Results 211 to 220 of about 693,236 (350)
Tough transparent glass ceramics for multi-mode programmable dynamic tunable persistent luminescence via phase engineering. [PDF]
Wu Y, Li X, Ruan C, Sun K, Qiu J, Tan D.
europepmc +1 more source
An Engineered Living Material With Pro‐Angiogenic Activity Inducible by Near‐Infrared Light
NIR‐responsive engineered living materials (ELMs) for controlled angiogenesis: Near‐infrared (800 nm) light activates engineered probiotic bacteria within alginate‐based living materials to secrete a blood vessel‐regenerating protein. The released protein promotes pro‐angiogenic effects in endothelial networks and chick chorioallantoic membranes.
Anwesha Chatterjee +4 more
wiley +1 more source
Field-tunable charge confinement in III-V layered nanowire-array superlattices. [PDF]
Méndez-Camacho R +2 more
europepmc +1 more source
Palladium‐Catalyzed Tunable C2–H Aroylation or Arylation of Azoles with Thioesters [PDF]
Guangli Xu, Zhong‐Xia Wang
openalex +1 more source
Tunable polarization mode conversion using thin-film lithium niobate ridge waveguide
Guang Yang +2 more
openalex +1 more source
Sensorized Engineered Tissues with Built‐in Thermoregulation and Nutrient Supply
This work introduces a granular hydrogel‐based tissue engineering platform that includes a closed‐loop temperature control to maintain 37°C and sustainably releases nutrients, thereby enabling cells to retain a high viability even if stored at room temperature for up to 24 h.
Antonia Georgopoulou +5 more
wiley +1 more source
Electrically Tunable Optofluidic Metasurface. [PDF]
Blair SFJ +4 more
europepmc +1 more source
A Complexation‐Mediated Diffusion‐Limited Growth (CMDLG) framework is established to rationalize the anisotropic growth of lead‐free perovskites. Integrating coordination chemistry with mass transport kinetics, this study theoretically derives and experimentally validates that stable iodocuprate complexes induce a diffusion‐limited regime.
Hyunmin Lee +5 more
wiley +1 more source
Shaping of Biohybrid Functional Living Materials
This work demonstrates a strategy for shaping living mycelium into functional materials by directing its natural growth. Nanoparticles armor hyphae, micron‐scale particles entangle within the network, and printed hydrogel architectures steer expansion, creating defined geometries.
Sarah Schyck +3 more
wiley +1 more source

