The successful integration of 2D nanomaterials into functional devices hinges on developing fabrication methods that afford hierarchical control across length scales of the entire assembly. We demonstrate structural control over a class of crystalline 2D nanosheets assembled from collagen triple helices. By lengthening the triple helix unit through sequential additions of Pro-Hyp-Gly triads, we achieved sub-angstrom tuning over the 2D lattice. These subtle changes influence the overall nanosheet size, which can be adjusted across the mesoscale size regime. The internal structure was observed by cryo-TEM with direct electron detection, which provides real-space high-resolution images, in which individual triple helices comprising the lattice...
Nature presents various protein fibers that bridge the nanometer to micrometer regimes. These struct...
Changes in lattice structure across sub-regions of protein crystals are challenging to assess when r...
DNA is a very useful molecule for the programmed self-assembly of 2D and 3D nanoscale objects.1 The ...
Engineering free-standing 2D nanomaterials with compositional, spatial, and functional control acros...
Sequence-specific peptides have been demonstrated to self-assemble into structurally defined nanosca...
Rational design of supramolecular nanomaterials fundamentally depends upon an atomic-level understan...
ABSTRACT: We report the design of two collagen-mimetic peptide sequences, NSI and NSII, that self-as...
Obtaining three-dimensional (3D) protein and peptide crystals on demand requires a precisely orchest...
The rigid geometry and tunable chemistry of d,l-cyclic peptides makes them an intriguing building-bl...
Here we report on using small unnatural helical beta peptides to form higher order geometries. These...
Biomacromolecules such as proteins, although extremely complex in microstructure, can crystallize in...
The fabrication of novel 2D1a,b and 3D1c molecular nano-architectures is attracting increasing atten...
International audienceThe crystal structure of atomically defined colloidal II-VI semiconductor nano...
We have established a designed system comprising two peptides that coassemble to form long, thickene...
Many emerging technologies would greatly benefit from reliable methods for the production of functio...
Nature presents various protein fibers that bridge the nanometer to micrometer regimes. These struct...
Changes in lattice structure across sub-regions of protein crystals are challenging to assess when r...
DNA is a very useful molecule for the programmed self-assembly of 2D and 3D nanoscale objects.1 The ...
Engineering free-standing 2D nanomaterials with compositional, spatial, and functional control acros...
Sequence-specific peptides have been demonstrated to self-assemble into structurally defined nanosca...
Rational design of supramolecular nanomaterials fundamentally depends upon an atomic-level understan...
ABSTRACT: We report the design of two collagen-mimetic peptide sequences, NSI and NSII, that self-as...
Obtaining three-dimensional (3D) protein and peptide crystals on demand requires a precisely orchest...
The rigid geometry and tunable chemistry of d,l-cyclic peptides makes them an intriguing building-bl...
Here we report on using small unnatural helical beta peptides to form higher order geometries. These...
Biomacromolecules such as proteins, although extremely complex in microstructure, can crystallize in...
The fabrication of novel 2D1a,b and 3D1c molecular nano-architectures is attracting increasing atten...
International audienceThe crystal structure of atomically defined colloidal II-VI semiconductor nano...
We have established a designed system comprising two peptides that coassemble to form long, thickene...
Many emerging technologies would greatly benefit from reliable methods for the production of functio...
Nature presents various protein fibers that bridge the nanometer to micrometer regimes. These struct...
Changes in lattice structure across sub-regions of protein crystals are challenging to assess when r...
DNA is a very useful molecule for the programmed self-assembly of 2D and 3D nanoscale objects.1 The ...