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1 ducts between the high explosive cyclo-1,3,5-trimethylene-2,4,6-trinitramine (RDX) and halide anions
2 hree common military explosives: cyclo-1,3,5-trimethylene-2,4,6-trinitramine (RDX), nitroglycerin (NG
5 inomethyl]-1-methylpyridinium chloride, 1,1'-trimethylene bis-(4-hydroxyimino methyl)-pyridinium dibr
6 16-tetraaza[5,5]paracyclophane (Me3C), a bis-trimethylene bridged bis-p-phenylene diamine (PD), and i
8 report synthesis and investigation of doubly trimethylene-bridged tetrabenzyl-p-phenylenediamine 1(Bz
9 possible, but Me3C2+ has doubly gg N(CH2)3N trimethylene bridges and both N,N and C,C distances betw
10 ioabsorbable, macroporous, polyglycolic acid-trimethylene carbonate (PGA-TMC) membrane combined with
11 w bioabsorbable, synthetic polyglycolic acid/trimethylene carbonate (PGA/TMC) barrier membrane with a
12 nitiating the ring-opening polymerization of trimethylene carbonate (TMC) from methyl cholate through
13 mol (-1) for ring-opening polymerization of trimethylene carbonate and 107.6 kJ x mol (-1) for copol
17 ene glycol)-block-poly(caprolactone-gradient-trimethylene carbonate) (PEG-P(CLgTMC)), with tetrapheny
18 obic segment of a poly(ethylene glycol)-poly(trimethylene carbonate) block copolymer, of which the ca
20 roceed in part by way of the intermediacy of trimethylene carbonate, which was observed as a minor pr
22 c carbonates containing pendant dithiolanes (trimethylene carbonate/dithiolane, TMCDT) from poly(ethy
28 esis of a polyamine-based amino acid, lysine-trimethylene(diNosyl)-spermine(triBoc) with Dde or Fmoc
29 solation from carbon-carbon coupling of 4,4'-trimethylene-dipyridine (tmdp) in the absence of organic
31 o[a]pyrene-guanine adduct, and an artificial trimethylene insert shows that each of these three lesio
33 lysine of the peptide KWKK conjugated via a trimethylene linkage to the N(2)-dG amine positioned in
34 tion of a bifunctional allylating reagent, a trimethylene methane dianion equivalent, that provides a
35 1-tris(diphenylphosphinomethyl)ethane, TMM = trimethylene methane) provides an efficient catalytic sy
37 tem D-br-D*(+) [where br can be an aliphatic trimethylene or an aromatic (poly)phenylene bridge] to b
39 of one or more loop riboses to more flexible trimethylene phosphate(s) contributes favorably to the e
40 lly biobased engineering thermoplastic, poly(trimethylene terephthalate) (PTT), was combined with 20
41 r lay approximately in a plane such that the trimethylene tether and probably the malondialdehyde tet
43 n imidazoles and 1,2,4-triazines linked by a trimethylene tether from the imidazole N1 position to th
44 ecular analogues (isoquinolinium linked by a trimethylene tether to alkyl benzenes) that proved to be