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Design, Synthesis, Photophysics and Self-Assembly Study of Platinum (II) Terpyridine Complexes and Their Utilization as Stimuli-Responsive Smart Materials and Probes for Molecules and Macromolecules of Biological Interest

Design, Synthesis, Photophysics and Self-Assembly Study of Platinum (II) Terpyridine Complexes and Their Utilization as Stimuli-Responsive Smart Materials and Probes for Molecules and Macromolecules of Biological Interest
Author: Yik-Sham Clive Chung
Publisher: Open Dissertation Press
Total Pages:
Release: 2017-01-27
Genre:
ISBN: 9781361368909

Download Design, Synthesis, Photophysics and Self-Assembly Study of Platinum (II) Terpyridine Complexes and Their Utilization as Stimuli-Responsive Smart Materials and Probes for Molecules and Macromolecules of Biological Interest Book in PDF, ePub and Kindle

This dissertation, "Design, Synthesis, Photophysics and Self-assembly Study of Platinum (II) Terpyridine Complexes and Their Utilization as Stimuli-responsive Smart Materials and Probes for Molecules and Macromolecules of Biological Interest" by Yik-sham, Clive, Chung, 鍾亦琛, was obtained from The University of Hong Kong (Pokfulam, Hong Kong) and is being sold pursuant to Creative Commons: Attribution 3.0 Hong Kong License. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation. All rights not granted by the above license are retained by the author. Abstract: A series of water-soluble platinum(II) terpyridine complexes with functionalized alkynyl ligands and a boronic acid-containing polymer, PAAPBA, have been synthesized and characterized. The photophysical and electrochemical properties of all the platinum(II) complexes have been studied. Some of the complexes have been demonstrated to show ground-state aggregation in organic solvents and aqueous solutions at high concentrations, leading to Pt...Pt and/or π-π interactions and hence the emergence of metal-metal-to-ligand charge transfer (MMLCT) transitions in both the UV-visible and emission spectra. The induced self-assembly of [Pt(tpy)(C≡CC6H4-CH2NMe3-4)](OTf)2 by PAAPBA has been explored for the development of glucose sensing protocols and α-glucosidase assay by monitoring the triplet metal-metal-to-ligand charge transfer (3MMLCT) emission in the near-infrared (NIR) region. [Pt(tpy){C≡CC6H4- {NHC(=NH2])(NH2)}-4}](OTf)2 has been observed to undergo induced aggregation in the presence of citrate, with good selectivity over other mono- and dicarboxylates in the tricarboxylic acid (TCA) cycle. Enzymatic activity of citrate lyase has also been probed by the emission spectral changes of the complex in the NIR region. A series of water-soluble alkynylplatinum(II) terpyridine complexes and water-soluble conjugated polyelectrolytes (CPEs) have been synthesized and characterized. The UV-vis absorption and emission properties of the platinum(II) complexes and CPEs have been investigated in organic solvents and/or aqueous buffer solutions. The electrochemical properties and ground-state aggregation at high concentrations of the platinum(II) complexes have also been examined. Two-component ensembles containing selected platinum(II) complexes and PPE-SO3- have been studied, and Forster resonance energy transfer (FRET) has been demonstrated from the PPE-SO3- donor to the aggregated complexes as acceptors. The ensemble containing PPE-SO3- and [Pt(tpy)(C≡CC6H4CH2NMe3-4)](OTf)2 has been employed for a "proof-of-principle" label-free detection of human serum albumin (HSA) in pH 3 buffer solutions with high selectivity and sensitivity, while another ensemble containing PPE-SO3- and [Pt{tpy(C6H4CH2NMe3-4)-4'}(C≡CC6H5)](OTf)2 has been utilized for selective label-free detection of G-quadruplex structure of the human telomeric DNA in physiological buffer solutions. A series of water-soluble platinum(II) terpyridine complexes with stimuli-responsive alkynyl ligands and a series of water-soluble platinum(II) metallosupramolecular triblock copolymers have been synthesized and characterized. The photophysical and electrochemical properties as well as the ground-state aggregation of the complexes have been investigated. Some of them have been found to show different electronic absorption and emission properties in aqueous solution at different pHs due to aggregation/deaggregation of the complexes. One of the complexes has been employed for live-cell imaging experiments to locate acidic organelles, such as lysosomes, in MDCK cells. The water-soluble platinum(II) metallosupramolecular triblock copolymers have been found to show an increase in 3MMLCT emission intensity in the red-NIR region with temperature, which has been attribu


Design and Synthesis of Luminescent Mono- And Dinuclear Platinum(ii) Alkynyl Terpyridine Complexes

Design and Synthesis of Luminescent Mono- And Dinuclear Platinum(ii) Alkynyl Terpyridine Complexes
Author: Hoi-Yiu Chan
Publisher: Open Dissertation Press
Total Pages:
Release: 2017-01-27
Genre:
ISBN: 9781361426180

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This dissertation, "Design and Synthesis of Luminescent Mono- and Dinuclear Platinum(II) Alkynyl Terpyridine Complexes: From Photophysics to Aggregation and Self-assembly" by Hoi-yiu, Chan, 陳凱耀, was obtained from The University of Hong Kong (Pokfulam, Hong Kong) and is being sold pursuant to Creative Commons: Attribution 3.0 Hong Kong License. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation. All rights not granted by the above license are retained by the author. Abstract: Abstract of thesis entitled DESIGN AND SYNTHESIS OF LUMINESCENT MONO- AND DINUCLEAR PLATINUM(II) ALKYNYL TERPYRIDINE COMPLEXES - FROM PHOTOPHYSICS TO AGGREGATION AND SELF-ASSEMBLY submitted by CHAN Hoi Yiu for the degree of Doctor of Philosophy at The University of Hong Kong in August 2006 A series of mononuclear alkynylplatinum(II) terpyridyl complexes, [Pt(trpy)({C{ C} C H )]PF, [Pt(trpy)({C{ C} C H CF -4)]PF, n 6 5 6 n 6 4 3 6 [Pt(trpy)({C{ C} C H CH -4)]PF, and [Pt( Bu trpy)(C{ C C{ C C H )]PF (n = n 6 4 3 6 3 6 5 6 2, 3), have been synthesized. The X-ray crystal structures of the two forms of [Pt(trpy)(C{ C C{ C C H )]PF, [Pt(trpy)(C{ C C{ C C{ C C H CH -4)]PF and 6 5 6 6 4 3 6 [Pt( Bu trpy)(C{ C C{ C C H )]PF have been determined. Dinuclear and 3 6 5 6 trinuclear alkynylplatinum(II) terpyridyl complexes, [1,4- {Pt(trpy)C{ C} C H ](OTf), [1,4-{Pt( Bu trpy)C{ C} C H ](OTf), [2,5- 2 6 4 2 3 2 6 4 2 {Pt(trpy)C{ C} C H S](OTf), [2,5-{Pt( Bu trpy)C{ C} C H S](OTf) and [1,3,5- 2 4 2 2 3 2 4 2 2 {Pt( Bu trpy)C{ C} C H ](OTf) have been successfully synthesized. The X-ray 3 3 6 3 3t crystal structure of [1,4-{Pt( Bu trpy)C{ C} C H ](OTf) has also been 3 2 6 4 2 determined. The luminescence properties of these complexes have been studied and their lowest-lying excited states in fluid solution and in the glass state were tentatively assigned as admixture of MLCT [dS (Pt)ĺ S *(trpy)] and LLCT [S (C{ C)ĺ S *(trpy)] origin, whereas the low-energy emissions in the solid state were attributed to triplet metal metal-to-ligand charge transfer ( MMLCT) phosphorescence, resulting from significant Pt---Pt interactions in the solid state. Besides, a series of luminescent platinum(II) terpyridyl alkynyl complexes with different counter anions, [Pt(trpy)(C{ C C{ C H)]X (X = OTf, PF, ClO, 6 4 BF, BPh ), [Pt(trpy)(C{ C C H )]X (X = OTf, PF, ClO, BF ) and 4 4 6 5 6 4 4 complexes with various substituents on the alkynyl and terpyridyl ligands, [Pt(trpy)(C{ CC H OCH-4)]OTf, [Pt(4'-CH O trpy)(C{ C C H )]OTf, 6 4 3 3 6 5 [Pt( Bu trpy)(C{ C C{ CH)]OTf, [Pt(trpy)(C{ CC H {CH NMe }-4)](OTf), 3 6 4 2 3 2 [Pt(trpy)(C{ C C{ C CH NMe )](OTf) and [Pt(trpy)(C{ C C{ C CH OH)]OTf 2 3 2 2 have been synthesized and their photophysical properties have been stuided. The X-ray crystal structure of [Pt(trpy)(C{ C C H )]ClO and 6 5 4 [Pt( Bu trpy)(C{ C C{ C H)]OTf have been determined. The solid-state absorption and emission spectra showed low-energy bands, which were assigned as derived from MMLCT origin. Solvent-induced aggregation studies of these complexes in solution showed that the color of the aggregates could be very different for different counter-ions, indicating that counter-ions played an important role in governing the degree of aggregation and the extent of interactions within these aggregates. Addition of various anions to solutions of [Pt(trpy)(C{ C C{ C H)]X (X = OTf, PF ) produced anion-induced color 6changes upon solvent-induced aggregation, showing that these complexes might serve as potential colorimetric anion probes. The effect of temperature on the aggregation properties of the complexes has also been explored. New low-energy absorption and emission bands were found upon a reduction of temperature, attributable to the formation o


Design, Synthesis, Photophysics and Self-assembly Study of Platinum (II) Terpyridine Complexes and Their Utilization as Stimuli-responsive Smart Materials and Probes for Molecules and Macromolecules of Biological Interest

Design, Synthesis, Photophysics and Self-assembly Study of Platinum (II) Terpyridine Complexes and Their Utilization as Stimuli-responsive Smart Materials and Probes for Molecules and Macromolecules of Biological Interest
Author: Yik-sham Chung (Clive)
Publisher:
Total Pages: 774
Release: 2013
Genre: Complex compounds
ISBN:

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Design, Synthesis, Photophysics and Self-assembly Study of Platinum (II) Terpyridine Complexes and Their Utilization as Stimuli-responsive Smart Materials and Probes for Molecules and Macromolecules of Biological Interest

Design, Synthesis, Photophysics and Self-assembly Study of Platinum (II) Terpyridine Complexes and Their Utilization as Stimuli-responsive Smart Materials and Probes for Molecules and Macromolecules of Biological Interest
Author: Yik-sham Chung (Clive)
Publisher:
Total Pages: 0
Release: 2013
Genre: Complex compounds
ISBN:

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Design and Synthesis of Luminescent Coumarin-Containing Platinum (II) Terpyridine Alkynyl Complexes and Their Spectroscopic, Photophysical and Binding Studies

Design and Synthesis of Luminescent Coumarin-Containing Platinum (II) Terpyridine Alkynyl Complexes and Their Spectroscopic, Photophysical and Binding Studies
Author: Tsz-Chung Alvin Liu
Publisher: Open Dissertation Press
Total Pages:
Release: 2017-01-26
Genre:
ISBN: 9781361303887

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This dissertation, "Design and Synthesis of Luminescent Coumarin-containing Platinum (II) Terpyridine Alkynyl Complexes and Their Spectroscopic, Photophysical and Binding Studies" by Tsz-chung, Alvin, Liu, 廖子衝, was obtained from The University of Hong Kong (Pokfulam, Hong Kong) and is being sold pursuant to Creative Commons: Attribution 3.0 Hong Kong License. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation. All rights not granted by the above license are retained by the author. DOI: 10.5353/th_b4716835 Subjects: Platinum compounds - Synthesis Complex compounds - Synthesis Pyridine Alkynes


Synthesis, Structure, Photophysics, and Biological Activity of Platinum (II) Complexes

Synthesis, Structure, Photophysics, and Biological Activity of Platinum (II) Complexes
Author: Dileep Atchyuth Kumar Vezzu
Publisher:
Total Pages: 291
Release: 2013
Genre: Platinum compounds
ISBN:

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The synthesis, structure, and photophysical properties of luminescent platinum (II) complexes with different coordination patterns, (C^C*N^N), (N^C*N), (N^N*C) and (N^N^C) are reported, where "C^N or N^N" denotes a bidentate coordination to the platinum to form a five-membered metallacycle and "C*N" denotes a bidentate coordination to the platinum to form a six-membered metallacycle. Sixteen cyclometalated platinum complexes have been synthesized with different coordination patterns, which include six complexes with tridentate N^C*N cyclometalating ligands (13, 14, 15, 16, 17, and 18), five complexes with N^N*C cyclometalating ligands (19a, 19b, 20a, 20b, and 24), three complexes with N^N^C cyclometalating ligands (21a, 21b, and 29) and two complexes with tetradentate C^C*N^N cyclometalating ligands (33 and 34). The structures of the platinum complexes 13, 15, 16, 18, 19a, 19b, 20a, 21a, 21b, 24, 29, 33, and 39 were determined by single crystal X-ray diffraction. In platinum complexes with five-six membered metallacycle (15, 16, 18, 19a, 19b, 20a, 24, and 39), the square geometry of the complexes is improved when compared to that of platinum complexes with five-five membered metallacycle as the biting angle is increased. The tetradentate coordination (C^C*N^N), square planar geometry of complex 33 are revealed from its X-ray crystal structure. The DFT calculations have been carried out on complexes 13, 14, 15, 16, 17, 18, 33, and 34 to examine the molecular orbital character of the complexes, which are used in interpreting the electronic spectra of the complexes. The photophysical properties of the platinum complexes were studied and a majority of the complexes were highly emissive in solution at room temperature. Complex 13 exhibited the highest quantum yield (65%) among all of the complexes. Self quenching was not observed in a majority of the platinum complexes at lower concentrations. The cytotoxicity (IC50) of the complexes in three lung cancerous cell lines and one prostate cancer cell line were determined by MTT assay. The toxic platinum complexes induced the cell death by triggering apoptosis. The interactions of the platinum complexes with plasmid and calf thymus DNA were studied. Activation of caspase -7, PARP, and p53 were also observed in RV1 and HCC827 cell lines when treated with platinum complexes. Complexes 35, 37 and 38 were more potent than the clinically approved drug, cis-platin.