4762-31-6Relevant articles and documents
The Formation of P-C Bonds Utilizing Organozinc Reagents for the Synthesis of Aryl- A nd Heteroaryl-Dichlorophosphines
Kirst, Christin,Tietze, Jonathan,Ebeling, Marian,Horndasch, Lukas,Karaghiosoff, Konstantin
, p. 17337 - 17343 (2021/11/18)
Aryl- A nd heteroaryl-dichlorophosphines are mildly and selectively made in a one-pot synthesis in moderate to good yields starting from the respective aryl bromides or five-membered heterocycles, following lithiation with nBuLi, transmetalation with ZnCl
COMPOUND FOR ORGANIC ELECTRONIC ELEMENT, ORGANIC ELECTRONIC ELEMENT USING THE SAME, AND AN ELECTRONIC DEVICE THEREOF
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Paragraph 0172; 0174; 0175, (2016/10/31)
Provided is a compound which is represented by chemical formula 1, wherein the compound exhibits high luminous efficiency and low driving voltage and increases lifespan of a device. Also, provided are an organic electric element using the same and an electronic device thereof.
Bisxantphos: Stereoselective synthesis and coordination behaviour of a new class of cyclic double bridged diphosphines
Den Heeten, Rene,Zuidema, Erik,Lutz, Martin,Spek, Anthony L.,Van Leeuwen, Piet W.N.M.,Kamer, Paul C.J.
experimental part, p. 3113 - 3120 (2011/09/20)
A new class of cyclic double bridged diphosphine ligands was developed and the coordination properties are described. The reaction of 4,5-dilithioxanthene with dichlorophenylphosphine gave a cyclic double bridged diphosphine ligand based on two xanthene b
Phosphine sulfides as an anchor unit for single molecule junctions
Fukazawa, Aiko,Kiguchi, Manabu,Tange, Satoshi,Ichihashi, Yasunori,Zhao, Qiang,Takahashi, Takuya,Konishi, Tatsuya,Murakoshi, Kei,Tsuji, Yuta,Staykov, Aleksandar,Yoshizawa, Kazunari,Yamaguchi, Shigehiro
supporting information; experimental part, p. 174 - 176 (2011/04/14)
Phenylene and biphenyl compounds with dibenzophosphole sulfide (DBPS) as an anchoring group for single molecule junctions were synthesized. The conductance measurements revealed that the phosphine sulfide indeed acts as an anchoring group for Au electrodes. Theoretical calculations including metal electrodes demonstrated that the LUMO level of the DBPS-terminated biphenyl is close to the Au Fermi level, leading to the electron conduction of the AumoleculeAu junction based on the resonance-tunneling mechanism.