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Tensor network simulation of dynamics and finite-temperature quantum system
物理系colloquium:重离子加速器发展前沿和重大应用
Large N theory of critical Fermi surface
Temporal Entanglement in Dual-Unitary Clifford CircuitswithProbabilistic Mea...
报告题目:
Coordination-Driven Self-Assembly of Photo- and Redox-Active Metallacycles and Cages
 报告人:
Prof. Timothy R. Cook
Department of Chemistry
State University of New York (SUNY) at Buffalo
USA
报告时间:
2015-07-20 15:30
报告地点:
化学馆406会议室
主办单位:
化学系
  简介:
Abstract:

The formation of structurally complex metal-organic polygons, polyhedra, and prisms (MOPs) is greatly facilitated by self-assembly methods which furnish them in single, one-pot reactions. An ever-growing library of organic ligands (donors) and metal/organometallic complexes with substitutionally labile coordination sites (acceptors) serves as the basis for a suite of metallacycles and cages characterized by their well-defined internal cavities and predictable topologies. As the structural chemistry of these materials matures from studies emphasizing synthetic routes, a priority on functional assemblies has emerged and will be highlighted. Towards this end, the rigid organic backbones that once served solely as structural elements have more recently been exploited for their ability to impart interesting photophysical properties to their parent MOPs. Strategies include tethering pendant fluorophores through covalent coupling chemistry and selecting inherently emissive building blocks. These approaches are mirrored in efforts to obtain electrochemically active materials: redox-active moieties may be coupled to the periphery of a given MOP. Alternatively, the metal nodes may prove competent for reversible redox chemistry, motivating applications in catalysis and charge carrying devices.

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