Results 121 to 130 of about 1,466 (168)
Microrobots: Two Decades of Progress
Microrobots are governed by counterintuitive viscous‐dominated microscale physics, making traditional large‐scale driving principles unapplicable and restricting their reliable in‐body locomotion implementation. Multiple propulsion schemes and advanced microfabrication techniques have been developed to bypass such physical limitations and enrich ...
Bradley J. Nelson
wiley +1 more source
This study presents an additive‐free aerosol jet 3D printing technique for assembling 2D MXene nanosheets into complex, customizable, high‐aspect‐ratio 3D microarchitectures without binders. By leveraging real‐time ink thickening, the authors also fabricate 3D microsupercapacitors with interdigitated electrodes that holds breakthrough device areal ...
Chunshan Hu +4 more
wiley +1 more source
Bottom‐Up Synthesis and Active Assembly of DNA Networks by Biomolecular Nanomachines
This study demonstrates a dynamic, bottom‐up assembly of DNA materials driven by two biomolecular nanomachines: DNA polymerase and kinesin. Through sequential chemical synthesis and motor‐driven mechanical manipulation, DNA fibrous networks are dynamically formed with complex morphologies unattainable by self‐assembly alone.
Farhana Afroze +11 more
wiley +1 more source
Single‐particle‐level investigation using scanning tunneling spectroscopy reveals electronic structure and type‐I band alignment of individual CsPbBr3@FAPbBr3 core‐crown nanoplatelet. Crown passivation suppresses deep trap states by 47% and markedly improves electrical stability under repeated bias sweeps.
Shaocheng Shen +8 more
wiley +1 more source
Structural control in amorphous MOFs (aMOFs) remains challenging compared to their crystalline counterparts. We report a bottom‐up strategy using metal‐organic polyhedra as predefined building units. By crosslinking these clusters, we preserve intrinsic node functionality within aMOFs, achieving proton conductivity up to 4.8 mS cm−1 at 85°C and 90% RH,
Nattapol Ma +3 more
wiley +1 more source
Pulse‐duration‐controlled ultra‐short laser processing is shown to directly create binder‐free Fe‐enriched NiOx electrodes with tunable porosity, active‐site density, and oxygen‐evolution kinetics. Shorter pulses generate defect‐rich nanostructures that accelerate charge transfer, promote highly active NiFeOOH formation, and deliver durable alkaline ...
Sandra Susan Koshy +2 more
wiley +1 more source
We report a direct‐writing method for patterning silver‐enriched nanostructures with dual functionality: High electrical conductivity, with a resistivity of 95 µΩ·cm, and strong SERS activity, achieving enhancement factors exceeding 107. This approach enables an easy and cost‐effective alternative for the production of microstructures with applications
Juan Ignacio Ocaña‐Parral +7 more
wiley +1 more source
Chemistry for electron-induced nanofabrication
Petra Swiderek +2 more
doaj +1 more source
An in‐line PAT‐integrated ML strategy for microfluidic liposome synthesis accurately predicted particle size from formulation parameters and fluoresence sensing data. The model captured both seen and unseen conditions, demonstrating robust generalization and process control with low error.
Junghu Lee +6 more
wiley +1 more source
Rewiring the Technological Future of Information and Biology With Nucleic Acid Information Materials
Nucleic acid information materials (NAIMs) repurpose DNA from genetic carriers into programmable matter, integrating biotechnology with information technology to rewire the future of molecular computing, ultra‐dense data storage, and intelligent medicine.
Fangfei Yin +3 more
wiley +1 more source

