We demonstrate a generalizable strategy to use the relative trajectories of pairs and groups of nanocrystals, and potentially other nanoscale objects, moving in solution which can now be obtained by in situ liquid phase transmission electron microscopy (TEM) to determine the interaction potentials between nanocrystals. Such nanoscale interactions are crucial for collective behaviors and applications of synthetic nanocrystals and natural biomolecules, but have been very challenging to measure in situ at nanometer or sub-nanometer resolution. Here we use liquid phase TEM to extract the mathematical form of interaction potential between nanocrystals from their sampled trajectories. We show the power of this approach to reveal unanticipated fea...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Liquid-phase transmission electron microscopy (TEM) can probe and visualize dynamic events with stru...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
We demonstrate a generalizable strategy to use the relative trajectories of pairs and groups of nano...
We demonstrate a generalizable strategy to use the relative trajectories of pairs and groups of nano...
We demonstrate a generalizable strategy to use the relative trajectories of pairs and groups of nano...
We demonstrate a generalizable strategy to use the relative trajectories of pairs and groups of nano...
We demonstrate a generalizable strategy to use the relative trajectories of pairs and groups of nano...
We demonstrate a generalizable strategy to use the relative trajectories of pairs and groups of nano...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Liquid-phase transmission electron microscopy (TEM) has been widely used for probing solution-phase ...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Liquid-phase transmission electron microscopy (TEM) can probe and visualize dynamic events with stru...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
We demonstrate a generalizable strategy to use the relative trajectories of pairs and groups of nano...
We demonstrate a generalizable strategy to use the relative trajectories of pairs and groups of nano...
We demonstrate a generalizable strategy to use the relative trajectories of pairs and groups of nano...
We demonstrate a generalizable strategy to use the relative trajectories of pairs and groups of nano...
We demonstrate a generalizable strategy to use the relative trajectories of pairs and groups of nano...
We demonstrate a generalizable strategy to use the relative trajectories of pairs and groups of nano...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Liquid-phase transmission electron microscopy (TEM) has been widely used for probing solution-phase ...
Solution-phase self-assembly of nanocrystals into mesoscale structures is a promising strategy for c...
Liquid-phase transmission electron microscopy (TEM) can probe and visualize dynamic events with stru...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...