---
res:
  bibo_abstract:
  - Modern experimental methods in programmable self-assembly make it possible to
    precisely design particle concentrations, shapes and interactions. However, more
    physical insight is needed before we can take full advantage of this vast design
    space to assemble nanostructures with complex form and function. Here we show
    how a substantial part of this design space can be quickly and comprehensively
    understood by identifying a class of thermodynamic constraints that act on it.
    These thermodynamic constraints form a high-dimensional convex polyhedron that
    determines which nanostructures can be assembled at high equilibrium yield and
    reveals limitations that govern the coexistence of structures. We validate our
    predictions through detailed, quantitative assembly experiments of nanoscale particles
    synthesized using DNA origami. Our results uncover physical relationships underpinning
    many-component programmable self-assembly in equilibrium and form the basis for
    robust inverse design, applicable to various systems from biological protein complexes
    to synthetic nanomachines.@eng
  bibo_authorlist:
  - foaf_Person:
      foaf_givenName: Maximilian
      foaf_name: Hübl, Maximilian
      foaf_surname: Hübl
      foaf_workInfoHomepage: http://www.librecat.org/personId=5eb8629e-15b2-11ec-abd3-e6f3e5e01f32
  - foaf_Person:
      foaf_givenName: Thomas E.
      foaf_name: Videbæk, Thomas E.
      foaf_surname: Videbæk
  - foaf_Person:
      foaf_givenName: Daichi
      foaf_name: Hayakawa, Daichi
      foaf_surname: Hayakawa
  - foaf_Person:
      foaf_givenName: W. Benjamin
      foaf_name: Rogers, W. Benjamin
      foaf_surname: Rogers
  - foaf_Person:
      foaf_givenName: Carl Peter
      foaf_name: Goodrich, Carl Peter
      foaf_surname: Goodrich
      foaf_workInfoHomepage: http://www.librecat.org/personId=EB352CD2-F68A-11E9-89C5-A432E6697425
    orcid: 0000-0002-1307-5074
  bibo_doi: 10.1038/s41567-025-03120-3
  dct_date: 2026^xs_gYear
  dct_isPartOf:
  - http://id.crossref.org/issn/1745-2473
  - http://id.crossref.org/issn/1745-2481
  dct_language: eng
  dct_publisher: Springer Nature@
  dct_title: A polyhedral structure controls programmable self-assembly@
...
