Harnessing Photothermal Synergy of Cs<sub>4</sub>CuSb<sub>2</sub>Cl<sub>12</sub>/MoS<sub>2</sub> Composite for Photothermoelectric Energy Harvesting and Small Power Application. [PDF]
Sridhar V, Wu CT, Chattopadhyay S.
europepmc +1 more source
Erasable FAP Targeted Spray‐On Probe for Fluorescence‐Guided Surgery
We present the first erasable spray‐on probe for fluorescence‐guided surgery. Following topical delivery, FAP‐FLASH550 targets fibroblast activation protein–expressing stromal cells, delineating tumor margins with high tumor‐to‐background ratios. A 365 nm UV light pulse rapidly erases fluorescent signals through triazene photodegradation and subsequent
Zachary Rabinowitz +2 more
wiley +1 more source
Droplet Digital CRISPR for Nucleic Acid Detection. [PDF]
Zhang Y +4 more
europepmc +1 more source
Fabrication of High‐Density Multimodal Neural Probes Based on Heterogeneously Integrated CMOS
A chiplet‐based methodology democratizes active neural probe development on standard bulk CMOS services. This yields the first probe combining high‐density electrophysiology (416 electrodes) with calcium imaging (832 photodiodes) and complete on‐chip signal processing across 13 shanks.
Ju Hee Mun +10 more
wiley +1 more source
A novel photo-induced synthesis of carboxymethyl chitosan-silver nanocomposite: preparation, characterization and antibacterial efficacy of cotton finished fabrics. [PDF]
El-Sheikh MA, Abdeldayem SA.
europepmc +1 more source
We report a high‐dipole interlayer, MQPPO, that simultaneously improves efficiency and stability in perovskite solar cells. Its strong interfacial dipole enhances photovoltaic performance, while its uniform coverage and strong interaction with Ag effectively suppress AgI formation, ensuring long‐term stability under moisture and thermal stress.
Dong Hyun Lee +11 more
wiley +1 more source
Electrothermally tunable cholesteric liquid crystal laser achieving 130 nm range with high circular polarization purity (|g| ≥ 1.4). [PDF]
Jeong MY, Kwak K.
europepmc +1 more source
Temporal Interference Stimulation Enhances Neural Regeneration
Temporal interference (TI) stimulation is proposed as a non‐invasive approach to enhance neural regeneration in the deep brain. Theta‐band TI modulation selectively promotes neural progenitor cell differentiation in vitro and augments hippocampal neurogenesis in amouse model of Alzheimer's disease‐like amyloidosis.
Sofia Peressotti +15 more
wiley +1 more source
Where will the Next Generation of Lamps Come from?
openaire +2 more sources

