Triblock Polymer Engineering Enables Hydration‐Rich, High‐Performance, Fouling‐Resistant Interfaces
A molecularly engineered triblock polymer (PHZ) rapidly reorganizes into a hydration‐rich interfacial layer on diverse surfaces, strongly suppressing hydrophobic attraction and fouling. The triblock polymer provides robust energy and steric barriers to oily foulants, enabling high‐performance antifouling at ultralow dosage.
Chenyu Qiao +6 more
wiley +1 more source
Some novel mathematical analysis on the fractional-order 2019-nCoV dynamical model. [PDF]
Owoyemi AE +4 more
europepmc +1 more source
Dispensing Volumetric Additive Manufacturing
Dispensing volumetric additive manufacturing (DVAM) prints 3D structures inside a photocurable resin droplet suspended from the tip of a glass pipette, enabling sequential printing without resin vats or manual part removal. Real‐time droplet profiling and ray‐tracing‐based correction compensate for optical distortion at the curved resin‐air interface ...
Hongryung Jeon +5 more
wiley +1 more source
Mathematical Analysis for a Class of Stochastic Copolymerization Processes. [PDF]
Anderson DF, Ma J, Gagrani P.
europepmc +1 more source
Design and mathematical analysis of activating transcriptional amplifiers that enable modular temporal control in synthetic juxtacrine circuits. [PDF]
Lam C.
europepmc +1 more source
Butterfly wing scales are intricate cuticular functional nanosctructures. This perspective suggests that spatially varying material properties, cytoskeletal constraints, and growth‐driven mechanical instabilities shape the resulting nanoscale architectures created from single cells.
Anupama Prakash +10 more
wiley +1 more source
Mathematical analysis of a stochastic delay model for respiratory syncytial virus dynamics. [PDF]
Raza A +4 more
europepmc +1 more source
Mathematical Analysis for the Flow of Sickle Red Blood Cells in Microvessels for Bio Medical Application. [PDF]
Chaturvedi P, Shah SR.
europepmc +1 more source
Inducing Ferromagnetism by Structural Engineering in a Strongly Spin‐Orbit Coupled Oxide
ABSTRACT Magnetic materials with strong spin‐orbit coupling (SOC) are essential for the advancement of spin‐orbitronic devices, as they enable efficient spin‐charge conversion, complex magnetic structures, spin‐valley physics, topological phases and other exotic phenomena.
Ji Soo Lim +19 more
wiley +1 more source
Correction: Mathematical analysis of the dynamics of cyberattack propagation in IoT networks. [PDF]
PLOS One Staff.
europepmc +1 more source

