PROGRESS IN ORGANIC COATINGS - Czasopismo - MOST Wiedzy

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PROGRESS IN ORGANIC COATINGS

ISSN:

0300-9440

Dyscypliny:

  • inżynieria biomedyczna (Dziedzina nauk inżynieryjno-technicznych)
  • inżynieria chemiczna (Dziedzina nauk inżynieryjno-technicznych)
  • inżynieria lądowa, geodezja i transport (Dziedzina nauk inżynieryjno-technicznych)
  • inżynieria materiałowa (Dziedzina nauk inżynieryjno-technicznych)
  • inżynieria mechaniczna (Dziedzina nauk inżynieryjno-technicznych)
  • biologia medyczna (Dziedzina nauk medycznych i nauk o zdrowiu)
  • nauki farmaceutyczne (Dziedzina nauk medycznych i nauk o zdrowiu)
  • nauki leśne (Dziedzina nauk rolniczych)
  • rolnictwo i ogrodnictwo (Dziedzina nauk rolniczych)
  • biotechnologia (Dziedzina nauk ścisłych i przyrodniczych)
  • nauki chemiczne (Dziedzina nauk ścisłych i przyrodniczych)

Punkty Ministerialne: Pomoc

Punkty Ministerialne - aktualny rok
Rok Punkty Lista
Rok 2024 100 Ministerialna lista czasopism punktowanych 2024
Punkty Ministerialne - lata ubiegłe
Rok Punkty Lista
2024 100 Ministerialna lista czasopism punktowanych 2024
2023 100 Lista ministerialna czasopism punktowanych 2023
2022 100 Lista ministerialna czasopism punktowanych (2019-2022)
2021 100 Lista ministerialna czasopism punktowanych (2019-2022)
2020 100 Lista ministerialna czasopism punktowanych (2019-2022)
2019 100 Lista ministerialna czasopism punktowanych (2019-2022)
2018 40 A
2017 40 A
2016 40 A
2015 40 A
2014 40 A
2013 40 A
2012 35 A
2011 35 A
2010 32 A

Model czasopisma:

Hybrydowe

Punkty CiteScore:

Punkty CiteScore - aktualny rok
Rok Punkty
Rok 2023 11.4
Punkty CiteScore - lata ubiegłe
Rok Punkty
2023 11.4
2022 11.1
2021 9.1
2020 7.4
2019 5.8
2018 5.7
2017 5.1
2016 4.6
2015 4.4
2014 4.1
2013 3.6
2012 3.6
2011 3.3

Impact Factor:

Zaloguj się aby zobaczyć Współczynnik Impact Factor dla tego czasopisma

Filtry

wszystkich: 35

  • Kategoria
  • Rok
  • Opcje

wyczyść Filtry wybranego katalogu niedostępne

Katalog Czasopism

Rok 2023
Rok 2020
Rok 2019
  • Cure Index demonstrates curing of epoxy composites containing silica nanoparticles of variable morphology and porosity
    Publikacja
    • F. Tikhani
    • M. Jouyandeh
    • S. Jafari
    • S. Chabokrow
    • M. Ghahari
    • K. Gharanjig
    • F. Klein
    • N. Hampp
    • M. Ganjali
    • K. Formela
    • M. Saeb

    - PROGRESS IN ORGANIC COATINGS - Rok 2019

    An image was taken by Cure Index on curability of epoxy with silica nanoparticles having variable morphology and porosity. Three kinds of silica nanoparticles with non-porous curved-rod, non-porous spherical, and mesoporous spherical microstructures were synthesized and characterized by Fourier-transform infrared spectroscopy, scanning electron microscopy (SEM) and Brunauer–Emmett–Teller analyses. Epoxy nanocomposites containing...

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  • Curing epoxy resin with anhydride in the presence of halloysite nanotubes: the contradictory effects of filler concentration
    Publikacja
    • M. Jouyandeh
    • Z. Karami
    • O. Moini
    • K. Formela
    • S. Paran
    • A. Jannesari
    • M. Saeb

    - PROGRESS IN ORGANIC COATINGS - Rok 2019

    Epoxy resins can be cured with a wide variety of curing agents such as amines and anhydrides, but anhydride curing would be more favorable for research purpose because of epoxy-anhydride curing taking place slowly at room temperature. Incorporation of natural nanosized minerals into epoxy is of environmental importance. Halloysite nanotubes (HNTs) display chemical properties similar to those of silica and alumina, and hydroxyl...

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  • Curing epoxy with electrochemically synthesized Zn Fe3-O4 magnetic nanoparticles
    Publikacja
    • M. Jouyandeh
    • J. A. Ali
    • M. Aghazadeh
    • K. Formela
    • M. Saeb
    • Z. Ranjbar
    • M. Ganjali

    - PROGRESS IN ORGANIC COATINGS - Rok 2019

    Cathodic electrodeposition (CED) was applied in synthesis of undoped and zinc (Zn) doped Fe3O4 nanoparticles. Changes in the lattice structure of nanoparticles were monitored using X-ray diffraction (XRD), field-emission scanning electron microscopy (FE-SEM) supported by dispersive X-ray spectrometry (EDS), and vibrating sample magnetometry (VSM). Detailed analyses explored the formation of ZnxFe3–xO4 nanoparticles with x ≈ 0.1,...

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  • Curing epoxy with ethylenediaminetetraacetic acid (EDTA) surface-functionalized Co Fe3-O4 magnetic nanoparticles
    Publikacja
    • M. Jouyandeh
    • M. Ganjali
    • J. A. Ali
    • M. Aghazadeh
    • I. Karimzadeh
    • K. Formela
    • X. Colom
    • J. Cañavate
    • M. Saeb

    - PROGRESS IN ORGANIC COATINGS - Rok 2019

    In this work, the bulk and surface composition of Fe3O4 supermagnetic nanoparticles were modified for efficient epoxy curing. The bare, ethylenediaminetetraacetic acid (EDTA) capped, and cobalt (Co)-doped EDTA capped Fe3O4 nanoparticles were synthesized electrochemically. The crystalline structure and phase information, surface capping, morphology and magnetization behavior of nanoparticles were studied by X-Ray diffraction (XRD),...

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  • Properties of nano-Fe3O4 incorporated epoxy coatings from Cure Index perspective
    Publikacja
    • M. Jouyandeh
    • N. Rahmati
    • E. Movahedifar
    • B. Hadavand
    • Z. Karami
    • M. Ghaffari
    • P. Taheri
    • E. Bakhshandeh
    • H. Vahabi
    • M. Ganjali... i 2 innych

    - PROGRESS IN ORGANIC COATINGS - Rok 2019

    The mission of an advanced epoxy-based nanocomposite coating is to provide a given substrate with protection against an unwelcome guest; e.g. corrosive molecules/media, environmental stress, flame, thermal degradation or microorganisms. In such systems, the degree to which superior properties can be guaranteed depends on the state of network formation in the epoxy in the presence of nanoparticles. For low-filled epoxy nanocomposite coatings,...

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  • Unconditionally blue: Curing epoxy with polyethylene glycol (PEG) surface-functionalized Zn Fe3-O4 magnetic nanoparticles
    Publikacja
    • M. Jouyandeh
    • S. M. Hamad
    • I. Karimzadeh
    • M. Aghazadeh
    • Z. Karami
    • V. Akbari
    • F. Shammiry
    • K. Formela
    • M. Saeb
    • Z. Ranjbar
    • M. Ganjali

    - PROGRESS IN ORGANIC COATINGS - Rok 2019

    Nanoparticles govern early (chemical-controlled) and late (diffusion-controlled) stages of epoxy crosslinking, respectively. Surface functionalization of nanoparticles with macromolecules was recognized as an effective route to compensate for inadequate diffusion-controlled crosslinking. However, the effect of bulk composition amended with cations having catalytic effect towards epoxy ring opening has remained hitherto undescribed....

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Rok 2018
Rok 2017
Rok 2016
Rok 2015
Rok 2014
  • Bio-based semi-aromatic polyesters for coating applications
    Publikacja
    • E. Gubbels
    • J. P. Drijfhout
    • C. Posthuma-van Tent
    • L. Jasińska-Walc
    • B. A. J. Noordover
    • C. E. Koning

    - PROGRESS IN ORGANIC COATINGS - Rok 2014

    Linear and branched bio-based semi-aromatic (co)polyesters were evaluated as resins for solvent-basedand powder coatings. Dimethyl-2,5-furandicarboxylate (DMF), 2,3-butanediol and various multifunc-tional comonomers were used to synthesize amorphous hydroxyl-end-capped (co)polyesters. The resinswere cross-linked using the -caprolactam blocked trimer of isophorone diisocyanate. Both the solvent-based and powder coatings proved to...

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  • Local properties of organic coatings close to glass transition temperature

    Acrylic coating applied on copper substrate has been investigated at different temperatures starting from the ambient one up to the level above the glass transition temperature. Its local topographic and electric properties have been examined with the atomic force microscopy (AFM) based approach including dc current mapping and local impedance spectroscopy. The local findings have been compared with the information from global...

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  • Multivariate analysis of impedance data obtained for coating systems of varying thickness applied on steel

    Electrochemical impedance spectroscopy (EIS) has proven to be a valuable test method for the electrochemical characterization of protective coatings on metals. The common way of analysis in impedance spectroscopy is to model the impedance spectrum by means of an equivalent circuit and to extract the quantity of interest using optimization techniques. A model, corresponding to the behavior of the sample under testing, is important...

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Rok 2012
Rok 2011
Rok 2010
Rok 2003

wyświetlono 1577 razy