Bimetallic Reductive Elimination from Dinuclear Pd(III) Complexes
作者:David C. Powers、Diego Benitez、Ekaterina Tkatchouk、William A. Goddard、Tobias Ritter
DOI:10.1021/ja1036644
日期:2010.10.13
C-halogen reductiveelimination reactions from dinuclear Pd(III) complexes and implicated dinuclear intermediates in Pd(OAc)(2)-catalyzed C-H oxidation chemistry. Herein, we report results of a thorough experimental and theoretical investigation of the mechanism of reductiveeliminationfrom such dinuclear Pd(III) complexes, which establish the role of each metal during reductiveelimination. Our results
Mechanism of C−F Reductive Elimination from Palladium(IV) Fluorides
作者:Takeru Furuya、Diego Benitez、Ekaterina Tkatchouk、Alexandra E. Strom、Pingping Tang、William A. Goddard、Tobias Ritter
DOI:10.1021/ja909371t
日期:2010.3.24
mechanism study of C-F reductiveeliminationfrom a transition metal complex is described. C-F bond formation from three different Pd(IV) fluoride complexes was mechanistically evaluated. The experimental data suggest that reductiveelimination occurs from cationic Pd(IV) fluoride complexes via a dissociative mechanism. The ancillary pyridyl-sulfonamide ligand plays a crucial role for C-F reductive elimination
COMPOUND, ORGANIC LIGHT EMITTING DEVICE, AND DISPLAY DEVICE
申请人:SK Materials CO., LTD.
公开号:US20210043843A1
公开(公告)日:2021-02-11
Disclosed are: a compound applicable to an electron transport layer of an organic light emitting diode; an organic light emitting diode employing the compound; and an organic EL display device comprising the organic light emitting diode. The organic light emitting device includes a first electrode, and a second electrode facing the first electrode, and an organic material layer interposed between the first electrode and the second electrode.
[EN] PALLADIUM NANOWIRES AND METHODS OF PREPARATION<br/>[FR] NANOFILS DE PALLADIUM ET LEURS PROCÉDÉS DE PRÉPARATION
申请人:HARVARD COLLEGE
公开号:WO2012109389A3
公开(公告)日:2012-11-08
One-Dimensional Palladium Wires: Influence of Molecular Changes on Supramolecular Structure
作者:Michael G. Campbell、Shao-Liang Zheng、Tobias Ritter
DOI:10.1021/ic4019635
日期:2013.12.2
Nanostructured materials based on one-dimensional (1D) metal wires are of potential utility; however, to date, there is a lack of synthetic methods that allow for variation of structure and therefore properties. Here we report the use of molecular control elements to alter the solid-state structures of 1D palladium wires, including Pd–Pd bond distances and the porosity of the supramolecular framework