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Simulations reveal how subtle changes in metallic track geometry interact with molecular flexibility, producing strikingly different trajectories for fullerene-based nanomachines. Paper: Controlling the diffusion of fullerene-wheeled nanovehicles using hybrid curved substrates. AI-generated abstract conceptual image…
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Researchers at Argonne are shaping the nanoscience frontier, using atomic-scale control to accelerate advances in electronics, energy storage, catalysis,…
By engineering the elastic response of layered ferroelectric oxides at the nanoscale, researchers explored whether a CMOS-compatible resonator…
MIT researchers have engineered bacteria that can function as transistors, allowing them to create “living circuit boards” like…
By weakening interactions that normally tie electrolyte components into extended aggregates, researchers created an unusual nanoscale structure that…
A team of University of Wisconsin-Madison researchers has developed an implantable, battery-free pacemaker that’s charged by a patient’s…
From drug-carrying nanoparticles to ROS-scavenging nanozymes and ultrathin radiation shields, researchers are exploring how materials engineered at the…
A two-stage experiment separated fiber-driven water resistance from the role of nano-silica in the concrete matrix, revealing how…
Researchers from North Carolina State University have created teardrop-shaped soft robots that leap upward or forward when exposed…
A leading computer scientist says AI may never reach human-level intelligence because it cannot acquire the tacit knowledge…
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