
With advances in synthesis strategies, precise control of block copolymers over chemical species, architectures, block fractions, ionic groups, and molecular weights has become available.
With advances in synthesis strategies, precise control of block copolymers over chemical species, architectures, block fractions, ionic groups, and molecular weights has become available.
Spatial control over molecular movement is typically limited because motion at the atomic scale follows stochastic processes.
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
The world’s first public benchmark dataset for the testing and evaluation of radiation detection and identification algorithms in an illicit radioactive source search campaign setting.
Direct laser writing, a nano 3D-printing approach, has enabled fabrication of customized carbon microelectrode sensors for neurochemical detection.
Metal halide perovskites are promising materials for optoelectronic and sensing applications.
Collaborative work between theory and experiment has resulted in significant improvement on the constraint of the 44Ti(alpha,p)47V reaction.
Novel defect control and chemical doping strategies are discovered to suppress the detrimental bulk conduction in the antiferromagnetic topological insulators MnBi2Te4 and MnBi4Te7. The results of this wo
Liquid crystal elastomers (LCE) anisotropically shape morph in response to external stimuli.
Accelerated imaging in piezoresponse force microscopy (PFM) was demonstrated via the use of the combination of sparse spiral scans and reconstruction algorithms.