Searching the Hearts of Graphene-like Molecules for Simplicity, Sensitivity, and Logic
Author(s):
Sara Sangtarash, Cancan Huang, Hatef Sadeghi, Gleb Sorohhov, Jürg Hauser, Thomas Wandlowski, Wenjing Hong, Silvio Decurtins, Shi-Xia Liu, Colin J. Lambert
Journal:
Journal of the American Chemical Society
Year:
2015
Volume:
137
Pages
11425-11431
DOI:
10.1021/jacs.5b06558
Abstract:
If quantum interference patterns in the hearts of polycyclic aromatic hydrocarbons could be isolated and manipulated, then a significant step toward realizing the potential of single-molecule electronics would be achieved. Here we demonstrate experimentally and theoretically that a simple, parameter-free, analytic theory of interference patterns evaluated at the mid-point of the HOMO–LUMO gap (referred to as M-functions) correctly predicts conductance ratios of molecules with pyrene, naphthalene, anthracene, anthanthrene, or azulene hearts. M-functions provide new design strategies for identifying molecules with phase-coherent logic functions and enhancing the sensitivity of molecular-scale interferometers.