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Isfahan University of Technology
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Elaheh Omrani
Influence of biosafe amino acid-functionalized multiwalled carbon nanotubes on the morphology and thermal properties of the poly(amide–imide) nanocomposites containing N,N′-(pyromellitoyl)-bis-S-valine segments
ah
Surface Functionalized TiO2 Nanoparticle Designed for the Preparation of Chiral Poly(amide-imide) Bionanocomposites Containing Phenylalanine Linkage
Selective chemotherapy and imaging of colorectal and breast cancer cells by a modified MUC-1 aptamer conjugated to a poly(ethylene glycol)-dimethacrylate coated Fe 3 O 4 -AuNCs nanocomposite
Ingenious pH-sensitive etoposide loaded folic acid decorated mesoporous silica-carbon dot with carboxymethyl-?cyclodextrin gatekeeper for targeted drug delivery and imaging
Ingenious pH-sensitive etoposide loaded folic acid decorated mesoporous silica-carbon dot with carboxymethyl-?cyclodextrin gatekeeper for targeted drug delivery and imaging
Ingenious pH-sensitive etoposide loaded folic acid decorated mesoporous silica-carbon dot with carboxymethyl-?cyclodextrin gatekeeper for targeted drug delivery and imaging
- Optimizing the setting of projectile weaving machine to prevent the set mark defect on polyester filament fabrics based on image processing technique and artificial intelligence(Manager)
Preparation of a stable nanocomposite phase change material (NCPCM) using sodium stearoyl lactylate (SSL) as the surfactant and evaluation of its stability using image analysis
Preparation of a stable nanocomposite phase change material (NCPCM) using sodium stearoyl lactylate (SSL) as the surfactant and evaluation of its stability using image analysis
Preparation of a stable nanocomposite phase change material (NCPCM) using sodium stearoyl lactylate (SSL) as the surfactant and evaluation of its stability using image analysis
Preparation of a stable nanocomposite phase change material (NCPCM) using sodium stearoyl lactylate (SSL) as the surfactant and evaluation of its stability using image analysis
Three Dimentional Image Analysis for Prediction of Vinyl Triethoxysilane Concentration and Porosity Percent of Methacrylate/Ethylene Glycol Dimethacrylate Copolymers using Scanning Electron Microscopy
Eng
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