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Various methods have been developed to attach or directly grow CNTs on the apex of micro-tips, such as a tungsten tip or an atomic force microscope (AFM) tip [17 23].
For example, copper-free click chemistry has been developed to attach fluorine-18 (F, t1/2 = 109 min) to porous silica nanoparticles.
In particular, CL constructs have been developed to attach fluorescent labels, and it has been commonly assumed that such motors exhibit WT behavior, based on the similarity of their velocities measured under unloaded conditions (Rice et al., 1999).
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A two-step synthetic process employing either MeO DOTA NCS or 2B DOTA NCS as the chelating moiety was developed to attach 225Ac to monoclonal antibodies.
A technique should be developed to attach nanoparticles to the nanofiber surface, while preventing the leaching of nanoparticles during filtration.
Methods have been developed to covalently attach a photoactive tris bipyridine)ruthenium group [Ru II)] to Cc to form Ru-39-Cc. Photoexcitation of Ru II) to the excited state Ru II*), a strong reductant, leads to rapid electron transfer to the ferric heme group in Cc, followed by electron transfer to CuA in CcO with a rate constant of 60,000 s− 1.
A simple method has been developed to directly attach gold nanoparticles (Au-NPs) on carbon nanotubes (CNTs) with high dispersivity by using a small amount of ethanol to reduce the interfacial tension between CNTs and aqueous solution and impart solubility for CNTs in the solution containing Au-NPs.
A novel method was developed to electrochemically attach DNA probes to micron-sized regions of a gold surface using biotin-LC-hydrazide (BH).
A convenient method was developed to directly attaching cupric oxide nanoparticles (CuONPs) on mesoporous carbons (MCs) for sensitive amperometric non-enzymatic sensing of glucose.
The kinetic BAC-model, based on fundamental mechanisms, including surface diffusion, liquid-film mass transfer, Monod kinetics, growth of biofilm and suspended cells as well as shear loss of biofilm, was developed to describe the performance of biofilm attached on activated carbon in the azo-dye treatment process.
Bio-inspired microstructured surfaces have been developed that attach effectively to a wet surface.
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