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Photocontrolled release and uptake of a porphyrin guest by dithienylethene-tethered beta-cyclodextrin host dimers

机译:二噻吩乙烯连接的β-环糊精主体二聚体对卟啉客体的光控释放和吸收

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摘要

Two photoswitchable dithienylethene-tethered ß-cyclodextrin dimers were synthesized to function as host molecules with an externally controllable binding affinity. The cyclodextrin cavities of these dimers are linked through their secondary sides by a photochromic dithienylethene unit that is connected to the secondary rim either directly (4) or through propyl spacers (9). Irradiation with light switches these dimers between a relatively flexible (open) and a rigid (closed) form. The binding properties of the dimers depend on the configuration of the dithienylethene spacer, as is shown by microcalorimetry performed with tetrakis-sulfonatophenyl porphyrin (TSPP) as a guest molecule. The differences in binding properties are most pronounced for the more rigid dimer 4, which binds TSPP 35 times more strongly in the open form (4 a) than in the closed form (4 b). The values found for the enthalpy of binding (ΔH°) indicate that this difference in binding is due to the loss of cooperativity between the two ß-cyclodextrin cavities in the closed form. Molecular modeling shows that 4 b is not able to bind TSPP effectively in both cyclodextrin cavities. The open and closed forms of the more flexible dimer 9 show no substantial difference in their binding of TSPP. Thermodynamic values indicative of strong binding of TSPP by two ß-cyclodextrin cavities were measured for both forms of the dimer, and molecular modeling confirms that both are flexible enough to tightly bind TSPP. The binding differences between the forms of dimer 4 allow the photocontrolled release and uptake of TSPP, which renders control of the ratio of complexed to free TSPP in solution possible.
机译:合成了两个可光开关的二噻吩乙烯乙烯系β-环糊精二聚体,以具有外部可控结合亲和力的宿主分子形式发挥作用。这些二聚体的环糊精空腔通过其光致变色二噻吩乙烯单元通过其次级侧连接,该单元直接或间接地(4)或通过丙基间隔基(9)连接至次级边缘。用光照射将这些二聚体在相对柔性(开放)和刚性(封闭)形式之间切换。二聚体的结合性质取决于二噻吩基乙烯间隔基的构型,如用四磺基磺基苯基卟啉(TSPP)作为客体分子进行的微量量热法所显示的。对于更刚性的二聚体4,结合性质的差异最明显,二聚体4在开放形式(4a)中结合TSPP的强度比在封闭形式(4b)中强35倍。结合焓的值(ΔH°)表明,结合的这种差异是由于闭合形式的两个β-环糊精腔之间的协同性损失所致。分子建模表明4b在两个环糊精腔中均不能有效结合TSPP。更具挠性的二聚体9的打开和闭合形式在它们对TSPP的结合中没有显示出实质性差异。测量了两种形式的二聚体的热力学值,表明两个ß-环糊精腔体对TSPP的牢固结合,并且分子模型证实这两者都具有足够的挠性以紧密结合TSPP。二聚体4的形式之间的结合差异允许TSPP的光控释放和吸收,这使得可以控制溶液中复合TSPP与游离TSPP的比率。

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