TY - JOUR
T1 - Single-Molecule Conductance through Hydrogen Bonds
T2 - The Role of Resonances
AU - Wimmer, Micah
AU - Palma, Julio L.
AU - Tarakeshwar, Pilarisetty
AU - Mujica, Vladimiro
N1 - Publisher Copyright:
© 2016 American Chemical Society.
PY - 2016/8/4
Y1 - 2016/8/4
N2 - The single-molecule conductance of hydrogen-bonded and alkane systems are compared in this theoretical investigation. The results indicate that for short chains, the H-bonded molecules exhibit larger conductance than the alkanes. Although earlier experimental investigations attributed this observation to a large density of states (DOS) corresponding to an occupied molecular orbital below the Fermi energy, the current work indicates the presence of a Fano resonance in the transmission function in the vicinity of the Fermi energy. The inclusion of this observation is essential in understanding the behavior of these systems. We also address the characteristics of the H-bond for transport and provide an explanation for the presence of a turnover regime wherein the conductance of the alkanes becomes larger than the H-bonded systems. Incidentally, this feature cannot be explained using a simple DOS argument.
AB - The single-molecule conductance of hydrogen-bonded and alkane systems are compared in this theoretical investigation. The results indicate that for short chains, the H-bonded molecules exhibit larger conductance than the alkanes. Although earlier experimental investigations attributed this observation to a large density of states (DOS) corresponding to an occupied molecular orbital below the Fermi energy, the current work indicates the presence of a Fano resonance in the transmission function in the vicinity of the Fermi energy. The inclusion of this observation is essential in understanding the behavior of these systems. We also address the characteristics of the H-bond for transport and provide an explanation for the presence of a turnover regime wherein the conductance of the alkanes becomes larger than the H-bonded systems. Incidentally, this feature cannot be explained using a simple DOS argument.
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U2 - 10.1021/acs.jpclett.6b01318
DO - 10.1021/acs.jpclett.6b01318
M3 - Article
AN - SCOPUS:84982840947
SN - 1948-7185
VL - 7
SP - 2977
EP - 2980
JO - Journal of Physical Chemistry Letters
JF - Journal of Physical Chemistry Letters
IS - 15
ER -