English

Absolute and arbitrary orientation of single molecule shapes

Applied Physics 2018-08-15 v1 Mesoscale and Nanoscale Physics Soft Condensed Matter Atomic and Molecular Clusters Biological Physics

Abstract

DNA origami is a modular platform for the combination of molecular and colloidal components to create optical, electronic, and biological devices. Integration of such nanoscale devices with microfabricated connectors and circuits is challenging: large numbers of freely diffusing devices must be fixed at desired locations with desired alignment. We present a DNA origami molecule whose energy landscape on lithographic binding sites has a unique maximum. This property enables device alignment within 3.2^{\circ} on SiO2_2. Orientation is absolute (all degrees of freedom are specified) and arbitrary (every molecule's orientation is independently specified). The use of orientation to optimize device performance is shown by aligning fluorescent emission dipoles within microfabricated optical cavities. Large-scale integration is demonstrated via an array of 3,456 DNA origami with 12 distinct orientations, which indicates the polarization of excitation light.

Keywords

Cite

@article{arxiv.1808.04544,
  title  = {Absolute and arbitrary orientation of single molecule shapes},
  author = {Ashwin Gopinath and Chris Thachuk and Anya Mitskovets and Harry A. Atwater and David Kirkpatrick and Paul W. K. Rothemund},
  journal= {arXiv preprint arXiv:1808.04544},
  year   = {2018}
}

Comments

8 page main text, 24 page supplementary section

R2 v1 2026-06-23T03:33:02.043Z