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        <dc:title>Tunable charge transport in single-molecule junctions via electrolytic gating</dc:title>
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        <bibo:abstract>We modulate the conductance of electrochemically inactive molecules in single-molecule junctions using an electrolytic gate to controllably tune the energy level alignment of the system. Molecular junctions that conduct through their highest occupied molecular orbital show a decrease in conductance when applying a positive electrochemical potential, and those that conduct though their lowest unoccupied molecular orbital show the opposite trend. We fit the experimentally measured conductance data as a function of gate voltage with a Lorentzian function and find the fitting parameters to be in quantitative agreement with self-energy corrected density functional theory calculations of transmission probability across single-molecule junctions. This work shows that electrochemical gating can directly modulate the alignment of the conducting orbital relative to the metal Fermi energy, thereby changing the junction transport properties.</bibo:abstract>
        <bibo:volume>14</bibo:volume>
        <bibo:issue>3</bibo:issue>
        <bibo:startPage>1400-1404</bibo:startPage>
        <bibo:endPage>1400-1404</bibo:endPage>
        <dc:publisher>American Chemical Society</dc:publisher>
        <bibo:doi rdf:resource="10.1021/nl404459q" />
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