Self-assembly of amphiphilic small molecules in water leads to nanostructures with customizable structure–property relationships arising from their tunable chemistries …
Under physiological conditions, proteins continuously undergo structural fluctuations on different timescales. Some conformations are only sparsely populated, but still play a key …
The dynamic behavior of biological materials is central to their functionality, suggesting that interfacial dynamics could also mediate the activity of chemical events at the surfaces of …
Self-assembly of small molecules in water provides a powerful route to nanostructures with pristine molecular organization and small dimensions (< 10 nm). Such assemblies represent …
Understanding thermal phase behavior within nanomaterials can inform their rational design for medical technologies like drug delivery systems and vaccines, as well as for energy …
The self-assembly of amphiphilic molecules in water has led to a wide variety of nanostructures with diverse applications. Many nanostructures are stabilized by strong …
Self-assembled nanoribbons from small molecule amphiphiles with a structural domain to impart mechanical stability and chelating head groups are reported for the remediation of …
Background: Rheumatoid arthritis (RA) is a chronic autoimmune disease that causes inflammation, pain, stiffness, and swelling in the affected joints typically with a symmetrical …
Self-assembly of small molecules in water provides a bottom-up strategy to generate highly ordered nanostructures with dimensions on molecular (< 10 nm) length scales. However …