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首页> 外文期刊>Journal of the Chemical Society. Perkin Transactions 2 >Chiral recognition of an anionic tetrahelicene by native cyclodextrins. Enantioselectivity dominated by location of a hydrophilic group of the guest in a cyclodextrin cavity
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Chiral recognition of an anionic tetrahelicene by native cyclodextrins. Enantioselectivity dominated by location of a hydrophilic group of the guest in a cyclodextrin cavity

机译:天然环糊精手性识别阴离子四螺旋。对映选择性主要由客体亲水基团在环糊精腔中的位置决定

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摘要

Chiral recognition of 1,12-dimethylbenzo[c] phenanthrene-5,8-dicarboxylic acid (1) by native #beta#- (#beta#-CD) and #gamma#-cyclodextrins (#gamma#-CD) has been studied by means of ~1H NMR spectroscopy. The binding constant (K) for complexation of (M)-1 with #beta#-CD (18700 +- 1700 dm~3 mol~(-1)) is much larger than that for (P)-1 (2200 +- 100 dm~3 mol~(-1)), #DELTA##DELTA#G being 5.2 kJ mol~(-1). #gamma#-CD forms less stable inclusion complexes (K = 3100 +- 100 and 690 +- 20 dm~3 mol~(-1) for (M)-1 and (P)-1, respectively). The 2D ROESY spectra indicate that both CO_2~- groups of 1 are placed near the rim of the secondary OH group side of #beta#-CD though the (P)-1 molecule penetrates into the host cavity somewhat more deeply than the (M)-1 molecule. The deeper penetration of the (P)-1 molecule seems to be an enthalpically unfavourable but entropically favourable process because such a complexation needs dehydration from the CO_2~- group(s) of 1. The enantioselectivity of #beta#-CD toward 1 is dominated by the difference in the enthalpy changes due to the difference in the extent of penetration between the enantiomers of 1. The 2D NMR spectra clearly indicate that at least one CO_2~- group of 1 is located inside of the #gamma#-CD cavity resulting in extensive dehydration from the guest molecule. Such an endothermic process reduces the K value for the 1-#gamma#-CD complex. The difference in the structures of the complexes between the guest enantiomers might be ascribed to the chiral helix-structure of the CD taken upon complexation in water.
机译:天然的#beta#-(#beta#-CD)和#gamma#-环糊精(#gamma#-CD)已手性识别1,12-二甲基苯并[c]菲-5,8-二羧酸(1)通过〜1H NMR光谱研究。 (M)-1与#beta#-CD的络合常数(K)(18700 +-1700 dm〜3 mol〜(-1))比(P)-1(2200 +-)大得多100 dm〜3 mol〜(-1)),#DELTA ## DELTA#G为5.2 kJ mol〜(-1)。 #gamma#-CD形成不稳定的包合物(对于(M)-1和(P)-1,K分别为3100 + -100和690 + -20 dm〜3 mol〜(-1))。二维ROESY光谱表明,尽管(P)-1分子比(M)渗透到宿主腔中的深度更大,但两个CO_2〜-均位于#beta#-CD的仲OH基团一侧的边缘附近。 )-1分子。 (P)-1分子的更深渗透似乎在焓上是不利的,但在熵上是有利的,因为这种络合需要从1的CO_2〜-基团脱水。#beta#-CD对1的对映选择性为由于1的对映异构体之间的渗透程度不同,焓变的差异所占优势。2D NMR光谱清楚地表明,至少1个CO_2〜-基团位于#gamma#-CD腔内导致客体分子大量脱水。这样的吸热过程降低了1-#γ#-CD复合物的K值。客体对映体之间的复合物结构的差异可能归因于在水中复合时CD的手性螺旋结构。

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