A
Arnold L. Rheingold
Researcher at University of California, San Diego
Publications - 1415
Citations - 35872
Arnold L. Rheingold is an academic researcher from University of California, San Diego. The author has contributed to research in topics: Ligand & Crystal structure. The author has an hindex of 75, co-authored 1392 publications receiving 33260 citations. Previous affiliations of Arnold L. Rheingold include Scripps Research Institute & University of Cambridge.
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Journal ArticleDOI
Hydrogen-bonding pincer complexes with two protic N-heterocyclic carbenes from direct metalation of a 1,8-bis(imidazol-1-yl)carbazole by platinum, palladium, and nickel.
David C. Marelius,Evan H. Darrow,Curtis E. Moore,James A. Golen,Arnold L. Rheingold,Douglas B. Grotjahn +5 more
TL;DR: Pincer protic N-heterocyclic carbene (PNHC) complexes were synthesized by direct metalation, the formation of a metal carbon bond from an unfunctionalized CH bond in a single synthetic step, even for a first-row metal, nickel.
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Synthesis and Protonation of an Encumbered Iron Tetraisocyanide Dianion
Charles C. Mokhtarzadeh,Grant W. Margulieux,Alex E. Carpenter,Nils Weidemann,Curtis E. Moore,Arnold L. Rheingold,Joshua S. Figueroa +6 more
TL;DR: Synthetic studies probing highly reduced iron centers in an encumbering tetraisocyano ligand environment provide insight into the ability of CNAr(Mes2) and related m-terphenyl isocyanides to stabilize zerovalent four-coordinate iron complexes in a strongly π-acidic ligand field.
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Oxo-alkyls of chromium(V) and chromium(VI)
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Stable Borate-Bridged ansa-Zirconocene Complexes. Preparation and X-ray Crystallographic Characterization of [Cp*2Al]+[Me(Ph)B(η5-C5H4)2ZrCl2]- and [PPN]+[Cl(Ph)B(η5-C5H4)2ZrCl2]-
Christopher T. Burns,Daniel S. Stelck,Pamela J. Shapiro,Ashwani Vij,Klaus Kunz,Gerald Kehr,Tom Concolino,Arnold L. Rheingold +7 more
TL;DR: In this article, stable, borate-bridged ansa-zirconocene species have been prepared by reacting [Ph(SMe2)B(η5-C5H4)2}ZrCl2] (1) with Cp*2AlMe and [PPN]Cl.
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Crystal structure and triboluminescence. 1. 9-Anthryl carbinols
TL;DR: C 15 H 12 O cristallise dans C c avec affinement jusqu'a 0.0375 as mentioned in this paper, and C 16 H 11 F 3 O CRISTALLISE dans P 2 1/c 1.