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Homochiral oligomers with highly flexible backbones form stable H-bonded duplexes

机译:具有高度柔性骨架的手性低聚物形成稳定的氢键双链体

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摘要

Two homochiral building blocks featuring a protected thiol, an alkene and a H-bond recognition unit (phenol or phosphine oxide) have been prepared. Iterative photochemical thiol–ene coupling reactions were used to synthesize oligomers containing 1-4 phosphine oxide and 1-4 phenol recognition sites. Length-complementary H-bond donor and H-bond acceptor oligomers were found to form stable duplexes in toluene. NMR titrations and thermal denaturation experiments show that the association constant and the enthalpy of duplex formation increase significantly for every additional H-bonding unit added to the chain. There is an order of magnitude increase in stability for each additional H-bonding interaction at room temperature indicating that all of the H-bonding sites are fully bound to their complements in the duplexes. The backbone of the thiol–ene duplexes is a highly flexible alkane chain, but this conformational flexibility does not have a negative impact on binding affinity. The average effective molarity for the intramolecular H-bonding interactions that zip up the duplexes is 18 mM. This value is somewhat higher than the EM of 14 mM found for a related family of duplexes, which have the same recognition units but a more rigid backbone prepared using reductive amination chemistry. The flexible thiol–ene AAAA·DDDD duplex is an order of magnitude more stable than the rigid reductive amination AAAA·DDDD duplex. The backbone of the thiol–ene system retains much of its conformational flexibility in the duplex, and these results show that highly flexible molecules can make very stable complexes, provided there is no significant restriction of degrees of freedom on complexation.
机译:制备了具有受保护的硫醇,烯烃和氢键识别单元(苯酚或氧化膦)的两个同手性结构单元。迭代的光化学硫醇-烯偶联反应用于合成含有1-4个氧化膦和1-4个苯酚识别位点的低聚物。发现长度互补的H键供体和H键受体低聚物在甲苯中形成稳定的双链体。 NMR滴定和热变性实验表明,添加到链中的每个其他H键合单元,缔合常数和双链形成焓均显着增加。在室温下,每种附加的H键相互作用的稳定性都有一个数量级的增加,表明所有的H键位均完全结合在双链体中。硫醇-烯双链体的主链是高度柔性的烷烃链,但是这种构象柔性不会对结合亲和力产生负面影响。拉长双链体的分子内H键相互作用的平均有效摩尔浓度为18 mM。该值略高于相关双链体家族的14 mM EM,双链体具有相同的识别单元,但使用还原胺化化学方法制备的骨架更为刚性。柔性硫醇-烯AAAA·DDDD双链体比刚性还原胺化AAAA·DDDD双链体稳定一个数量级。硫醇-烯系统的主链在双链体中保留了其大部分构象柔性,这些结果表明,只要对配位自由度没有明显限制,高柔性分子就可以形成非常稳定的配位体。

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