Search Results - "Gordon, John C."

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  1. 1

    Metal–Ligand Bifunctional Catalysis: The “Accepted” Mechanism, the Issue of Concertedness, and the Function of the Ligand in Catalytic Cycles Involving Hydrogen Atoms by Dub, Pavel A, Gordon, John C

    Published in ACS catalysis (06-10-2017)
    “…For years, following the ideas of Shvo and Noyori, the core assumption of metal–ligand bifunctional molecular catalysis has relied on the direct involvement of…”
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    Journal Article
  2. 2

    The role of the metal-bound N–H functionality in Noyori-type molecular catalysts by Dub, Pavel A., Gordon, John C.

    Published in Nature reviews. Chemistry (01-12-2018)
    “…Noyori-type catalysts have found numerous applications in research and industrial settings. The central mechanistic component of such catalysts is a metal…”
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    Journal Article
  3. 3

    Why Does Alkylation of the N–H Functionality within M/NH Bifunctional Noyori-Type Catalysts Lead to Turnover? by Dub, Pavel A, Scott, Brian L, Gordon, John C

    Published in Journal of the American Chemical Society (25-01-2017)
    “…Molecular metal/NH bifunctional Noyori-type catalysts are remarkable in that they are among the most efficient artificial catalysts developed to date for the…”
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    Journal Article
  4. 4

    Efficient Regeneration of Partially Spent Ammonia Borane Fuel by Davis, Benjamin L., Dixon, David A., Garner, Edward B., Gordon, JohnC., Matus, Myrna H., Scott, Brian, Stephens, Frances H.

    Published in Angewandte Chemie International Edition (01-01-2009)
    “…Going full circle: Ammonia borane is a potential H2‐releasing fuel. Polyborazylene, a form of the spent fuel, can be regenerated efficiently in a one‐pot…”
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    Journal Article
  5. 5

    Importance of Out-of-State Spin–Orbit Coupling for Slow Magnetic Relaxation in Mononuclear FeII Complexes by Lin, Po-Heng, Smythe, Nathan C, Gorelsky, Serge I, Maguire, Steven, Henson, Neil J, Korobkov, Ilia, Scott, Brian L, Gordon, John C, Baker, R. Tom, Murugesu, Muralee

    Published in Journal of the American Chemical Society (12-10-2011)
    “…Two mononuclear high-spin FeII complexes with trigonal planar ([FeII(N(TMS)2)2(PCy3)] (1) and distorted tetrahedral ([FeII(N(TMS)2)2(depe)] (2) geometries are…”
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    Journal Article
  6. 6

    Iron Complex-Catalyzed Ammonia–Borane Dehydrogenation. A Potential Route toward B–N-Containing Polymer Motifs Using Earth-Abundant Metal Catalysts by Baker, R. Tom, Gordon, John C, Hamilton, Charles W, Henson, Neil J, Lin, Po-Heng, Maguire, Steven, Murugesu, Muralee, Scott, Brian L, Smythe, Nathan C

    Published in Journal of the American Chemical Society (28-03-2012)
    “…Ammonia–borane (NH3BH3, AB) has garnered interest as a hydrogen storage material due to its high weight percent hydrogen content and ease of H2 release…”
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    Journal Article
  7. 7

    Aerobic Oxidation of Lignin Models Using a Base Metal Vanadium Catalyst by Hanson, Susan K, Baker, R. Tom, Gordon, John C, Scott, Brian L, Thorn, David L

    Published in Inorganic chemistry (21-06-2010)
    “…Dipicolinate vanadium(V) complexes oxidize lignin model complexes pinacol monomethyl ether (A), 2-phenoxyethanol (B), 1-phenyl-2-phenoxyethanol (C), and…”
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    Journal Article
  8. 8

    Methodology to calculate forest stand level maximum potential productivity, potential achievable productivity and ecosystem fit by Klock, Angela M., Vogt, Kristiina A., Vogt, Daniel J., Gordon, John C.

    Published in MethodsX (01-01-2022)
    “…A modified Loomis-William model was originally developed to estimate the theoretical maximum yields of crops. That model was adapted in this paper to measure…”
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  9. 9
  10. 10

    Ammonia Borane as a Hydrogen Carrier: Dehydrogenation and Regeneration by Smythe, Nathan C., Gordon, John C.

    Published in European Journal of Inorganic Chemistry (01-02-2010)
    “…Interest in sustainable non‐hydrocarbon‐based fuels for transportation has grown as the realization that the supply of fossil fuels is limited and the…”
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    Book Review Journal Article
  11. 11

    Unravelling the Mechanism of the Asymmetric Hydrogenation of Acetophenone by [RuX2(diphosphine)(1,2-diamine)] Catalysts by Dub, Pavel A, Henson, Neil J, Martin, Richard L, Gordon, John C

    Published in Journal of the American Chemical Society (05-03-2014)
    “…The mechanism of catalytic hydrogenation of acetophenone by the chiral complex trans-[RuCl2{(S)-binap}{(S,S)-dpen}] and KO-t-C4H9 in propan-2-ol is revised on…”
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    Journal Article
  12. 12

    Mediating Oxidation States in Decamethyleuropocene Complexes. The Role of the Diazabutadiene Fragment by Moore, Jennifer A, Cowley, Alan H, Gordon, John C

    Published in Organometallics (23-10-2006)
    “…The Eu diazabutadiene complexes (C5Me5)2Eu(DADBu-t) and (C5Me5)2Eu(DADC6F5) (DADBu-t = t-BuNC(H)C(H)NBu-t; DADC6F5 = C6F5NC(Me)C(Me)NC6F5) have been prepared,…”
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    Journal Article
  13. 13

    The hydrodeoxygenation of bioderived furans into alkanes by Sutton, Andrew D., Waldie, Fraser D., Wu, Ruilian, Schlaf, Marcel, ‘Pete’ Silks, Louis A., Gordon, John C.

    Published in Nature chemistry (01-05-2013)
    “…The conversion of biomass into fuels and chemical feedstocks is one part of a drive to reduce the world's dependence on crude oil. For transportation fuels in…”
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    Journal Article
  14. 14

    Synthesis and Characterization of (Mono)pentamethylcyclopentadienyl Lutetium Complexes:  Formation of Bipyridyl-Stabilized Alkyls, Anilides, and Terminal Acetylides by Cameron, Thomas M, Gordon, John C, Scott, Brian L

    Published in Organometallics (07-06-2004)
    “…The alkyl complex [Lu(CH2SiMe3)3(THF)2] reacts with pentamethylcyclopentadiene (Cp*H), giving [Cp*Lu(CH2SiMe3)2(THF)] (1). Complex 1 reacts with…”
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    Journal Article
  15. 15

    Regeneration of Ammonia Borane Spent Fuel by Direct Reaction with Hydrazine and Liquid Ammonia by Sutton, Andrew D., Burrell, Anthony K., Dixon, David A., Garner, Edward B., Gordon, John C., Nakagawa, Tessui, Ott, Kevin C., Robinson, J. Pierce, Vasiliu, Monica

    “…Ammonia borane (H₃N-BH₃, AB) is a lightweight material containing a high density of hydrogen (H₂) that can be readily liberated for use in fuel cell—powered…”
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    Journal Article
  16. 16

    Perspectives on How Nature Employs the Principles of Organometallic Chemistry in Dihydrogen Activation in Hydrogenases by Gordon, John C, Kubas, Gregory J

    Published in Organometallics (08-11-2010)
    “…Relatively recent developments in metalloenzyme and organometallic chemistry have targeted a growing link between these outwardly incongruous fields, giving…”
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    Journal Article
  17. 17

    Air-Stable NNS (ENENES) Ligands and Their Well-Defined Ruthenium and Iridium Complexes for Molecular Catalysis by Dub, Pavel A, Scott, Brian L, Gordon, John C

    Published in Organometallics (28-09-2015)
    “…We introduce ENENES, a new family of air-stable and low-cost NNS ligands bearing NH functionalities of the general formula E­(CH2) m NH­(CH2) n SR, where E is…”
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    Journal Article
  18. 18

    Synthesis and Characterization of Cerium(IV) Metallocenes by Sutton, Andrew, Clark, David, Scott, Brian, Gordon, John

    Published in Inorganics (01-12-2015)
    “…By applying a salt metathesis approach between Ce(OtBu3)2(NO3)2(THF)2 and the potassium salts of mono- and ditrimethylsilyl substituted cyclopentadienes, we…”
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    Journal Article
  19. 19

    Glutamate metabolism in HIV-1 infected macrophages: Role of HIV-1 Vpr by Datta, Prasun K, Deshmane, Satish, Khalili, Kamel, Merali, Salim, Gordon, John C, Fecchio, Chiara, Barrero, Carlos A

    Published in Cell cycle (Georgetown, Tex.) (01-09-2016)
    “…HIV-1 infected macrophages play a significant role in the neuropathogenesis of AIDS. HIV-1 viral protein R (Vpr) not only facilitates HIV-1 infection but also…”
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    Journal Article
  20. 20

    H++: a server for estimating pKas and adding missing hydrogens to macromolecules by Gordon, John C., Myers, Jonathan B., Folta, Timothy, Shoja, Valia, Heath, Lenwood S., Onufriev, Alexey

    Published in Nucleic acids research (01-07-2005)
    “…The structure and function of macromolecules depend critically on the ionization (protonation) states of their acidic and basic groups. A number of existing…”
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