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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Supramolecular Photochemistry in Solution and on Surfaces: Encapsulation and Dynamics of Guest Molecules and Communication between Encapsulated and Free Molecules
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Supramolecular Photochemistry in Solution and on Surfaces: Encapsulation and Dynamics of Guest Molecules and Communication between Encapsulated and Free Molecules

机译:溶液中和表面上的超分子光化学:客体分子的包封和动力学以及包封和自由分子之间的通讯

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Supramolecular assemblies that help to pre-organize reactant molecules have played an important role in the development of concepts related to the control of excited-state processes. This has led to a persistent search for newer supramolecular systems (hosts), and this review briefly presents our work with octa acid (OA) to a host to control excited-state processes of organic molecules. Octa acid, a water-soluble host, forms 1:1, 2:1, and 2:2 (host-guest) complexes with various organic molecules. A majority of the guest molecules are enclosed within a capsule made up of two molecules of OA whereas OA by itself remains as a monomer or aggregates. Luminescence and H-1 NMR spectroscopy help to characterize the structure and dynamics of these host-guest complexes. The guest molecule as well as the host guest complex as a whole undergoes various types of motion, suggesting that the guests possess freedom inside the confined space of the octa acid capsule. In addition, the confined guests are not isolated but are able to communicate (energy, electron, and spin) with molecules present closer to the capsule. The host guest complexes are stable even on solid surfaces such as silica, clay, alpha-Zr phosphate, TiO2, and gold nanoparticles. This opens up new opportunities to explore the interaction between confined guests and active surfaces of TiO2 and gold nanoparticles. In addition, this allows the possibility of performing energy and electron transfer between organic molecules that do not adsorb on inert surfaces of silica, clay, or alpha-Zr phosphate. The results summarized here, in addition to providing a fundamental understanding of the behavior of molecules in a confined space provided by the host OA, are likely to have a long7range effect on the capture and release of solar energy.
机译:帮助预组织反应物分子的超分子组装在与激发态过程控制有关的概念的发展中起着重要作用。这导致人们不断寻找新的超分子系统(宿主),而本综述简要地介绍了将八酸(OA)应用于宿主以控制有机分子的激发态过程的工作。水溶性主体八酸与各种有机分子形成1:1、2:1和2:2(主体-客体)复合物。大多数客体分子被封闭在由两个OA分子组成的胶囊中,而OA本身仍作为单体或聚集体保留。发光和H-1 NMR光谱有助于表征这些宿主-客体复合物的结构和动力学。客体分子以及宿主客体复合物整体上经历各种类型的运动,这表明客体在辛酸胶囊的密闭空间内具有自由。此外,受约束的客人不是孤立的,而是能够与较接近胶囊的分子进行交流(能量,电子和自旋)。即使在诸如二氧化硅,粘土,α-Zr磷酸盐,TiO2和金纳米颗粒的固体表面上,主体客体配合物也稳定。这为探索封闭的客体与TiO2和金纳米颗粒的活性表面之间的相互作用提供了新的机会。另外,这允许在不吸附在二氧化硅,粘土或α-Zr磷酸盐的惰性表面上的有机分子之间进行能量和电子转移的可能性。此处总结的结果除了提供对宿主OA提供的有限空间中分子行为的基本了解之外,还可能对太阳能的捕获和释放产生长期影响。

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