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The consequences of this thermodynamic modification are studied in detail.
HepG2 cells and rat primary hepatocytes cultured in Polyvinyl alcohol (PVA)/Gelatin hydrogel scaffolds with and without galactose (a ligand for ASGPR) modification are studied using SECM.
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Mechanisms of BiOCl modification were studied by measuring the optical absorption and hydroxyl radical HO· productivity.
The improved J sc in device performance after the interface modification was studied by IPCE and PL spectra (Fig. 9).
Other protocols of RHC/chitosan suspension concentration and ratio modification were studied to produce more homogenous and appropriate structural scaffolds.
The morphology of synthesized silica aerogel before and after surface modification is studied by Philips CM10 transmission electron microscope (TEM) operating at 120 kV.
Two methods of surface modification were studied: surface hydrolysis by immersion in sodium hydroxide, and immobilization of collagen onto PCL film surface.
Entrapment of a variety of ethyleneoxide-containing substances from nonpolar solutions into polypropylene (PP) microfiltration membrane surface for hydrophilic modification was studied.
Surface properties of nano-hydroxyapatite and its modification were studied by means of X-ray diffraction (XRD), adsorption-desorption of nitrogen (ASAP 2405 type Accelerated Surface Area and Porosimetry by the Micromeritics Instruments, Co firm) were investigated.
The surface functionalities of the ZnO nanocrystals after the modification were studied using FT-IR with a Nicolet 5700 Fourier transform infrared spectrometer (Thermo Electron, USA), and Zeta potentials obtained on Nicomp 380/ZLS (America).
Effects of substrate surface defects and deposition parameters on deposition of silicon coatings onto silicon carbide ceramics by plasma source ion plating for surface modification were studied in this paper.
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