Results 201 to 210 of about 932,294 (385)
A unidirectional cerebral organoid–organoid neural circuit is established using a microfluidic platform, enabling controlled directional propagation of electrical signals, neuroinflammatory cues, and neurodegenerative disease–related proteins between spatially separated organoids.
Kyeong Seob Hwang +9 more
wiley +1 more source
Research on Integrated Modularization of Supercritical Carbon Dioxide System for Aircraft Carrier Nuclear Power. [PDF]
Hou S, Chen J, Zhang F, Yang Q.
europepmc +1 more source
Dual‐phase MoC/Mo2C/CoNC nanoframes are synthesized via a MOF‐on‐MOF strategy, demonstrating a large salt adsorption capacity, a low energy consumption, and an excellent cycling stability. In situ/ex situ characterizations and DFT calculations reveal that the MoC/Mo2C dual phase transition facilitates Na+ adsorption/desorption, while interface‐induced ...
Feifei Pang +8 more
wiley +1 more source
Three-Stage Thermally Coupled Stirling/Pulse Tube Hybrid Cryocooler
Low-temperature superconductivity and space exploration urgently require compact, highly reliable, and long-lifespan cooling technologies that operate in the liquid-helium temperature range. Multistage Stirling-type pulse tube cryocoolers are a promising
Li Zhengkun +3 more
doaj
Evaluation of electrically boosted natural gas fired glass furnace performance by using data reconciliation method. [PDF]
Kodak O +7 more
europepmc +1 more source
A minimally invasive, transepithelial corneal cross‐linking (TE‐CXL) approach is presented using upconversion nanoparticles (UCNPs)‐loaded contact lenses (UCLs), after topical delivery of hyaluronate–riboflavin conjugates. The NIR‐to‐UV/blue light conversion by UCNPs in a UCL can activate riboflavin for TE‐CXL, resulting in the biomechanical strength ...
Gibum Lee +8 more
wiley +1 more source
Stable Operation of Copper-Protected La(FeMnSi)13H y Regenerators in a Magnetic Cooling Unit. [PDF]
Weiß NP +8 more
europepmc +1 more source
Chemoselective Sequential Polymerization: An Approach Toward Mixed Plastic Waste Recycling
Inspired by biological protein metabolism, this study demonstrates the closed‐loop recycling of mixed synthetic polymers via ring‐closing depolymerization followed by a chemoselective sequential polymerizations process. The approach recovers pure polymers from mixed feedstocks, even in multilayer formats, highlighting a promising strategy to overcome a
Gadi Slor +5 more
wiley +1 more source

