collaborators

6 papers

physics.comp-ph2026

diffpy.morph: Python tools for model independent comparisons between sets of 1D functions

Andrew Yang, Christopher L. Farrow, Pavol Juhás +22

diffpymorph addresses a need to gain scientific insights from 1D scientific spectra in model independent ways. A powerful approach for this is to take differences between pairs…

cond-mat.mtrl-sci2026

Atomic Alignment in PbS Nanocrystal Superlattices with Compact Inorganic Ligands via Reversible Oriented Attachment of Nanocrystals

Ahhyun Jeong, Aditya N. Singh, Josh Portner +12

Nanocrystals (NCs) serve as versatile building blocks for the creation of functional materials, with NC self-assembly offering opportunities to enable novel material properties. He…

cond-mat.mes-hall2024

Ultrafast symmetry control in photoexcited quantum dots

Burak Guzelturk, Joshua Portner, Justin Ondry +23

Symmetry control is essential for realizing unconventional properties, such as ferroelectricity, nonlinear optical responses, and complex topological order, thus it holds promise f…

cond-mat.soft2024

Colloidal dispersions of sterically and electrostatically stabilized PbS quantum dots: the effect of stabilization mechanism on structure factors, second virial coefficients, and film-forming properties

Ahhyun Jeong, Josh Portner, Christian P. N. Tanner +7

Electrostatically stabilized nanocrystals (NCs) and, in particular, quantum dots (QDs) hold promise for forming strongly coupled superlattices due to their compact and electronical…

cond-mat.soft20241 cited

Origins of suppressed self-diffusion of nanoscale constituents of a complex liquid

Christian P. N. Tanner, Vivian R. K. Wall, Mumtaz Gababa +25

Understanding and ultimately controlling the transformations and properties of nanoscale systems, from proteins to synthetic nanomaterial assemblies, is limited by the inability to…

cond-mat.soft2024

Enhancing nanoscale charged colloid crystallization near a metastable liquid binodal

Christian P. N. Tanner, Vivian R. K. Wall, Joshua Portner +17

Bottom-up assembly of nanocrystals (NCs) into ordered arrays, or superlattices (SLs), is a promising route to design materials with new functionalities, but the degree of control o…