Search Results - "Low , Paul J."
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Excited State Mixed‐Valence Complexes: From the Special Pair to the Creutz–Taube Ion and Beyond
Published in Angewandte Chemie International Edition (03-04-2023)“…Compounds and complexes with mixed‐valence electronic ground states, such as the Creutz–Taube ion, have proven to be excellent vehicles through which to study…”
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Biodegradable Materials and Green Processing for Green Electronics
Published in Advanced materials (Weinheim) (01-08-2020)“…There is little question that the “electronic revolution” of the 20th century has impacted almost every aspect of human life. However, the emergence of…”
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Chiral NH-Controlled Supramolecular Metallacycles
Published in Journal of the American Chemical Society (01-02-2017)“…Chiral NH functionalities-based discrimination is a key feature of Nature’s chemical armory, yet selective binding of biologically active molecules in…”
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Electron Delocalization in Reduced Forms of 2‑(BMes2)pyrene and 2,7-Bis(BMes2)pyrene
Published in Journal of the American Chemical Society (03-06-2015)“…Reduction of 2-(BMes2)pyrene (B 1 ) and 2,7-bis(BMes2)pyrene (B 2 ) gives rise to anions with extensive delocalization over the pyrenylene bridge and…”
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Mixed-Valence Ruthenium Complexes Rotating through a Conformational Robin-Day Continuum
Published in Chemistry : a European journal (02-06-2014)“…The conformational energy landscape and the associated electronic structure and spectroscopic properties (UV/Vis/near‐infrared (NIR) and IR) of three formally…”
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Molecular electronics: an Australian perspective
Published in Critical studies in media communication (01-01-2023)“…Molecular electronics is a scientific endeavour that, for 60 years, has offered the promise of new technologies in which molecules integrate with, if not…”
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Redox‐Addressable Single‐Molecule Junctions Incorporating a Persistent Organic Radical
Published in Angewandte Chemie International Edition (07-06-2022)“…Integrating radical (open‐shell) species into non‐cryogenic nanodevices is key to unlocking the potential of molecular electronics. While many efforts have…”
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Iron versus Ruthenium: Clarifying the Electronic Differences between Prototypical Mixed-Valence Organometallic Butadiyndiyl Bridged Molecular Wires
Published in Organometallics (14-05-2018)“…The electronic structures of the prototypical bimetallic buta-1,3-diyn-1,4-diyl-bridged radical cation complexes [{M(dppe)Cp′}2(μ-CCCC)]+ (M= Fe, Cp′ = Cp*…”
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Influence of P-Bonded Bulky Substituents on Electronic Interactions in Ferrocenyl-Substituted Phospholes
Published in Chemistry : a European journal (03-08-2015)“…2,5‐Diferrocenyl‐1‐Ar‐1H‐phospholes 3 a–e (Ar=phenyl (a), ferrocenyl (b), mesityl (c), 2,4,6‐triphenylphenyl (d), and 2,4,6‐tri‐tert‐butylphenyl (e)) have been…”
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Rational Control of Conformational Distributions and Mixed-Valence Characteristics in Diruthenium Complexes
Published in Chemistry : a European journal (02-11-2016)“…The electronic characteristics of mixed‐valence complexes are often inferred from the shape of the inter‐valence charge transfer (IVCT) band, which usually…”
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Combined Spectroscopic and Quantum Chemical Study of [trans-Ru(CCC6H4R1‑4)2(dppe)2] n+ and [trans-Ru(CCC6H4R1‑4)(CCC6H4R2‑4)(dppe)2] n+ (n = 0, 1) Complexes: Interpretations beyond the Lowest Energy Conformer Paradigm
Published in Organometallics (22-09-2014)“…The reaction of trans-RuCl(CCC6H4R1-4)(dppe)2 (2: R1 = Me (a), C5H11 (b), OMe (c), CO2Me (d), NO2 (e), CCSiMe3 (f), CCBut (g), NH2 (h)), prepared in situ…”
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Bis-Tridentate Iridium(III) Phosphors Bearing Functional 2‑Phenyl-6-(imidazol-2-ylidene)pyridine and 2‑(Pyrazol-3-yl)-6-phenylpyridine Chelates for Efficient OLEDs
Published in Organometallics (13-06-2016)“…Proligands to the monoanionic tridentate chelate 4-(tert-butyl)-2-(2,4-difluorophenyl)-6-(3-isopropyl-imidazol-2-ylidene)pyridine ((phpyim-H2)PF6) and…”
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Simultaneous Bridge-Localized and Mixed-Valence Character in Diruthenium Radical Cations Featuring Diethynylaromatic Bridging Ligands
Published in Journal of the American Chemical Society (16-11-2011)“…A series of bimetallic ruthenium complexes [{Ru(dppe)Cp*}2(μ-CCArCC)] featuring diethynylaromatic bridging ligands (Ar = 1,4-phenylene, 1,4-naphthylene,…”
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Experimental and Computational Studies of the Single-Molecule Conductance of Ru(II) and Pt(II) trans-Bis(acetylide) Complexes
Published in Organometallics (12-09-2016)“…The single-molecule conductance of metal complexes of the general forms trans-Ru(CCArCCY)2(dppe)2 and trans-Pt(CCArCCY)2(PPh3)2 (Ar =…”
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Single‐Molecule Conductance Studies of Organometallic Complexes Bearing 3‐Thienyl Contacting Groups
Published in Chemistry : a European journal (10-02-2017)“…The compounds and complexes 1,4‐C6H4(C≡C‐cyclo‐3‐C4H3S)2 (2), trans‐[Pt(C≡C‐cyclo‐3‐C4H3S)2(PEt3)2] (3), trans‐[Ru(C≡C‐cyclo‐3‐C4H3S)2(dppe)2] (4;…”
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Probing the Electronic Structure of Dinuclear Carbon-Rich Complexes Containing an Octa-3,5-diene-1,7-diyndiyl Bridging Ligand
Published in Inorganics (01-01-2024)“…One electron oxidation of the monometallic alkenylacetylide complexes [Ru{C≡CC(R)=CH2}(dppe)Cp*] (1) and [Ru{C≡CC(R)=CH2}Cl(dppe)2] (2) (R = Ph (a); R =…”
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Understanding the charge transport properties of redox active metal-organic conjugated wires
Published in Chemical science (Cambridge) (2018)“…Layer-by-layer assembly of the dirhodium complex [Rh (O CCH ) ] (Rh ) with linear , '-bidentate ligands pyrazine (L ) or 1,2-bis(4-pyridyl)ethene (L ) on a…”
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Twists and turns: Studies of the complexes and properties of bimetallic complexes featuring phenylene ethynylene and related bridging ligands
Published in Coordination chemistry reviews (01-05-2013)“…[Display omitted] ► The use of spectroelectrochemical based studies and DFT computations to probe electronic structure in a range of open-shell ligand-bridged…”
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Synthesis, Electrochemistry, and Single-Molecule Conductance of Bimetallic 2,3,5,6-Tetra(pyridine-2-yl)pyrazine-Based Complexes
Published in Inorganic chemistry (01-06-2015)“…The ligands 4′-(4-(methylthio)phenyl)-2,2′:6′,2″-terpyridine (L 1 ), 4′-((4-(methylthio)phenyl)ethynyl)- 2,2′:6′,2″-terpyridine (L 2 ), and bis(tridentate)…”
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All‐Carbon Electrode Molecular Electronic Devices Based on Langmuir–Blodgett Monolayers
Published in Small (Weinheim an der Bergstrasse, Germany) (01-02-2017)“…Nascent molecular electronic devices, based on monolayer Langmuir–Blodgett films sandwiched between two carbonaceous electrodes, have been prepared. Tightly…”
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