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Conference Paper: From Discrete Metal-Ligand Motifs to Supramolecular Assembly, Nanostructures and Functions

TitleFrom Discrete Metal-Ligand Motifs to Supramolecular Assembly, Nanostructures and Functions
Authors
Issue Date2017
PublisherRoyal Australian Chemical Institute (RACI).
Citation
6th Asian Conference on Coordination Chemistry (ACCC6) and RACI Centenary Congress, Melbourne, Australia, 23‐28 July 2017 How to Cite?
AbstractRecent works in our laboratory have shown that novel classes of light-absorbing and luminescent metal-containing molecular materials could be assembled through the use of various metal-ligand chromophoric building blocks. In this presentation, various design and synthetic strategies will be described. A number of these metal-ligand chromophoric complexes have been shown to display rich optical and luminescence behavior. Correlations of the chromophoric and luminescence behavior with the electronic and structural effects of the metal complexes have been made to elucidate their spectroscopic origins. These simple discrete metal complexes are found to undergo supramolecular assembly to give a variety of nanostructures and morphologies. By understanding the spectroscopic origin and the structure-property relationships, different approaches and assembly motifs have been employed to tune their electronic absorption and emission characteristics. Subtle changes in the microenvironment and nanostructured morphologies have led to drastic changes in both the electronic absorption and emission properties of these supramolecular assemblies. Explorations into the underlying factors that determine their spectroscopic properties and morphologies as well as their assembly mechanisms have provided new insights into the understanding of the interplay of the various intermolecular forces and interactions for the directed assembly of novel classes of metalcontaining soft materials and hybrids. The exploration into the potential applications and functions of these metal-ligand chromophores and luminophores will also be described.
DescriptionPlenary Lecture
Persistent Identifierhttp://hdl.handle.net/10722/252097

 

DC FieldValueLanguage
dc.contributor.authorYam, VWW-
dc.date.accessioned2018-04-10T08:01:11Z-
dc.date.available2018-04-10T08:01:11Z-
dc.date.issued2017-
dc.identifier.citation6th Asian Conference on Coordination Chemistry (ACCC6) and RACI Centenary Congress, Melbourne, Australia, 23‐28 July 2017-
dc.identifier.urihttp://hdl.handle.net/10722/252097-
dc.descriptionPlenary Lecture-
dc.description.abstractRecent works in our laboratory have shown that novel classes of light-absorbing and luminescent metal-containing molecular materials could be assembled through the use of various metal-ligand chromophoric building blocks. In this presentation, various design and synthetic strategies will be described. A number of these metal-ligand chromophoric complexes have been shown to display rich optical and luminescence behavior. Correlations of the chromophoric and luminescence behavior with the electronic and structural effects of the metal complexes have been made to elucidate their spectroscopic origins. These simple discrete metal complexes are found to undergo supramolecular assembly to give a variety of nanostructures and morphologies. By understanding the spectroscopic origin and the structure-property relationships, different approaches and assembly motifs have been employed to tune their electronic absorption and emission characteristics. Subtle changes in the microenvironment and nanostructured morphologies have led to drastic changes in both the electronic absorption and emission properties of these supramolecular assemblies. Explorations into the underlying factors that determine their spectroscopic properties and morphologies as well as their assembly mechanisms have provided new insights into the understanding of the interplay of the various intermolecular forces and interactions for the directed assembly of novel classes of metalcontaining soft materials and hybrids. The exploration into the potential applications and functions of these metal-ligand chromophores and luminophores will also be described.-
dc.languageeng-
dc.publisherRoyal Australian Chemical Institute (RACI). -
dc.relation.ispartof6th Asian Conference on Coordination Chemistry (ACCC6) and RACI Centenary Congress-
dc.titleFrom Discrete Metal-Ligand Motifs to Supramolecular Assembly, Nanostructures and Functions-
dc.typeConference_Paper-
dc.identifier.emailYam, VWW: wwyam@hku.hk-
dc.identifier.authorityYam, VWW=rp00822-
dc.identifier.hkuros284627-
dc.publisher.placeAustralia-

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