- Intramolecular Chirality Transfer [2 + 2] Cycloadditions of Allenoates and Alkenes
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Intramolecular chirality transfer [2 + 2] cycloaddition of enantiomerically enriched allenoates and alkenes is presented. The use of a chiral catalyst was found to be critical to achieve high levels of diastereoselectivity compared to use of an achiral catalyst. The method developed leads to highly substituted cyclobutanes that would be difficult to prepare by alternative methods.
- Xu, Yao,Hong, Young J.,Tantillo, Dean J.,Brown, M. Kevin
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supporting information
p. 3703 - 3706
(2017/07/26)
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- Selective synthesis of organophosphites
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Disclosed herein is a process for the selective synthesis of triorganophosphites intermediates, including chloridites and dichloridites, from PX3 (X=Cl, Br or I), alcoholos and triorganoamines where alcohol and triorganoamine are added either (a) separately and concurrently, or (b) alternating equimolar portions of amine and alcohol.
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- 2-CYANOETHYL NUCLEOSIDE 3'-PHOSPHONATES AS NOVEL STARTING MATERIALS FOR OLIGONUCLEOTIDE SYNTHESIS
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Various disubstituted phosphonates including alkylnucleoside 3'-phosphonates were converted rapidly into the corresponding phosphorochloridites by use of tris(2,4,6-tribromophenoxy)dichlorophosphorane (BDCP) as a chlorinating reagent.The reaction was found to be applicable to the rapid and practical synthesis of oligonucleotides.
- Wada, Takeshi,Hotoda, Hitoshi,Sekine, Mitsuo,Hata, Tsujiaki
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p. 4143 - 4146
(2007/10/02)
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- DERIVATE DES PHOSPHORSAEURE-o-PHENYLENESTERS. 27; REAKTIONEN DES DI-o-PHENYLENDIOXY-CHLOROPHOSPHORANS MIT ESTERN P-HALTIGER SAEUREN - SPALTUNG DES P-SPIROSYSTEMS
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The title compound 1 reacts with phosphites, phosphonate, phosphates and pentaoxyphosphorane to the o-phenylene phosphates 5, 7 and 9 resp. to the pentaoxyphosphoranes 2 and 13.A mechanism is proposed.
- Gloede. Joerg
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- Process for the production of phosphite chlorides
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Process for the production of phosphite chlorides comprising the reaction of phosphorus trichloride and a trialkyl phosphite or a triphenyl phosphite in the presence of an aprotic solvent.
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