Enhancing the Chemical Reactivity of Graphene through Substrate Engineering
This review highlights methods to enhance the reactivity of graphene through substrate engineering, focusing on strain and charge doping. Strains induced by nanoparticles, metal crystal orientations, or stretchable polymers increase the reactivity of graphene.
Jia Tu, Mingdi Yan
wiley +1 more source
Major ion chemistry and suitability of groundwater resources for different utilizations in mica mining areas, Jharkhand, India. [PDF]
Giri S, Tiwari AK, Mahato MK, Singh AK.
europepmc +1 more source
Specific ATP Detection Using Molecule‐Responsive DNA Nanopores
A molecule‐responsive DNA nanopore that provides open/close states by the interaction between an aptamer and analytes is rationally designed. This paper shows the applicability of DNA nanopores for stochastic nanopore sensing by revealing analyte‐concentration dependency, voltage‐dependency, and open/close mechanism.
Hiromu Akai+3 more
wiley +1 more source
Investigation of a Magnetic Sensor Based on the Magnetic Hysteresis Loop and Anisotropic Magnetoresistance of CoFe Thin Films Epitaxial Grown on Flexible Mica and Rigid MgO Substrates with Strain Effect. [PDF]
Cheng JC+6 more
europepmc +1 more source
Toward Everyday Justice: On Demanding Equal Educational Opportunity in the New Civil Rights Era [PDF]
Pollock, Mica
core
A molecular cyanine dye sensor reports on the coating of DNA origami with a polymer or silica by an increase in its fluorescence lifetime. The reversibility of the fluorescence lifetime shift enables the noninvasive real‐time probing of the coating even in degrading conditions.
Michael Scheckenbach+7 more
wiley +1 more source
Visualization of Single Polymer Chains with Atomic Force Microscopy: A Review. [PDF]
Pop M, Todor-Boer O, Botiz I.
europepmc +1 more source
Map showing location of principal amber mica mines and occurences in the province of Ontario
openalex +1 more source
This study presents a modular platform that integrates engineered proteins with DNA nanostructures to create dynamic, multifunctional materials. By combining orthogonal protein‐protein and protein‐DNA conjugation strategies, the authors demonstrate controlled self‐assembly into nanofibers and nanorods, along with reversible enzyme activation.
Weijun Zhou+4 more
wiley +1 more source
Nanoscale Mechanical and Morphological Characterization of Ebolavirus-like Particles: Implications for Therapeutic Development. [PDF]
Hargrove H+3 more
europepmc +1 more source