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    Detalii autor  
           
  Nume autor:   AURORA MOCANU    
    Babeş-Bolyai University, Faculty of Chemistry and Chemical Engineering, 11 Arany Janos Str., RO-400028, Cluj-Napoca, Romania.    
           
  10-12-2024     
      
 
    Articole cu acelaşi autor  
         
 
1.  ATOMIC FORCE MICROSCOPY STUDIES OF LANGMUIR-BLODGETT FILMS. 4. THE INFLUENCE OF ALUMINUM SUBSTRATE ON DIPALMITOYL PHOSPHATIDYLCHOLINE NANOLAYERS.
2.  THERMODYNAMIC APPROACH ON SPECIFIC INTERACTIONS IN LIPID AND CAROTENOID NANOFILMS.
3.  SIMULATIONS OF SOME BIOMEMBRANE INTERFACIAL PHENOMENA. I. SPECIFIC MOLECULAR INTERACTIONS BETWEEN BOVINE SERUM ALBUMIN AND MELATONIN.
4.  ATOMIC FORCE MICROSCOPY STUDIES OF LANGMUIR-BLODGETT FILMS. I. STRUCTURES OF COLLAPSED STEARIC ACID MONOLAYERS.
5.  ADSORPTION KINETICS OF DIBUCAINE AND TETRACAINE AT THE BENZENE/WATER INTERFACE STUDIED BY PENDANT DROP METHOD.
6.  INTERACTION OF PROCAINE WITH BIOMEMBRANES.
          Autori: JANOS ZSAKO, MARIA TOMOAIA-COTISEL, AURORA MOCANU.

7.  LYSINE MEDIATED ASSEMBLY OF GOLD NANOPARTICLES.
8.  PARTIAL BIOCHEMICAL CHARACTERIZATION OF STORAGE PROTEIN FROM ALEURONE CELLS OF BARLEY (HORDEUM VULGARE L.).
9.  ATOMIC FORCE MICROSCOPY STUDIES OF TWO COMPOSITES BASED ON SURFACE ACTIVE GLASSES AND DIFFERENT COPOLYMERS AND THEIR STABILITY IN BIOLOGIC FLUID.
10.  AMINO ACIDS BINDING TO GOLD NANOPARTICLES.
11.  SPECTROSCOPIC AND ATOMIC FORCE MICROSCOPY STUDY OF A NEW HEMICYANINE DYE.
12.  SUPRAMOLECULAR ORGANIZATION AND NANO STRUCTURATION OF COLLAGEN AND ANTI CANCER DRUGS.
13.  KINETIC AND THERMODYNAMIC CHARACTERIZATION OF PROTEIN ADSORPTION AT FLUID INTERFACES.
14.  MORPHOLOGY OF COLLAGEN AND ANTI-CANCER DRUGS ASSEMBLIES ON MICA.
15.  PROCAINE EFFECTS ON SURFACE TOPOGRAPHY OF SPREAD DIPALMITOYL PHOSPHATIDYLCHOLINE MONOLAYERS.
16.  THE INFLUENCE OF SOLID SURFACE ON THE ADSORPTION OF ANTI-C1Q MONOCLONAL ANTIBODY AT ISOELECTRIC PH.
17.  THE INTERACTION OF SILVER NANOPARTICLES WITH LIPOIC ACID.
18.  DESFERAL EFFECT ON HUMAN ERYTHROCYTE MEMBRANE. AN ATOMIC FORCE MICROSCOPY ANALYSIS.
19.  BEHAVIOR OF MIXED DMPC-CHOLESTEROL MONOLAYERS AT THE AIR/WATER INTERFACE.
20.  STRUCTURE OF STARCH GRANULES.
21.  SEM CHARACTERIZATION OF STARCH GRANULES.
22.  POROUS COLLAGEN SCAFFOLDS FOR BONE REGENERATION.
23.  BIOCOMPOSITES FOR ORTHOPEDIC APPLICATIONS.
24.  ANTIMICROBIAL ACTIVITY OF CERAMIC DISKS LOADED WITH SILVER IONS AND NITROXOLINE.
25.  LOW CRYSTALLINITY NANOHYDROXYAPATITE PREPARED AT ROOM TEMPERATURE .
26.  IN MEMORIAM EMIL CHIFU (1925-1997).
          Autori: ALEXANDRA CHIFU, AURORA MOCANU, MARIA TOMOAIA-COTISEL.

27.  PHYSICO-CHEMICAL STUDY CONCERNING ATMOSPHERIC PARTICULATE MATTER HAZARD .
28.  SILICON RELEASE FROM HYDROXYAPATITES IN WATER AND SIMULATED BODY FLUID.
29.  PORTLAND CEMENT ENRICHED WITH HYDROXYAPATITE FOR ENDODONTIC APPLICATIONS.
30.  HYDROXYAPATITE FOR REMOVAL OF HEAVY METALS FROM WASTEWATER.
31.  THERMAL ANALYSIS OF PURE AND MULTISUBSTITUTED HYDROXYAPATITE PASTES.
32.  BEHAVIOR OF MULTISUBSTITUTED HYDROXYAPATITES IN WATER AND SIMULATED BODY FLUID .
33.  MICRO AND NANO ORGANIZATION OF ATMOSPHERIC PARTICULATE MATTER IN GRIGORESCU DISTRICT OF CLUJ-NAPOCA.
34.  ANTIBACTERIAL ACTIVITY OF SILVER NANOPARTICLES OBTAINED BY CO-REDUCTION WITH SODIUM CITRATE AND TANNIC ACID.
35.  AIRBORNE PARTICLES POLLUTION IN DEJ CITY.
36.  INTERACTION OF SILVER NANOPARTICLES WITH VANCOMYCIN: AN UV-VIS STUDY.
37.  BIOCOMPATIBILITY OF TITANIUM IMPLANTS COATED WITH BIOCOMPOSITE IN A RAT MODEL OF FEMORAL FRACTURE.
38.  BIOMIMETIC NANOCOMPOSITE STRUCTURES DESIGNED FOR COATING OF ORTHOPEDIC IMPLANTS: AFM INVESTIGATION.
39.  HIGUCHI MODEL APPLIED TO IONS RELEASE FROM HYDROXYAPATITES.
40.  CURCUMIN AND WHEY PROTEIN BINDING AND STRUCTURAL CHARACTERISTICS OF THEIR COMPLEX EVIDENCED BY ATOMIC FORCE MICROSCOPY.
41.  COMPLEXATION OF CURCUMIN USING WHEY PROTEINS TO ENHANCE AQUEOUS SOLUBILITY, STABILITY AND ANTIOXIDANT PROPERTY.
42.  MECHANISMS IN THE SYNTHESIS OF FORSTERITE NANOPARTICLES BASED ON THERMODYNAMIC APPROACH .
43.  REMINERALIZATION OF TOOTH ENAMEL WITH HYDROXYAPATITE NANOPARTICLES: AN IN VITRO STUDY.
44.  NANOCOMPOSITE BASED ON HYDROXYAPATITE AND SILVER WITH ANTIBACTERIAL ACTIVITY.
 
         
     
         
           
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