首页> 外文期刊>Journal of Physical Organic Chemistry >COMPLEXATION OF SPIROPYRANS WITH CYCLODEXTRINS: EFFECTS OF β- AND γ-CYCLODEXTRINS ON THE THERMAL ISOMERIZATION OF 6-SO_3~--SPIROPYRAN
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COMPLEXATION OF SPIROPYRANS WITH CYCLODEXTRINS: EFFECTS OF β- AND γ-CYCLODEXTRINS ON THE THERMAL ISOMERIZATION OF 6-SO_3~--SPIROPYRAN

机译:螺吡喃与环糊精的络合物:β-和γ-环糊精对6-SO_3〜-螺吡喃热异构化的影响

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The thermal isomerizations of 1′,3′,3′-trimethyl-spiro[2H-1-benzopyran-2,2′-indoline]-6-sulphonic acid (6-SO_3~--SP) between its spiro (SP) and merocyanine (MC) forms were followed spectrophotometrically in the presence of cyclodextrins (β- and γ-CDs) at various pressures. From the pressure dependence of the isomerization rate, the activation volumes for the thermal isomerization of 6-SO_3~--SP were estimated to be 17.1 cm~3 mol~(-1) for MC→SP and 8.5 cm~3 mol~(-1) for SP→MC. The equilibrium constants (K) for the inclusion complex formation of CDs with 6-SO_3~--SP were determined at various pressures. It was found that the stability of the 1:1 inclusion complex between 6-SO_3~--SP and CDs decreases in the order β- > γ- > α-CD. From the pressure dependence of K, the reaction volumes were estimated to be -0.9 cm~3 mol~(-1) for the 6-SO_3~--SP-β-CD system and 4.0 cm~3 mol~(-1) for the 6-SO_3~--SP-γ-CD system. Based on the activation volumes, the structure of the transition state for the thermal isomerization is discussed and an explanation for the effect of CDs on the reaction rate is given. The difference in the reaction volumes for the inclusion complex formation of β- and γ-CDs is explained in terms of the difference in the number of water molecules excluded from the CD cavity.
机译:1',3',3'-三甲基-螺[2H-1-苯并吡喃-2,2'-二氢吲哚] -6-磺酸(6-SO_3〜--SP)在其螺线(SP)之间的热异构化在不同压力下,在环糊精(β-和γ-CDs)存在下,用分光光度法测定了花青素和花菁的含量。从异构化速率的压力依赖性来看,对于6-SO_3〜--SP的热异构化活化体积,MC→SP分别为17.1 cm〜3 mol〜(-1),8.5 cm〜3 mol〜( -1)用于SP→MC。在不同压力下测定了6-SO_3〜--SP的CDs包合物形成的平衡常数(K)。发现6-SO_3〜--SP与CDs之间的1:1包合物的稳定性以β->γ->α-CD的顺序降低。根据K的压力依赖性,对于6-SO_3〜--SP-β-CD系统,反应体积估计为-0.9 cm〜3 mol〜(-1),而对于4.0 cm〜3 mol〜(-1)适用于6-SO_3〜--SP-γ-CD系统。基于活化体积,讨论了用于热异构化的过渡态的结构,并给出了CD对反应速率的影响的解释。 β-和γ-CDs形成包合物的反应体积的差异是根据CD腔中排除的水分子数量的差异来解释的。

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