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HERO ID
2258909
Reference Type
Journal Article
Title
2,2 '-Binaphthylene phosphorochloridite (BINOL-PCl) as a bulky and efficient reagent for the conversion of primary and secondary alcohols into iodides, and tertiary alcohols stereo- and/or regioselectively into olefin(s)
Author(s)
Pesyan, NN; Khalafy, J; Khani-Meinagh, H
Year
2009
Is Peer Reviewed?
1
Journal
Turkish Journal of Chemistry
ISSN:
1300-0527
EISSN:
1303-6130
Volume
33
Issue
4
Page Numbers
527-543
DOI
10.3906/kim-0804-19
Web of Science Id
WOS:000270803800010
Abstract
Primary and secondary alcohols were transformed in high yield to corresponding iodides by 4-chloro-3,5-dioxaphosphacyclohepta [2,1-alpha; 3,4-alpha'] dinaphthalene (BINOL-PCl) at room temperature. The tertiary alcohols formed corresponding alkenes by stereo- and/or regioselective elimination reactions. (E)-1,2- Diphenyl-1-propene and 2,3-diphenyl-1-propene were stereoselectively obtained from 1,2-diphenyl-2-propanol, as representative. No (Z)-1,2-diphenyl-1-propene was observed. 2-Methyl-1-phenylcyclopentene and 3-methyl-2-phenylcyclopentene were regioselectively obtained from 2-methyl-1-phenylcyclopentanol. (13)C chemical shifts for the alpha-methylene carbon of some alkyl iodides empirically calculated through a very simple additive relationship lead to similar or even better values than the reported values. All primary alkyl iodides showed the iodine heavy atom effect on the alpha-methylene carbon chemical shift.
Keywords
Alkyl iodide; 2,2 '-dihydroxy-1,1 '-dinaphthalene (BINOL); 2,2 '-binaphthylene phosphorochloridite (BINOL-PCl); stereoselective; anti-E2 elimination reaction; heavy atom effect
Tags
OPPT REs
•
OPPT_Carbon Tetrachloride_C. Engineering
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•
OPPT_Carbon Tetrachloride_D. Exposure
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•
OPPT_Carbon Tetrachloride_E. Fate
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