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首页> 外文期刊>Chemistry: A European journal >The Role of Physical Environment on Molecular Electromechanical Switching
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The Role of Physical Environment on Molecular Electromechanical Switching

机译:物理环境在分子机电转换中的作用

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摘要

The influences of different physical environments on the thermodynamics associated with one key step in the switching mechanism for a pair of bistable catenanes and a pair of bistable rotaxanes have been investigated systematically.The two bistable catenanes are comprised of a cyclobis(para-quat-p-phenylene)(CBPQT~4+)ring,or its diazapyrenium-containing analogue,that are interlocked with a macrocyclic polyether component that incorporates the strong tetrathiafulvalene(TTF)donor unit and the weaker 1,5-dioxy-naphthalene(DNP)donor unit.The two bistable rotaxanes are comprised of a CBPQT~4+ ring,interlocked with a dumbbell component in which one incorporates TTF and DNP units,whereas the other incorporates a monopyr-rolotetrathiafulvalene(MPTTF)donor and a DNP unit.Two consecutive cycles of a variable scan rate cyclic vol-tammogram(10-1500 mVs~(-1))performed on all of the bistable switches(~ 1 HIM)in MeCN electrolyte solutions(0.1 M tetrabutylammonium hexafluoro-phosphate)across a range of tempera-tures(258-303 K)were recorded in a temperature-controlled electrochemical cell.The second cycle showed different intensities of the two features that were observed in the first cycle when the cyclic voltammetry was recorded at fast scan rates and low temperatures.The first oxidation peak increases in intensity,concomitant with a decrease in the intensity of the second oxidation peak.This variation changed systematically with scan rate and temperature and has been assigned to the molecular mechanical movements within the catenanes and rotaxanes of the CBPQT~4+ ring from the DNP to the TTF unit.The intensities of each peak were assigned to the populations of each co-conformation,and the scan-rate variation of each population was analyzed to obtain kinetic and thermodynamic data for the movement of the CBPQT~4+ ring.The Gibbs free energy of activation at 298 K for the thermally activated movement was calculated to be 16.2 kcalmol~(-1)for the rotaxane,and 16.7 and 19.2 kcalmol~(-1)for the bipyri-dinium-and diazapyrenium-based bistable catenanes,respectively.These values differ from those obtained for the shuttling and circumrotational motions of degenerate rotaxanes and catenanes,respectively,indicating that the detailed chemical structure influences the rates of movement.In all cases,when the same bistable compounds were characterized in an electrolyte gel,the molecular mechanical motion slowed down significantly,concomitant with an increase in the activation barriers by more than 2 kcalmol~(-1).Irrespective of the environment-solution,self-assembled monolayer or solid-state polymer gel-and of the molecular structure-rotaxane or catenane-a single and generic switching mechanism is observed for all bistable molecules.
机译:系统地研究了不同物理环境对一对双稳态连环烷和一对双稳态轮烷的转换机理中与一个关键步骤相关的热力学的影响。两个双稳态连环由环双(对-quat-p -亚苯基)(CBPQT〜4 +)环或其含二氮杂re的类似物,与大环聚醚组分互锁,该组分结合了强四硫富瓦烯(TTF)供体和较弱的1,5-二氧萘(DNP)供体两个双稳态轮烷由一个CBPQT〜4 +环组成,与一个哑铃组件互锁,其中一个结合了TTF和DNP单元,另一个结合了一个单吡咯烷四硫富瓦烯(MPTTF)供体和一个DNP单元。两个连续的循环MeCN电解质溶液(0.1 M六氟磷酸六丁铵)中所有双稳开关(〜1 HIM)上执行的可变扫描速率循环伏安图(10-1500 mVs〜(-1))在温度受控的电化学电池中记录了温度(258-303 K)。第二个循环显示了在快速扫描速率和低温下记录的循环伏安法在第一个循环中观察到的两个特征的强度不同。第一个氧化峰的强度增加,第二个氧化峰的强度降低。这种变化随着扫描速率和温度的变化而系统地改变,并且被归因于CBPQT〜4的链烷和轮烷内的分子机械运动。从DNP到TTF单元的+环。将每个峰的强度分配给每个共构象的总体,并分析每个群体的扫描速率变化以获得CBPQT〜的运动动力学和热力学数据。 4+环。热活化运动在298 K时的Gibbs活化自由能经计算为轮烷的16.2 kcalmol〜(-1),以及16.7和19.2 kcalmol〜(- 1)分别基于联吡啶和二氮杂py基双稳态连环烷。这些值分别与简并轮烷和连环烷的穿梭运动和绕旋运动获得的值不同,表明详细的化学结构会影响运动速率。在所有情况下,当在电解质凝胶中表征相同的双稳态化合物时,分子机械运动均显着减慢,同时激活壁垒增加了2 kcalmol〜(-1)以上。与环境溶液无关, -组装的单层或固态聚合物凝胶-分子结构-轮烷或链烷-对于所有双稳态分子均观察到单一且通用的转换机制。

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