Informacja

Drogi użytkowniku, aplikacja do prawidłowego działania wymaga obsługi JavaScript. Proszę włącz obsługę JavaScript w Twojej przeglądarce.

Wyszukujesz frazę "magnetic nanocomposite" wg kryterium: Temat


Wyświetlanie 1-5 z 5
Tytuł:
Adsorption of Ni2+ from aqueous solution by magnetic Fe@graphite nano-composite
Autorzy:
Konicki, W.
Pelka, R.
Arabczyk, W.
Powiązania:
https://bibliotekanauki.pl/articles/778219.pdf
Data publikacji:
2016
Wydawca:
Zachodniopomorski Uniwersytet Technologiczny w Szczecinie. Wydawnictwo Uczelniane ZUT w Szczecinie
Tematy:
magnetic nanocomposite
iron nanoparticles
nickel
adsorption
Opis:
The removal of Ni2+  from aqueous solution by iron nanoparticles encapsulated by graphitic layers (Fe@G) was investigated. Nanoparticles Fe@G were prepared by chemical vapor deposition CVD process using methane as a carbon source and nanocrystalline iron. The properties of Fe@G were characterized by X-ray Diffraction method (XRD), High-Resolution Transmission Electron Microscopy (HRTEM), Fourier Transform-Infrared Spectroscopy (FTIR), BET surface area and zeta potential measurements. The effects of initial Ni2+  concentration (1–20 mg L−1 ), pH (4–11) and temperature (20–60°C) on adsorption capacity were studied. The adsorption capacity at equilibrium increased from 2.96 to 8.78 mg g−1 , with the increase in the initial concentration of Ni2+  from 1 to 20 mg L−1  at pH 7.0 and 20°C. The experimental results indicated that the maximum Ni2+  removal could be attained at a solution pH of 8.2 and the adsorption capacity obtained was 9.33 mg g−1 . The experimental data fitted well with the Langmuir model with a monolayer adsorption capacity of 9.20 mg g−1 . The adsorption kinetics was found to follow pseudo-second-order kinetic model. Thermodynamics parameters, ΔHO, ΔGO and ΔSO, were calculated, indicating that the adsorption of Ni2+  onto Fe@G was spontaneous and endothermic in nature.
Źródło:
Polish Journal of Chemical Technology; 2016, 18, 4; 96-103
1509-8117
1899-4741
Pojawia się w:
Polish Journal of Chemical Technology
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Removal of Ni2+ from Aqueous Solutions by Adsorption Onto Magnetic Multiwalled Carbon Nanotube Nanocomposite
Autorzy:
Konicki, W.
Pełech, P.
Mijowska, E.
Powiązania:
https://bibliotekanauki.pl/articles/778869.pdf
Data publikacji:
2014
Wydawca:
Zachodniopomorski Uniwersytet Technologiczny w Szczecinie. Wydawnictwo Uczelniane ZUT w Szczecinie
Tematy:
magnetic nanocomposite
multiwalled carbon nanotubes
nickel
adsorption
Opis:
The removal of Ni2+ from aqueous solution by magnetic multiwalled carbon nanotube nanocomposite (MMWCNTs-C) was investigated. MMWCNTs-C was characterized by X-ray Diffraction method (XRD), High-Resolution Transmission Electron Microscopy (HRTEM), surface area (BET), and Fourier Transform-Infrared Spectroscopy (FTIR). The effects of initial concentration, contact time, solution pH, and temperature on the Ni2+ adsorption onto MMWCNTs-C were studied. The Langmuir and Freundlich isotherm models were applied to fit the adsorption data. The results showed that the adsorption isotherm data were fitted well to the Langmuir isotherm model with the maximum monolayer adsorption capacity of 2.11 mg g–1. The adsorption kinetics was best described by the pseudo-second-order model. The thermodynamic parameters, such as ΔHo, ΔGo and ΔSo, were also determined and evaluated. The adsorption of Ni2+ is generally spontaneous and thermodynamically favorable. The values of ΔHo and ΔGo indicate that the adsorption of Ni2+ onto MMWCNTs-C was a physisorption process.
Źródło:
Polish Journal of Chemical Technology; 2014, 16, 2; 87-94
1509-8117
1899-4741
Pojawia się w:
Polish Journal of Chemical Technology
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Investigation of Fe304/AEAP supermagnetic nanoparticles on the morphological, thermal and magnetite behavior of polyurethane rigid foam nanocomposites
Wpływ dodatku supermagnetycznych nanocząstek Fe304/AEAP na morfologię, termiczne i magnetyczne właściwości nanokompozytów sztywnych pianek poliuretanowych
Autorzy:
Nikje, M. M. A.
Noruzian, M.
Moghaddam, S. T.
Powiązania:
https://bibliotekanauki.pl/articles/947020.pdf
Data publikacji:
2015
Wydawca:
Sieć Badawcza Łukasiewicz - Instytut Chemii Przemysłowej
Tematy:
magnetic nanocomposite
polyurethane rigid foam
iron oxide
sol-gel method
surface functionalization
nanokompozyty magnetyczne
sztywne pianki poliuretanowe
tlenek żelaza
metoda zol-żel
funkcjonalizacja powierzchni
Opis:
Novel, magnetic, polyurethane, rigid foam nanocomposites were synthesized by incorporation of surface modified iron oxide nanoparticles with n-(2-aminoethyl)-3-aminopropyltrimethoxysilane (AEAP) via a one shot method. The resulting data showed remarkable improvements in the thermal, as well as magnetic, properties of the nanocomposites when nanoparticles were incorporated into the polymer matrix. The prepared nanocomposites were characterized by Scanning Electron Microscopy (SEM), Fourier Transform Infrared Spectroscopy (FT-IR), Vibrating Sample Magnetometry (VSM), Thermomechanical Analysis (TMA) and Thermogravimetric Analysis (TGA). The effect of different amounts of Fe3O4/AEAP on the thermal and magnetic behavior of the resultant nanocomposite was investigated and the optimum percentage of the nanostructures in the foam formulation was defined.
Nowe, magnetyczne nanokompozyty otrzymano metodą jednoetapową, wprowadzając do matrycy poliuretanowej (PUR) modyfikowane powierzchniowo nanocząstki żelaza (Fe3O4/AEAP). Badano wpływ dodatku różnej ilości nanocząstek magnetycznych na morfologię, właściwości termiczne i magnetyczne wytworzonych materiałów. Otrzymane sztywne pianki poliuretanowe zawierające cząstki Fe3O4/AEAP badano metodami skaningowej mikroskopii elektronowej (SEM), spektroskopii w podczerwieni z transformacją Fouriera (FT-IR), magnetometrii zwirującą próbką (VSM), analizy termomechanicznej (TMA) oraz termograwimetrycznej (TGA). Na podstawie uzyskanych wyników stwierdzono, że wprowadzone do matrycy poliuretanowej magnetyczne cząstki zmodyfikowanego tlenku żelaza wpłynęły korzystnie na termiczne i magnetyczne właściwości otrzymanych nanokompozytów sztywnych pianek poliuretanowych.
Źródło:
Polimery; 2015, 60, 1; 26-32
0032-2725
Pojawia się w:
Polimery
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Magnetic properties and surface domain structure of (Nd0.85Dy0.15)10Fe83Zr1B6 thin ribbons
Autorzy:
Ceglarek, A
Plusa, D
Dospial, M
Nabialek, M
Wieczorek, P
Powiązania:
https://bibliotekanauki.pl/articles/173512.pdf
Data publikacji:
2013
Wydawca:
Politechnika Wrocławska. Oficyna Wydawnicza Politechniki Wrocławskiej
Tematy:
nanocomposite materials
melt spinning method
Re–Fe–B alloys
hard magnetic magnets
surface domain structure
Opis:
In this paper, the nanocrystalline (Nd0.85Dy0.15)10Fe83Zr1B6 ribbons produced by melt-spinning have been investigated by the X-ray diffraction method (XRD), vibrating sample magnetometer (VSM) and magnetic force microscopy (MFM). The XRD studies showed that material investigated was mainly composed of Re2Fe14B and α-Fe phases with fine grain sizes of 25 and 9 nm, respectively. The magnetic parameters determined from the hysteresis loop measurements are as follows: μ0HC = 0.96 T, μ0MR = 0.76 T, μ0MS = 1.09 T, (BH)max = 88 kJ/m3. The large remanence ratio (μ0MR/μ0MS) of 0.7 results from the exchange coupling between the soft and hard magnetic grains. The large surface interaction domains revealed by MFM confirmed the existence of strong exchange coupling between nanosize grains.
Źródło:
Optica Applicata; 2013, 43, 1; 117-122
0078-5466
1899-7015
Pojawia się w:
Optica Applicata
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Haemocompatibility and cytotoxic studies of non-metallic composite materials modified with magnetic nano and microparticles
Autorzy:
Szymonowicz, M.
Rybak, Z.
Fraczek-Szczypta, A.
Paluch, D.
Rusak, A.
Nowicka, K.
Blazewicz, M.
Powiązania:
https://bibliotekanauki.pl/articles/306490.pdf
Data publikacji:
2015
Wydawca:
Politechnika Wrocławska. Oficyna Wydawnicza Politechniki Wrocławskiej
Tematy:
nanokompozyty
cząstki magnetyczne
hemoliza
żywotność komórkowa
koagulacja
nanocomposite
magnetic particles
polysulfone
haemolysis
cell viability
coagulation systems
Opis:
Purpose: Preventing the formation of blood clots on the surface of biomaterials and investigation of the reasons of their formation are the leading topics of the research and development of biomaterials for implants placed into the bloodstream. Biocompatibility and stability of a material in body fluids and direct effect on blood cell counts components are related both to the structure and physico-chemical state of an implant surface. The aim of this study was to determine haemocompatibility and cytotoxicity of polysulfone-based samples containing nano and micro particles of magnetite (Fe3O4). Methods: The polysulfone-based samples modified with nanometric and micrometric magnetite particles were examined. Physicochemical properties of the composites were determined by testing their wettability and surface roughness. The action of haemolytic, activation of coagulation system and cytotoxicity of composites was evaluated. Results: Wettability and roughness of materials were correlated with nanoparticles and microparticles content. In the tests of plasma coagulation system shortening of activated partial thromboplastin time for polysulfone with nano magnetite and with micro magnetite particles was observed in comparison with pure polysulfone. Prothrombine time and thrombine time values as well as fibrinogen concentration were unchanged. Haemolysis values were normal. Morphology and viability of cells were normal. Conclusions: Composites made from polysulfone modified with nanoparticles and microparticles of magnetite cause neither haemolytic nor cytotoxic reaction. These composites evoke plasma endogenous system activation.
Źródło:
Acta of Bioengineering and Biomechanics; 2015, 17, 3; 49-58
1509-409X
2450-6303
Pojawia się w:
Acta of Bioengineering and Biomechanics
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-5 z 5

    Ta witryna wykorzystuje pliki cookies do przechowywania informacji na Twoim komputerze. Pliki cookies stosujemy w celu świadczenia usług na najwyższym poziomie, w tym w sposób dostosowany do indywidualnych potrzeb. Korzystanie z witryny bez zmiany ustawień dotyczących cookies oznacza, że będą one zamieszczane w Twoim komputerze. W każdym momencie możesz dokonać zmiany ustawień dotyczących cookies