TY - JOUR
T1 - Development and application of a poly(ethylene glycol)-supported triarylphosphine reagent
T2 - Expanding the sphere of liquid-phase organic synthesis
AU - Sieber, Frank
AU - Wentworth, Paul
AU - Toker, Jonathan D.
AU - Wentworth, Anita D.
AU - Metz, William A.
AU - Reed, Neal N.
AU - Janda, Kim D.
PY - 1999/7/9
Y1 - 1999/7/9
N2 - Continuing studies into the utility of poly(ethylene glycol) (PEG)- supported triarylphosphines as functional polymer reagents in liquid-phase organic synthesis (LPOS) are being pursued. This report describes the synthesis and NMR characterization of an aryl-alkyl ether-linked PEG- triarylphosphine derivative (2) and its subsequent application in LPOS. The utility of 2 as a mild stoichiometric reagent for ozonide reduction has been demonstrated, and a direct comparison between 2, a Merrifield resin-bound triarylphosphine derivative, and a solution-phase triphenylphosphine reagent revealed that the highest observed yields occur under liquid-phase conditions. Transformation of phosphine 2 into a phosphonium salt (3) then allowed the inherent aqueous solubility of PEG-functionalized moieties to be exploited by enabling a Wittig reaction, between a range of aldehydes and 3, to occur under mildly basic aqueous conditions. This led to the generation of substituted stilbenes in good to excellent yields. Finally, regeneration of 2 was achieved by reduction of the PEG-supported triphenylphosphine oxide byproduct 4 with alane (100% conversion, 75% yield). This combination of reaction, recovery, and regeneration expands the utility of PEG-supported triarylphosphine reagents across the spectra of both organic chemistry and solution-phase combinatorial strategies.
AB - Continuing studies into the utility of poly(ethylene glycol) (PEG)- supported triarylphosphines as functional polymer reagents in liquid-phase organic synthesis (LPOS) are being pursued. This report describes the synthesis and NMR characterization of an aryl-alkyl ether-linked PEG- triarylphosphine derivative (2) and its subsequent application in LPOS. The utility of 2 as a mild stoichiometric reagent for ozonide reduction has been demonstrated, and a direct comparison between 2, a Merrifield resin-bound triarylphosphine derivative, and a solution-phase triphenylphosphine reagent revealed that the highest observed yields occur under liquid-phase conditions. Transformation of phosphine 2 into a phosphonium salt (3) then allowed the inherent aqueous solubility of PEG-functionalized moieties to be exploited by enabling a Wittig reaction, between a range of aldehydes and 3, to occur under mildly basic aqueous conditions. This led to the generation of substituted stilbenes in good to excellent yields. Finally, regeneration of 2 was achieved by reduction of the PEG-supported triphenylphosphine oxide byproduct 4 with alane (100% conversion, 75% yield). This combination of reaction, recovery, and regeneration expands the utility of PEG-supported triarylphosphine reagents across the spectra of both organic chemistry and solution-phase combinatorial strategies.
UR - http://www.scopus.com/inward/record.url?scp=0033063092&partnerID=8YFLogxK
U2 - 10.1021/jo9903712
DO - 10.1021/jo9903712
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AN - SCOPUS:0033063092
SN - 0022-3263
VL - 64
SP - 5188
EP - 5192
JO - Journal of Organic Chemistry
JF - Journal of Organic Chemistry
IS - 14
ER -