Single nanoparticle(NP) electrochemical measurements are widely described,both theoretically and experimentally,as they enable visualization of the electrochemical signal of a single NP that is masked
Copper indium sulfide(CIS) nanocrystals(NCs) might provide a promising solution to the toxicity issues associated with Cd-and Pb-based NCs for various photovoltaic and optoelectronic application.
Lignocellulose is among the most clean and eternal energy resource in the world after cellulose and hemicellulose,however its hydrolysis remains a great challenge.
AAas an important water-soluble vitaminswas widely used for the prevention and treatment ofdiseases,such as scurvy,common cold,mental illness,and cancer due to its antioxidant properties.
In this work,a novel molecularly imprinted electrochemical sensor based on the amino-functionalized silica nanoparticles(HPSNs-NH2) was built for the sensitive and selective detection of 2,4-dichlorop
Tumor biomarkers [1,2] are biochemical substances which are produced by either the tumor itself or the surrounding normal tissue as a response to tumor cells.
Electron transfer-induced fluorescence quenching is usually observed when guanine is flanking the binding site of a probe since guanine is the most easily oxdizable base in DNA.
Nowadays,human health monitoring is starving for newly developed point-of-care testing(POCT) platforms,where paper-based microfluidic biosensorshave exhibited superior properties reflected as low cost
Developing low-cost and high-activity electrocatalysts for the oxygen reduction reaction(ORR) is crucial for promoting the widespread commercialization of fuel cells.