Modular programming of interaction and geometric specificity enables assembly of complex DNA origami nanostructures
R
Rupam Saha
(Martin A. Fisher School of Physics)
D
Daichi Hayakawa
(Martin A. Fisher School of Physics)
T
Thomas E. Videbæk
(Martin A. Fisher School of Physics)
M
Mason Price
(Martin A. Fisher School of Physics)
W
Wei-Shao Wei
J
Juanita Pombo
(Thomas Lord Department of Mechanical Engineering and Materials Science)
D
Daniel Duke
G
Gaurav Arya
(Thomas Lord Department of Mechanical Engineering and Materials Science)
G
Gregory M. Grason
(Department of Polymer Science and Engineering)
W
W. Benjamin Rogers
(Martin A. Fisher School of Physics)
S
Seth Fraden
(Martin A. Fisher School of Physics)
Article Details
Journal
Nature Communications
Volume / Issue
Vol. 16, Issue 1
Published
December 11, 2025
ISSN
2041-1723
Publisher
Nature Portfolio
Authors (11)
R
Rupam Saha
Martin A. Fisher School of Physics
D
Daichi Hayakawa
Martin A. Fisher School of Physics
T
Thomas E. Videbæk
Martin A. Fisher School of Physics
M
Mason Price
Martin A. Fisher School of Physics
W
Wei-Shao Wei
J
Juanita Pombo
Thomas Lord Department of Mechanical Engineering and Materials Science
D
Daniel Duke
G
Gaurav Arya
Thomas Lord Department of Mechanical Engineering and Materials Science
G
Gregory M. Grason
Department of Polymer Science and Engineering
W
W. Benjamin Rogers
Martin A. Fisher School of Physics
S
Seth Fraden
Martin A. Fisher School of Physics
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