1206455-07-3Relevant academic research and scientific papers
A unique thermal reaction of 9-anthryldiphosphene leading to the formation of a triphosphirane derivative
Tokitoh, Norihiro,Tsurusaki, Akihiro,Sasamori, Takahiro
, p. 979 - 986 (2009)
Heating of a 9-anthryldiphosphene kinetically stabilized by 2,6-bis[bis(trimethylsilyl)methyl]-4-[tris(trimethylsilyl)methyl]phenyl substituent (denoted as Bbt) group, BbtP P(9-Anth) (9-Anth = 9-anthryl), with (n-Bu) 3PTe afforded 1,2-bis(9-Ant
Synthesis, structures, and reactivity of kinetically stabilized anthryldiphosphene derivatives
Tsurusaki, Akihiro,Nagahora, Noriyoshi,Sasamori, Takahiro,Matsuda, Kazunari,Kanemitsu, Yoshihiko,Watanabe, Yasuaki,Hosoi, Yoshinobu,Furukawa, Yukio,Tokitoh, Norihiro
experimental part, p. 456 - 478 (2010/07/04)
The first stable anthryldiphosphenes, 1 and 2, were synthesized by utilizing kinetic stabilization of 2,4,6- tris[bis(trimethylsilyl)methyl]phenyl (Tbt) and 2,6-bis[bis(trimethylsilyl)methyl]-4-[tris(trimethylsilyl)methyl] phenyl (Bbt) groups, and were characterized by spectroscopic and X-ray crystallographic analyses. The UVvisible spectroscopic data suggested the electronic communication between the anthryl moiety and the P=P unit. It was found that TbtP=P(9- Anth) (1a: 9-Anth = 9-anthryl) showed weak fluorescence in hexane solution. Furthermore, the reactivities of anthryldiphosphene 1 with a chromium complex, chalcogenation reagents, a diene, and electron-deficient olefins have been revealed.
