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1 indicating that aggregation is approximately isodesmic.
3 ay crystallography, SEM, heterocomplementary isodesmic analysis, 1- and 2D NMR, and dynamic light sca
6 ctions of oDMSi-BTA sergeant (>25 mol%), the isodesmic assembly of the increasing amounts of sergeant
7 s most closely resembles noncooperative (or "isodesmic") assembly; the polymers are single-stranded a
14 ionic fragments were considerable even when isodesmic comparisons could have canceled electron corre
15 hing stabilization energies are evaluated by isodesmic comparisons of protobranched alkanes with etha
21 lization energy (RSE) scale, developed using isodesmic equations computed at the DFT level, aiming to
26 nteracting protein aggregates in terms of an isodesmic, indefinite aggregation equilibrium constant.
27 ve been interpreted by a mechanism involving isodesmic ligand-mediated or ligand-mediated plus ligand
28 ther FtsZ protofilaments are assembled by an isodesmic (linear aggregates in which each bond has an i
33 bly were obtained through the fitting of the isodesmic model to (1)H NMR spectrometry and circular di
35 and later including the full details of the isodesmic or cooperative supramolecular processes (i.e.,
37 he increased n n* interaction include larger isodesmic polymerization elongation constants in solutio
38 ondii, unexpectedly finding that it exhibits isodesmic polymerization in contrast to the conventional
40 reactions (BSR), defined on the basis of an isodesmic principle, are taken as reference properties f
42 ular helical nanotubes via a noncooperative, isodesmic process; the self-assembly of ordered helical
43 s is constructed: isogyric (RC1) superset of isodesmic (RC2) superset of hypohomodesmotic (RC3) super
44 the ring-strain energies with the help of an isodesmic reaction and evaluated structural and spectros
50 ation are calculated based on homodesmic and isodesmic reactions and the G2(MP2,SVP) method with a va
51 riplet energy splittings and the energies of isodesmic reactions are used to assess the amount of bis
55 ave been evaluated by computing energies for isodesmic reactions involving the ClNO(4) and ClNO(5) is
56 otentials to calculate the energy change for isodesmic reactions that convert an aromatic ring to an
57 ovalent interactions, natural bond orbitals, isodesmic reactions, and hydration propensities lead to
62 thalpies of formation have been deduced from isodesmic reactions: 94.2 +/- 2.0 kcal/mol (C(6)H(5)CHCH
65 e 2,15-substituted derivative 1 undergoes an isodesmic supramolecular polymerization forming globular
66 here is the synthesis, characterization, and isodesmic supramolecular polymerization of [3.3]paracycl
67 ethylacetamide and the target amide using an isodesmic trans-amidation process and is calibrated rela