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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Studying Supramolecular Assemblies by ESEEM Spectroscopy: Inclusion Complexes of Cyclodextrins
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Studying Supramolecular Assemblies by ESEEM Spectroscopy: Inclusion Complexes of Cyclodextrins

机译:通过ESEEM光谱研究超分子组装:环糊精的包合物

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摘要

Electron spin—echo envelope modulation (ESEEM) spectroscopy was used to investigate intramolecular and intermolecular complexes of cyclodextrins (CDs) with a nitroxide group. The interaction with solvent molecules (D2O) was followed through the ~2H modulation depth. Competition experiments with adamantane-type guests were used to confirm complexation. The shielding of the nitroxide group from solvent upon inclusion into a CD cavity made this technique more sensitive to complexation than cw EPR spectroscopy. ESEEM analysis of a series of CDs mono and bis spin-labeled on the primary rim of the cavity showed that only one compound formed a self-inclusion complex. This suggests that significant linker length/flexibility is required for formation of inclusion complexes in functionalized CDs. DEER (double electron—electron resonance) experiments confirmed that the self-inclusion complex of the spin-labeled CD was intra- rather than intermolecular.
机译:电子自旋回波包络调制(ESEEM)光谱用于研究环糊精(CD)与一氧化氮基团的分子内和分子间配合物。通过〜2H调制深度跟踪与溶剂分子(D2O)的相互作用。用金刚烷型客人的竞争实验被用来确认络合物。硝酸根基团在被包含到CD腔中后被溶剂屏蔽,这使该技术比CW EPR光谱对络合更为敏感。 ESEEM分析了在腔体主边缘上单旋和双旋标记的一系列CD,结果表明只有一种化合物形成了自包含复合物。这表明在功能化CD中形成包涵体复合物需要显着的接头长度/柔韧性。 DEER(双电子-电子共振)实验证实,自旋标记CD的自包含复合物是分子内而不是分子间的。

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