Results 191 to 200 of about 104,822 (332)
Enabling the Discovery of Computational Characteristics of Enzyme Dynamics [PDF]
Gunn, Steve +4 more
core +1 more source
A Miniaturized Silicon Lab-on-Chip for Integrated PCR and Hybridization Microarray for High Multiplexing Nucleic Acids Analysis. [PDF]
Ventimiglia G +3 more
europepmc +1 more source
An adapted processing for solvent‐free argyrodite solid electrolyte films based on insights into degradation mechanisms of the widely used binder polytetrafluoroethylene is presented. By adapting the dry film processing, long‐term cycling in Si||NMC pouch cells is demonstrated over more than 1000 cycles with a capacity retention of more than 80%, and ...
Maria Rosner +10 more
wiley +1 more source
Polymer multilevel lab-on-chip systems for electrochemical sensing [PDF]
Garau, Alessandro +4 more
core +2 more sources
Low-intensity ultrasound lysis of amyloid microclots in a lab-on-chip model. [PDF]
Rasouli R, Hartl B, Konecky SD.
europepmc +1 more source
Point-of-Care Diagnostics for Farm Animal Diseases: From Biosensors to Integrated Lab-on-Chip Devices. [PDF]
Manessis G, Gelasakis AI, Bossis I.
europepmc +1 more source
Dry electrode technology revolutionizes battery manufacturing by eliminating toxic solvents and energy‐intensive drying. This work details two promising techniques: dry spray deposition and polymer fibrillation. How their unique solvent‐free bonding mechanisms create uniform microstructures for thicker, denser electrodes, boosting energy density and ...
Yuhao Liang +7 more
wiley +1 more source
Microfluidic lab-on-chip design for efficient relative humidity sensing using a capacitive transducer. [PDF]
Abdelghani M, Hussien O.
europepmc +1 more source
Validation of a Lab-on-Chip Assay for Measuring Sorafenib Effectiveness on HCC Cell Proliferation. [PDF]
Piccinno E +5 more
europepmc +1 more source
Controlled laser‐drilling of embedded HfO2 membranes creates three layer nanopores with Gaussian‐shaped cavities sculptured in the supporting layers. These embedded solid‐state nanopores slow DNA translocation by 12‐fold compared to SiNx pores, enabling high‐resolution, label‐free detection of short DNAs, RNAs, and proteins.
Jostine Joby +4 more
wiley +1 more source

