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1 HMPA greatly decelerated the reaction of 1S (<10 -10), p
2 HMPA in large amounts promotes dissociation to monomer w
3 HMPA is known to increase the reduction potential of SmI
11 reactions of BnO(*) with DMSO/DMSO-d(6) and HMPA/HMPA-d(18), together with the k(H)(BnO(*))/k(H)(Cum
13 rt Z-5F-Li to a monomeric amine complex, and HMPA converts it partially to monomers, and partially to
14 e containing enolate, lithium hydroxide, and HMPA in a 4:2:4 ratio, [(LiOPin)4.(LiOH)2.HMPA4], that w
19 uction of ketones by SmI(2) (and SmI(2)[bond]HMPA complexes) and an outer-sphere-type ET for the redu
23 erature activation of the silicon reagent by HMPA to generate difluorocarbene, which upon interacting
25 strong hydrogen bond acceptors such as DMSO, HMPA, and tributylphosphine oxide (TBPO) by the cumyloxy
29 one reduction by Sm is unaffected by further HMPA addition while a linear dependence of ET rate on th
33 quid ammonia and in hexamethylphosphoramide (HMPA) to form indantrione, which has a sufficiently larg
34 raeneoxypropane, in hexamethylphosphoramide (HMPA), yields an anion radical, which disproportionates
35 of ligand displacement (exchange) in Sm(II)-HMPA-based reactions and insight into the mechanism of [
36 ate ketyl to the sterically congested Sm(III)HMPA both stabilizes the intermediate and inhibits cycli
40 e trianion radical of C60 reacts with COT in HMPA to yield a [2 + 2] cycloaddition product, and subse
41 = phenyl, beta-naphthyl, alpha-naphthyl), in HMPA, results in anion radicals that undergo novel intra
42 Conversely, reactions were first-order in HMPA, and the additive displayed saturation kinetics at
43 ert-butylcyclohexene oxide was rearranged in HMPA and was found to react via anti beta-elimination, a
45 Deprotonation of norbornene epoxide by LDA/HMPA proceeds via an intermediate metalated epoxide as a
47 m acetylide ethylenediamine complex (LiAEDA, HMPA, -5 degrees C), and benzyl group cleavage (Ac2O, Py
49 U((Mes)PDI(Me))(THF) (1), Cp*U((Mes)PDI(Me))(HMPA) (1-HMPA), and Cp*U((t)Bu-(Mes)PDI(Me))(THF) (1-(t)
51 eric structures in THF/Et(2)O and THF/Et(2)O-HMPA by study of the effects of the addition of HMPA.
55 astereomeric product ratios upon addition of HMPA suggest that complexation of HMPA to lithium has tw
58 n triol exclusively (by 1H NMR); addition of HMPA to the reaction or replacement of the substrate's m
61 yclization is driven by the high affinity of HMPA for Sm(III), and these results suggest that simple
62 F solution, but addition of small amounts of HMPA causes a bathochromic shift in the spectrum of 1-Li
67 lfur-stabilized lithium reagents, 2 equiv of HMPA suffice to achieve >95% 1,4 addition, whereas 4 equ
70 air through displacement by an equivalent of HMPA provides a solvent-separated ion pair releasing the
72 in the presence of different equivalents of HMPA were compared to understand the mechanism of action
75 oted by samarium diiodide in the presence of HMPA and acetone allow access to the fully functionalize
77 adiation, (b) irradiation in the presence of HMPA, and (c) reactions in the presence of HMPA in the d
78 enzotriazole (5) and LDA, in the presence of HMPA, reacts with enolizable and nonenolizable carbonyls
80 mple empirical models describing the role of HMPA in more complex systems are likely to be fraught wi
81 rily to the allenyl product while the use of HMPA as a cosolvent gives the beta,gamma-alkynyl deconju
84 The role of polar solvents (particularly HMPA) in controlling the ratio of 1,2 to 1,4 addition of
85 ammetry studies have shown that it resembles HMPA in its ability to enhance the reduction potential o
88 he crystal structure of a substoichiometric, HMPA-trisolvated lithium pinacolone enolate tetramer (Li
92 chanism derived from rate studies shows that HMPA is important not only in increasing the reduction p
94 he immediate product of the reaction was the HMPA-solvated separated ion 1S, with the Peterson produc
95 neously forms condensation products with the HMPA to produce a variety of zwitterionic radicals, wher
98 ions are carried out at -78 degrees C in THF-HMPA, they proceed in 65-81% yields, with both regiocont
105 quiv of lithium diisopropylamide in THF with HMPA as the cosolvent followed by trapping with a variet
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