Metabolite materials are extremely useful to obtain functional bioinspired assemblies with unique physical properties for various applications in the fields of material science, engineering, and medicine by self-assembly of the simplest biological building blocks. Supramolecular co-assembly has recently emerged as a promising extended approach to further expand the conformational space of metabolite assemblies in terms of structural and functional complexity. Yet, the design of synergistically co-assembled amino acids to produce tailor-made functional architectures is still challenging. Herein, we propose a design rule to predict the supramolecular co-assembly of naturally occurring amino acids based on their interlayer separation distances...
Ordered supramolecular polymers are one-dimensional (1D) nanostructures formed by spontaneous associ...
Nature has long been a source of fascination, inspiration and humility for chemists. Despite our bes...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
Self-assembly of highly important biomolecules, such as proteins and peptides, has attracted tremend...
Biomolecules, such as proteins and peptides, can be self-assembled. They are widely distributed, eas...
peer-reviewedThe physical characteristics of supramolecular assemblies composed of small building bl...
Self-assembling peptides form a prominent class of supramolecular materials with in general good bio...
Hierarchical self-assembly and crystallization with long-range ordered spatial arrangement is ubiqui...
Molecular self-assembly is a key function in biology and has been developed as an elegant technique ...
Minimalistic peptides composed of d - and l -amino acids are attractive building blocks for function...
Several phenomena occurring throughout the life of living things start and end with proteins. Variou...
Design and synthesis of novel supramolecular architectures is an interesting area of research in the...
Recent advances in computational methods have enabled the predictive design of self-assembling prote...
Abstract. We want to address the following problem of hierarchical modeling of the structure of biop...
Co-assembling peptides can be crafted into supramolecular biomaterials for use in biotechnological a...
Ordered supramolecular polymers are one-dimensional (1D) nanostructures formed by spontaneous associ...
Nature has long been a source of fascination, inspiration and humility for chemists. Despite our bes...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
Self-assembly of highly important biomolecules, such as proteins and peptides, has attracted tremend...
Biomolecules, such as proteins and peptides, can be self-assembled. They are widely distributed, eas...
peer-reviewedThe physical characteristics of supramolecular assemblies composed of small building bl...
Self-assembling peptides form a prominent class of supramolecular materials with in general good bio...
Hierarchical self-assembly and crystallization with long-range ordered spatial arrangement is ubiqui...
Molecular self-assembly is a key function in biology and has been developed as an elegant technique ...
Minimalistic peptides composed of d - and l -amino acids are attractive building blocks for function...
Several phenomena occurring throughout the life of living things start and end with proteins. Variou...
Design and synthesis of novel supramolecular architectures is an interesting area of research in the...
Recent advances in computational methods have enabled the predictive design of self-assembling prote...
Abstract. We want to address the following problem of hierarchical modeling of the structure of biop...
Co-assembling peptides can be crafted into supramolecular biomaterials for use in biotechnological a...
Ordered supramolecular polymers are one-dimensional (1D) nanostructures formed by spontaneous associ...
Nature has long been a source of fascination, inspiration and humility for chemists. Despite our bes...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...