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David Schilter
David Schilter
在 txstate.edu 的电子邮件经过验证 - 首页
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Hydrogenase enzymes and their synthetic models: the role of metal hydrides
D Schilter, JM Camara, MT Huynh, S Hammes-Schiffer, TB Rauchfuss
Chemical reviews 116 (15), 8693-8749, 2016
5972016
Hydride bridge in [NiFe]-hydrogenase observed by nuclear resonance vibrational spectroscopy
H Ogata, T Krämer, H Wang, D Schilter, V Pelmenschikov, M Van Gastel, ...
Nature communications 6 (1), 7890, 2015
1362015
N,N′-Diamidocarbenes: Isolable Divalent Carbons with Bona Fide Carbene Reactivity
JP Moerdyk, D Schilter, CW Bielawski
Accounts of Chemical Research 49 (8), 1458-1468, 2016
1222016
Self-assembled metallo-supramolecular systems incorporating β-diketone motifs as structural elements
DJ Bray, JK Clegg, LF Lindoy, D Schilter
Advances in Inorganic Chemistry 59, 1-37, 2006
1102006
Multicopper models for the laccase active site: effect of nuclearity on electrocatalytic oxygen reduction
ECM Tse, D Schilter, DL Gray, TB Rauchfuss, AA Gewirth
Inorganic Chemistry 53 (16), 8505-8516, 2014
1032014
Mixed-valence nickel–iron dithiolate models of the [NiFe]-hydrogenase active site
D Schilter, MJ Nilges, M Chakrabarti, PA Lindahl, TB Rauchfuss, M Stein
Inorganic Chemistry 51 (4), 2338-2348, 2012
772012
Dinuclear bis-β-diketonato ligand derivatives of iron (III) and copper (II) and use of the latter as components for the assembly of extended metallo-supramolecular structures
JK Clegg, LF Lindoy, JC McMurtrie, D Schilter
Dalton Transactions, 857-864, 2005
632005
New discrete and polymeric supramolecular architectures derived from dinuclear (bis-β-diketonato) copper (II) metallocycles
JK Clegg, K Gloe, MJ Hayter, O Kataeva, LF Lindoy, B Moubaraki, ...
Dalton Transactions, 3977-3984, 2006
542006
Extended three-dimensional supramolecular architectures derived from trinuclear (bis-β-diketonato) copper (II) metallocycles
JK Clegg, LF Lindoy, JC McMurtrie, D Schilter
Dalton Transactions, 3114-3121, 2006
492006
Graphene in the making
F Pulizzi, O Bubnova, S Milana, D Schilter, D Abergel, A Moscatelli
Nature Nanotechnology 14 (10), 914-918, 2019
482019
Connecting [NiFe]-and [FeFe]-hydrogenases: mixed-valence nickel–iron dithiolates with rotated structures
D Schilter, TB Rauchfuss, M Stein
Inorganic chemistry 51 (16), 8931-8941, 2012
472012
Thiol oxidation: A slippery slope
D Schilter
Nature Reviews Chemistry 1 (2), 0013, 2017
422017
Ferrous carbonyl dithiolates as precursors to FeFe, FeCo, and FeMn carbonyl dithiolates
ME Carroll, J Chen, DE Gray, JC Lansing, TB Rauchfuss, D Schilter, ...
Organometallics 33 (4), 858-867, 2014
412014
Birch-type hydrogenation of few-layer graphenes: products and mechanistic implications
X Zhang, Y Huang, S Chen, NY Kim, W Kim, D Schilter, M Biswal, B Li, ...
Journal of the American Chemical Society 138 (45), 14980-14986, 2016
402016
And the Winner is… ︁Azadithiolate: An Amine Proton Relay in the [FeFe] Hydrogenases
D Schilter, TB Rauchfuss
Angewandte Chemie International Edition 52 (51), 13518-13520, 2013
402013
Protonation of nickel–iron hydrogenase models proceeds after isomerization at nickel
MT Huynh, D Schilter, S Hammes-Schiffer, TB Rauchfuss
Journal of the American Chemical Society 136 (35), 12385-12395, 2014
362014
Sodide and organic halides effect covalent functionalization of single-layer and bilayer graphene
M Biswal, X Zhang, D Schilter, TK Lee, DY Hwang, M Saxena, SH Lee, ...
Journal of the American Chemical Society 139 (11), 4202-4210, 2017
312017
N-substituted derivatives of the azadithiolate cofactor from the [FeFe] hydrogenases: Stability and complexation
R Angamuthu, CS Chen, TR Cochrane, DL Gray, D Schilter, OA Ulloa, ...
Inorganic chemistry 54 (12), 5717-5724, 2015
202015
Platinum (II) and palladium (II) metallomacrocycles derived from cationic 4, 4′-bipyridinium, 3-aminopyrazinium and 2-aminopyrimidinium ligands
D Schilter, JK Clegg, MM Harding, LM Rendina
Dalton Transactions 39 (1), 239-247, 2010
182010
Nickel‐Molybdenum and Nickel‐Tungsten Dithiolates: Hybrid Models for Hydrogenases and Hydrodesulfurization
D Schilter, AL Fuller, DL Gray
European Journal of Inorganic Chemistry 2015 (28), 4638-4642, 2015
142015
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