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Liu, Tianbiao
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ResearcherID: A-3390-2011
Other Names: Tianbiao Leo Liu
E-mail:
URL: http://www.researcherid.com/rid/A-3390-2011
Subject: Biochemistry & Molecular Biology; Chemistry; Crystallography; Electrochemistry; Materials Science
Keywords: organometallics, bioinorganic chemistry, electrochemistry, catalysis; crystallography; renewable energy; homogeneous catalysis; electrocatalysis; rechargeable batteries
ORCID: http://orcid.org/0000-0002-3698-1096
My Institutions (more details)
Primary Institution:
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Role:
Past Institutions: Pacific Northwest National Laboratory, PNNL
Description:
My URLs: http://www.tianbiaoliu.org
 
 

This list contains papers that I have authored.

publication(s)  
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1.  Title: A mixed-valent, Fe(II)Fe(I), diiron complex reproduces the unique rotated state of the [FeFe]hydrogenase active site
 Author(s): Liu, TB; Darensbourg, MY
 Source: Journal of the American Chemical Society Volume: 129 Issue: 22 Pages: 7008-+ Published: JUN 6 2007
 Times Cited: 224
 DOI: 10.1021/ja071851a
added
21-Jan-11
2.  Title: TEMPO-Based Catholyte for High-Energy Density Nonaqueous Redox Flow Batteries
 Author(s): Wei, Xiaoliang; Xu, Wu; Vijayakumar, Murugesan; et al.
 Source: Advanced Materials Volume: 26 Issue: 45 Pages: 7649-7653 Published: 2014
 Times Cited: 143
 DOI: 10.1002/adma.201403746
added
18-Aug-15
3.  Title: An iron complex with pendent amines as a molecular electrocatalyst for oxidation of hydrogen
 Author(s): Liu, T. B.; DuBois, D. L.; Bullock, R. M.
 Source: Nature Chemistry Volume: 5 Issue: 3 Pages: 228-233 Published: 2013
 Times Cited: 123
 DOI: 10.1038/nchem.1571
added
14-Apr-14
4.  Title: Radical Compatibility with Nonaqueous Electrolytes and Its Impact on an All-Organic Redox Flow Battery
 Author(s): Wei, Xiaoliang; Xu, Wu; Huang, Jinhua; et al.
 Source: Angewandte Chemie-International Edition Volume: 54 Issue: 30 Pages: 8684-8687 Published: 2015
 Times Cited: 98
 DOI: 10.1002/anie.201501443
added
18-Aug-15
5.  Title: Series of mixed valent Fe(II)Fe(I) complexes that model the H-ox state of [FeFe]hydrogenase: Redox properties, density-functional theory investigation, and reactivities with extrinsic CO
 Author(s): Thomas, CM; Liu, TB; Hall, MB; et al.
 Source: Inorganic Chemistry Volume: 47 Issue: 15 Pages: 7009-7024 Published: 2008
 Times Cited: 90
 DOI: 10.1021/ic800654a
added
21-Jan-11
6.  Title: Highly Reversible Mg Insertion in Nanostructured Bi for Mg Ion Batteries
 Author(s): Shao, Yuyan; Gu, Meng; Li, Xiaolin; et al.
 Source: Nano Letters Volume: 14 Issue: 1 Pages: 255-260 Published: 2014/01/08
 Times Cited: 85
 DOI: 10.1021/nl403874y /  Author-provided URL : http://dx.doi.org/10.1021/nl403874y
added
14-Apr-14
7.  Title: A Total Organic Aqueous Redox Flow Battery Employing a Low Cost and Sustainable Methyl Viologen Anolyte and 4-HO-TEMPO Catholyte
 Author(s): Liu, Tianbiao; Wei, Xiaoliang; Nie, Zimin; et al.
 Source: Advanced Energy Materials Volume: 6 Pages: n/a Published: 2016
 Times Cited: 83
 DOI: 10.1002/aenm.201501449 /  Author-provided URL : http://dx.doi.org/10.1002/aenm.201501449http://onlinelibrary.wiley.com/store/10. ...
added
13-Nov-17
8.  Title: Synthesis of carboxylic acid-modified [FeFe]-hydrogenase model complexes amenable to surface immobilization
 Author(s): Thomas, CM; Rudiger, O; Liu, T; et al.
 Source: Organometallics Volume: 26 Issue: 16 Pages: 3976-3984 Published: JUL 30 2007
 Times Cited: 78
 DOI: 10.1021/om7003354
added
21-Jan-11
9.  Title: Long-Cycling Aqueous Organic Redox Flow Battery (AORFB) toward Sustainable and Safe Energy Storage
 Author(s): Hu, Bo; DeBruler, Camden; Rhodes, Zayn; et al.
 Source: Journal of the American Chemical Society Volume: 139 Pages: 1207-1214 Published: 2017/01/25
 Times Cited: 77
 DOI: 10.1021/jacs.6b10984 /  Author-provided URL : http://dx.doi.org/10.1021/jacs.6b10984http://pubs.acs.org/doi/pdfplus/10.1021/ja ...
added
13-Nov-17
10.  Title: Synthesis, structures and electrochemical properties of nitro- and amino-functionalized diiron azadithiolates as active site models of Fe-only hydrogenases
 Author(s): Liu, TB; Wang, M; Shi, Z; et al.
 Source: Chemistry-a European Journal Volume: 10 Issue: 18 Pages: 4474-4479 Published: 2004
 Times Cited: 76
 DOI: 10.1002/chem.200400004
added
21-Jan-11
publication(s)  
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