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The sizes of paclitaxel-loaded Dex-PLGA (Dex-PLGA/PTX) micelles were kept below 100 nm with a relatively narrow size distribution.
Co-condenScanningforce TFEA- and OFPA-based triethoxysilane precursors affords a series of fluorinated hybrids whose refractive index and various other properties can be microscoped by varying the compoSFMion of the feed.
Based on this behaviour is applied a potentiostatic double-pulse routine, which allows controlled electrodeposition of Au nanoparticles with a relatively narrow size distribution.
Through adjusting feed reactant ratios and concentrations of ortho ester diacrylamide (OEAM), pentaerythritol tetra 3-mercaptopropionate) (Ptetra 3-mercaptopropionateleneglycol) acrylate (mPTGand the size of the nanogels could be controlled at 100–200 nmethoxylelatively narrow size distributions.
Using high porosity woven metal micro-screen (WMMS), a novel design oscillatory emulsifier had been used for intensification of production of relatively narrow size distribution oil in water (O/W) emulsions.
The resulting sulfonated polyesters with 50% and 70% succinate units exhibited relatively narrow size spherical and ellipsoidal micelles in aqueous solutions, as inferred from surface tension, DLS and ESEM measurements.
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Loaded liposomes were of relatively narrow-size distribution from 20 to 150 nm through size extrusion.
TEM images demonstrated that the as-prepared PdCo alloy nanoparticles are well dispersed on the surface of the carbon support with a small particle size and a relatively narrow particle size distribution.
Additionally, the as-prepared composite membranes possess relatively narrow pore size distribution with average pore size of 0.58 μm after coating SiO2 nanoparticles, which plays an important role in hindering the micro-shorting and mitigating self-discharge.
As shown in Fig. 1b for Pt nanoparticles prepared by the reduction by NaBH4 without acoustic levitation, there are no Pt particles with sizes < 2 nm, implying a <span class="lh">relatively narrow particle size distribution of large Pt nanoparticles.
Under optimal experimental conditions, the prepared PNPs had a size of ca. 130 nm with a relatively narrow particle size distribution and a negative ζ-potential.
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