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![Ionic Junctions Enable Delicate Control over Microphase Domain Features in Diblock Copolymers](/sites/default/files/styles/list_page_thumbnail/public/2020-12/Li%20thumbnail_260x160.jpg?h=a08abdbb&itok=XTo_k-fZ)
With advances in synthesis strategies, precise control of block copolymers over chemical species, architectures, block fractions, ionic groups, and molecular weights has become available.
![Control of Long-Distance Motion of Single Molecules along Atomic Tracks on a Surface](/sites/default/files/styles/list_page_thumbnail/public/2020-12/Civita%20thumbnail_260x160.jpg?h=a08abdbb&itok=9N0NJV09)
Spatial control over molecular movement is typically limited because motion at the atomic scale follows stochastic processes.
![Egami Nat. Comm. highlight](/sites/default/files/styles/list_page_thumbnail/public/2021-01/Egami%20Nat.Comm%20highlight%20image.jpg?h=d19c4add&itok=MOWtfZx2)
Researchers revealed atomic-level correlated motion of water molecules at the crucial picosecond timescale to evaluate the dynamic nature of the liquid by using coherent X-ray scattering. This research could revolutionize understanding and control