Biosupercapacitors for Human‐Powered Electronics
Biosupercapacitors are emerging as biocompatible and integrative energy systems for next‐generation bioelectronics, offering rapid charge–discharge performance and mechanical adaptability. This review systematically categorizes their applications from external to organ‐level systems and highlights their multifunctional roles in sensing, actuation, and ...
Suhyeon Kim +7 more
wiley +1 more source
SHAPE CHANGES OF INTERNAL SURFACES IN EXTRUSION
W. Nowak, E.J. Rapperport
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INTRACELLULAR ACCUMULATION OF PROTOCOLLAGEN AND EXTRUSION OF COLLAGEN BY EMBRYONIC CARTILAGE CELLS [PDF]
George Cooper, Darwin J. Prockop
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Ionic Control of Microstructure and Lubrication in Charged, Physically Cross‐Linked Hydrogels
Here, charged, physically cross‐linked poly(methacrylamide‐co‐methacrylic acid) hydrogels stabilized by a short‐range attractive, long‐range repulsive potential is investigated. This work uncovers how salt addition alters not only swelling, but also the microstructure and dynamics, near‐surface stiffness and charge, and ultimately, its lubricity. Salts
Alexander Deptula +1 more
wiley +1 more source
3D printing of hydrogels: a synergistic approach of rheology and computational fluid dynamics (CFD) modeling. [PDF]
Ahmad S, Alam H, Thareja P.
europepmc +1 more source
The accumulation of calcium by the polymorphonuclear leucocyte treated with staphylococcal leucocidin and its significance in the extrusion of protein [PDF]
AM WOODIN, AA Wieneke
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Photoresponsive Gas‐Permeable Membranes: Fundamentals, Innovations, and Prospects
Photoresponsive gas‐permeable membranes can be potentially used for smart packing, carbon capture, hydrogen purification, and optical gas valves due to their remote and non‐contact activation, precise spatial and temporal control, and reversible switching capabilities.
Zhuan Wang +6 more
wiley +1 more source
EFFECT OF OXYTOCIN, VASOPRESSIN, AND OTHER DISULFID HORMONES ON UPTAKE AND EXTRUSION OF WATER BY MITOCHONDRIA [PDF]
Albert L. Lehninger, Diether Neubert
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Electromagnetic interference (EMI) shields consisting of polylactic acid (PLA) in layers with different concentrations of multiwalled carbon nanotubes (MWCNT) are produced using additive manufacturing. The permittivity function of layers with different filler concentrations is learned using data of homogeneous and randomly ordered shields.
Stijn De Smedt +5 more
wiley +1 more source

