chemistry, The University of ManchesterDiamond Light Source, Science DivisionResearch Center for Structural Thermodynamics, Graduate School of Science, Osaka UniversityResearch Center for Structural Thermodynamics, Graduate School of Science, Osaka UniversityResearch Center for Structural Thermodynamics, Graduate School of Science, Osaka UniversityInstitute for Materials Chemistry and Engineering & IRCCS, Kyushu UniversityInstitute for Materials Chemistry and Engineering & IRCCS, Kyushu UniversityDepartment of Applied Quantum Physics, Faculty of Engineering, Kyushu UniversityDepartment of Applied Quantum Physics, Faculty of Engineering, Kyushu UniversityInstitute of Industrial Catalysis, College of Chemical Engineering, State Key Lab Breeding Base of Green-Chemical Synthesis Technology, Zhejiang University of TechnologyInstitute for Materials Chemistry and Engineering & IRCCS, Kyushu UniversityInstitute for Materials Chemistry and Engineering & IRCCS, Kyushu UniversityJiangsu Key Laboratory of Advanced Catalytic Materials and Technology, Advanced Catalysis & Green Manufacturing Collaborative Innovation Center, School of Petrochemical Engineering, Changzhou UniversityInstitute for Materials Chemistry and Engineering & IRCCS, Kyushu UniversityFast intermetallic electron transfer is expected in principle in nanozised transition metal complexes, but has been prevented by the bridging ligands. Here the authors synthesize a mixed-valence iron metal-ligand nanocluster with cyanide bridges, showing extended delocalized electronic structurehttps://doi.org/10.1038/s41467-019-13279-y
spellingShingle Wei Huang
Shuqi Wu
Xiangwei Gu
Yao Li
Atsushi Okazawa
Norimichi Kojima
Shinya Hayami
Michael L. Baker
Peter Bencok
Mariko Noguchi
Yuji Miyazaki
Motohiro Nakano
Takumi Nakanishi
Shinji Kanegawa
Yuji Inagaki
Tatsuya Kawae
Gui-Lin Zhuang
Yoshihito Shiota
Kazunari Yoshizawa
Dayu Wu
Osamu Sato
Temperature dependence of spherical electron transfer in a nanosized [Fe14] complex
Nature Communications
title Temperature dependence of spherical electron transfer in a nanosized [Fe14] complex
title_full Temperature dependence of spherical electron transfer in a nanosized [Fe14] complex
title_fullStr Temperature dependence of spherical electron transfer in a nanosized [Fe14] complex
title_full_unstemmed Temperature dependence of spherical electron transfer in a nanosized [Fe14] complex
title_short Temperature dependence of spherical electron transfer in a nanosized [Fe14] complex
title_sort temperature dependence of spherical electron transfer in a nanosized fe14 complex
url https://doi.org/10.1038/s41467-019-13279-y
work_keys_str_mv AT weihuang temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT shuqiwu temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT xiangweigu temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT yaoli temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT atsushiokazawa temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT norimichikojima temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT shinyahayami temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT michaellbaker temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT peterbencok temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT marikonoguchi temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT yujimiyazaki temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT motohironakano temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT takuminakanishi temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT shinjikanegawa temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT yujiinagaki temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT tatsuyakawae temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT guilinzhuang temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT yoshihitoshiota temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT kazunariyoshizawa temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT dayuwu temperaturedependenceofsphericalelectrontransferinananosizedfe14complex
AT osamusato temperaturedependenceofsphericalelectrontransferinananosizedfe14complex