Literature DB >> 22109275

Synthesis and structure of solution-stable one-dimensional palladium wires.

Michael G Campbell1, David C Powers, Jean Raynaud, Michael J Graham, Ping Xie, Eunsung Lee, Tobias Ritter.   

Abstract

One-dimensional metal wires are valuable materials because of their optical and electronic anisotropy, and they have potential utility in devices such as photovoltaic cells and molecular sensors. However, despite more than a century of research, only a few examples exist of well-defined one-dimensional (1D) metal wires that allow for the rational variation of conductivity. Herein we describe the first examples of 1D molecular wires supported by Pd-Pd bonds, the thin-film conductive properties of which can be altered by controlled molecular changes. Wires based on Pd(III) give semiconducting films with a modifiable bandgap, whereas wires based on Pd(2.5) give films that display metallic conductivity above 200 K: a metallic state has not been reported previously for any polymer composed of 1D metal wires. The wires are infinite in the solid state and maintain 1D structures in solution with lengths of up to 750 nm. Solution stability enables thin film coating, a requisite for device fabrication using molecular wires.

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Year:  2011        PMID: 22109275     DOI: 10.1038/nchem.1197

Source DB:  PubMed          Journal:  Nat Chem        ISSN: 1755-4330            Impact factor:   24.427


  14 in total

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8.  Bimetallic Pd(III) complexes in palladium-catalysed carbon–heteroatom bond formation.

Authors:  David C Powers; Tobias Ritter
Journal:  Nat Chem       Date:  2009-07       Impact factor: 24.427

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5.  Catalytic Methane Monofunctionalization by an Electrogenerated High-Valent Pd Intermediate.

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6.  Modulation of Band Gaps toward Varying Conductivities in Heterometallic One-Dimensional Chains by Ligand Alteration and Third Metal Insertion.

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  7 in total

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