Spreitzer, Matjaz

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orcid::0000-0002-4704-7020
  • Spreitzer, Matjaz (3)
  • Spreitzer, Matjaž (1)
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Author's Bibliography

Nickel manganite-carbonized alginate composite for use as energy storage electrodes

Dojčinović, Milena; Vasiljević, Zorka Z; Tadic, Nenad; Spreitzer, Matjaz; Rakočević, Lazar; Nikolić, Maria Vesna

(Serbian Academy of Sciences and Arts, 2022)

TY  - CONF
AU  - Dojčinović, Milena
AU  - Vasiljević, Zorka Z
AU  - Tadic, Nenad
AU  - Spreitzer, Matjaz
AU  - Rakočević, Lazar
AU  - Nikolić, Maria Vesna
PY  - 2022
UR  - http://rimsi.imsi.bg.ac.rs/handle/123456789/1618
AB  - Nickel-manganite is a versatile material used in many technology applications. One of the established uses is as a supercapacitor electrode. The advantage of this type of material is the abundance of required metals, compared to noble metals, the synthesis methods' simplicity, and high redox activity. Metal-oxide battery materials are usually combined with activated carbon to enhance the specific surface area and add to energy storage capacity via surface charge accumulation. In the current work, nickel manganite was synthesized via the sol-gel combustion synthesis method with glycine as fuel and nitrate ions as oxidizers. The post-combustion amorphous powder was calcined at temperatures between 300 and 800 °C. Powders were structurally characterized. Obtained materials were tested as energy storage electrodes in a three-electrode cell setup in 6 M KOH aqueous solution as electrolyte. Methods embedded in electrochemical characterization were cyclic voltammetry (CV), electric impedance spectroscopy (EIS) and constant current chronopotentiometry at different current densities to obtain galvanostatic charge-discharge (GCD) curves. Results show considerable charge storage activity, which can be ascribed to oxido reduction reactions of manganese ions and charge accumulation on the surface of the activated carbon.
PB  - Serbian Academy of Sciences and Arts
C3  - SECOND INTERNATIONAL CONFERENCE ELMINA 2022 Program and Book of Abstracts Publisher:
T1  - Nickel manganite-carbonized alginate composite for use as energy storage electrodes
EP  - 171
SP  - 170
UR  - https://hdl.handle.net/21.15107/rcub_rimsi_1618
ER  - 
@conference{
author = "Dojčinović, Milena and Vasiljević, Zorka Z and Tadic, Nenad and Spreitzer, Matjaz and Rakočević, Lazar and Nikolić, Maria Vesna",
year = "2022",
abstract = "Nickel-manganite is a versatile material used in many technology applications. One of the established uses is as a supercapacitor electrode. The advantage of this type of material is the abundance of required metals, compared to noble metals, the synthesis methods' simplicity, and high redox activity. Metal-oxide battery materials are usually combined with activated carbon to enhance the specific surface area and add to energy storage capacity via surface charge accumulation. In the current work, nickel manganite was synthesized via the sol-gel combustion synthesis method with glycine as fuel and nitrate ions as oxidizers. The post-combustion amorphous powder was calcined at temperatures between 300 and 800 °C. Powders were structurally characterized. Obtained materials were tested as energy storage electrodes in a three-electrode cell setup in 6 M KOH aqueous solution as electrolyte. Methods embedded in electrochemical characterization were cyclic voltammetry (CV), electric impedance spectroscopy (EIS) and constant current chronopotentiometry at different current densities to obtain galvanostatic charge-discharge (GCD) curves. Results show considerable charge storage activity, which can be ascribed to oxido reduction reactions of manganese ions and charge accumulation on the surface of the activated carbon.",
publisher = "Serbian Academy of Sciences and Arts",
journal = "SECOND INTERNATIONAL CONFERENCE ELMINA 2022 Program and Book of Abstracts Publisher:",
title = "Nickel manganite-carbonized alginate composite for use as energy storage electrodes",
pages = "171-170",
url = "https://hdl.handle.net/21.15107/rcub_rimsi_1618"
}
Dojčinović, M., Vasiljević, Z. Z., Tadic, N., Spreitzer, M., Rakočević, L.,& Nikolić, M. V.. (2022). Nickel manganite-carbonized alginate composite for use as energy storage electrodes. in SECOND INTERNATIONAL CONFERENCE ELMINA 2022 Program and Book of Abstracts Publisher:
Serbian Academy of Sciences and Arts., 170-171.
https://hdl.handle.net/21.15107/rcub_rimsi_1618
Dojčinović M, Vasiljević ZZ, Tadic N, Spreitzer M, Rakočević L, Nikolić MV. Nickel manganite-carbonized alginate composite for use as energy storage electrodes. in SECOND INTERNATIONAL CONFERENCE ELMINA 2022 Program and Book of Abstracts Publisher:. 2022;:170-171.
https://hdl.handle.net/21.15107/rcub_rimsi_1618 .
Dojčinović, Milena, Vasiljević, Zorka Z, Tadic, Nenad, Spreitzer, Matjaz, Rakočević, Lazar, Nikolić, Maria Vesna, "Nickel manganite-carbonized alginate composite for use as energy storage electrodes" in SECOND INTERNATIONAL CONFERENCE ELMINA 2022 Program and Book of Abstracts Publisher: (2022):170-171,
https://hdl.handle.net/21.15107/rcub_rimsi_1618 .

INFLUENCE OF CALCINATION TEMPERATURE ON THE STRUCTURE, MORPHOLOGY AND OPTICAL PROPERTIES OF ELECTROSPUN PSEUDOBROOKITE NANOFIBERS

Vasiljević, Zorka Z; Dojčinović, Milena; Vujancevic, Jelena; Spreitzer, Matjaz; Kovač, Janez; Jankovic-Castvan, Ivona; Bartolić, Dragana; Markovic, Smilja; Tadic, Nenad; Nikolić, Maria Vesna

(University of Novi Sad, Faculty of Technology Novi Sad, 2021)

TY  - CONF
AU  - Vasiljević, Zorka Z
AU  - Dojčinović, Milena
AU  - Vujancevic, Jelena
AU  - Spreitzer, Matjaz
AU  - Kovač, Janez
AU  - Jankovic-Castvan, Ivona
AU  - Bartolić, Dragana
AU  - Markovic, Smilja
AU  - Tadic, Nenad
AU  - Nikolić, Maria Vesna
PY  - 2021
UR  - http://rimsi.imsi.bg.ac.rs/handle/123456789/2197
AB  - Novel crystalline iron-titanate fibers were synthesized for the first time to the best of our knowledge, through a simple, low cost electrospinning method followed by calcination treatment at different temperatures (500–750 °C for 3 h and at 500 °C for 6 h and at 550 °C for 4 h). The fibers were prepared from a precursor solution containing polyvinylpyrrolidone (PVP), iron(III) nonahydrate, titanium isopropoxide, N,N-Dimethylformamide and ethanol. As spun fibers were smooth, straight, beadless and uniform forming a nonwoven fibrous mat, with an average diameter of ca. 205 nm. Upon calcination in air the PVP matrice was removed and XRD and FTIR analysis showed that the duration of the calcination process, besides the temperature, had a direct influence on phase formation. Pure phase of pseudobrookite was obtained at 600 °C, 500 °C for 6 h and at 550 °C for 4 h. In addition, the morphology of obtained nanofibers was directly affected by the calcination temperature. The surface of fibers obtained after calcination was no longer smooth and the fiber diameter decreased due to complete degradation of PVP. At 700 oC and 750 °C, fibers were thicker which can be attributed to growth of Fe2TiO5 nanoparticles and simultaneous coalescence of small particles. All samples exhibited a type IV nitrogen adsorption isotherm with a type- H3 indicating slit-shaped mesoporous structure. The BET surface areas of 500 oC for 6 h, 550 oC for 4 h and 600 oC for 3 h were estimated to be 62, 38.7 and 33.2 m2/g, respectively.
PB  - University of Novi Sad, Faculty of Technology Novi Sad
C3  - Abstract book/14th ECerS conference for young scientist in ceramics
T1  - INFLUENCE OF CALCINATION TEMPERATURE ON THE STRUCTURE, MORPHOLOGY AND OPTICAL PROPERTIES OF ELECTROSPUN PSEUDOBROOKITE NANOFIBERS
UR  - https://hdl.handle.net/21.15107/rcub_rimsi_2197
ER  - 
@conference{
author = "Vasiljević, Zorka Z and Dojčinović, Milena and Vujancevic, Jelena and Spreitzer, Matjaz and Kovač, Janez and Jankovic-Castvan, Ivona and Bartolić, Dragana and Markovic, Smilja and Tadic, Nenad and Nikolić, Maria Vesna",
year = "2021",
abstract = "Novel crystalline iron-titanate fibers were synthesized for the first time to the best of our knowledge, through a simple, low cost electrospinning method followed by calcination treatment at different temperatures (500–750 °C for 3 h and at 500 °C for 6 h and at 550 °C for 4 h). The fibers were prepared from a precursor solution containing polyvinylpyrrolidone (PVP), iron(III) nonahydrate, titanium isopropoxide, N,N-Dimethylformamide and ethanol. As spun fibers were smooth, straight, beadless and uniform forming a nonwoven fibrous mat, with an average diameter of ca. 205 nm. Upon calcination in air the PVP matrice was removed and XRD and FTIR analysis showed that the duration of the calcination process, besides the temperature, had a direct influence on phase formation. Pure phase of pseudobrookite was obtained at 600 °C, 500 °C for 6 h and at 550 °C for 4 h. In addition, the morphology of obtained nanofibers was directly affected by the calcination temperature. The surface of fibers obtained after calcination was no longer smooth and the fiber diameter decreased due to complete degradation of PVP. At 700 oC and 750 °C, fibers were thicker which can be attributed to growth of Fe2TiO5 nanoparticles and simultaneous coalescence of small particles. All samples exhibited a type IV nitrogen adsorption isotherm with a type- H3 indicating slit-shaped mesoporous structure. The BET surface areas of 500 oC for 6 h, 550 oC for 4 h and 600 oC for 3 h were estimated to be 62, 38.7 and 33.2 m2/g, respectively.",
publisher = "University of Novi Sad, Faculty of Technology Novi Sad",
journal = "Abstract book/14th ECerS conference for young scientist in ceramics",
title = "INFLUENCE OF CALCINATION TEMPERATURE ON THE STRUCTURE, MORPHOLOGY AND OPTICAL PROPERTIES OF ELECTROSPUN PSEUDOBROOKITE NANOFIBERS",
url = "https://hdl.handle.net/21.15107/rcub_rimsi_2197"
}
Vasiljević, Z. Z., Dojčinović, M., Vujancevic, J., Spreitzer, M., Kovač, J., Jankovic-Castvan, I., Bartolić, D., Markovic, S., Tadic, N.,& Nikolić, M. V.. (2021). INFLUENCE OF CALCINATION TEMPERATURE ON THE STRUCTURE, MORPHOLOGY AND OPTICAL PROPERTIES OF ELECTROSPUN PSEUDOBROOKITE NANOFIBERS. in Abstract book/14th ECerS conference for young scientist in ceramics
University of Novi Sad, Faculty of Technology Novi Sad..
https://hdl.handle.net/21.15107/rcub_rimsi_2197
Vasiljević ZZ, Dojčinović M, Vujancevic J, Spreitzer M, Kovač J, Jankovic-Castvan I, Bartolić D, Markovic S, Tadic N, Nikolić MV. INFLUENCE OF CALCINATION TEMPERATURE ON THE STRUCTURE, MORPHOLOGY AND OPTICAL PROPERTIES OF ELECTROSPUN PSEUDOBROOKITE NANOFIBERS. in Abstract book/14th ECerS conference for young scientist in ceramics. 2021;.
https://hdl.handle.net/21.15107/rcub_rimsi_2197 .
Vasiljević, Zorka Z, Dojčinović, Milena, Vujancevic, Jelena, Spreitzer, Matjaz, Kovač, Janez, Jankovic-Castvan, Ivona, Bartolić, Dragana, Markovic, Smilja, Tadic, Nenad, Nikolić, Maria Vesna, "INFLUENCE OF CALCINATION TEMPERATURE ON THE STRUCTURE, MORPHOLOGY AND OPTICAL PROPERTIES OF ELECTROSPUN PSEUDOBROOKITE NANOFIBERS" in Abstract book/14th ECerS conference for young scientist in ceramics (2021),
https://hdl.handle.net/21.15107/rcub_rimsi_2197 .

Synthesis, structure and electrochemical performance of NiMn2O4

Dojčinović, Milena; Vasiljević, Zorka Z; Tadić, Nenad B.; Krstić, Jugoslav B.; Marković, Smilja; Spreitzer, Matjaž; Kovač, Janez; Nikolić, Maria Vesna

(Novi Sad : Faculty of Technology, 2021)

TY  - CONF
AU  - Dojčinović, Milena
AU  - Vasiljević, Zorka Z
AU  - Tadić, Nenad B.
AU  - Krstić, Jugoslav B.
AU  - Marković, Smilja
AU  - Spreitzer, Matjaž
AU  - Kovač, Janez
AU  - Nikolić, Maria Vesna
PY  - 2021
UR  - https://dais.sanu.ac.rs/123456789/12397
UR  - http://rimsi.imsi.bg.ac.rs/handle/123456789/1630
AB  - NiMn2O4, with a cubic spinel structure and numerous and various applications in modern technology, were synthesized with two synthetic routes: sol-gel combustion method with glycine as fuel and electrospinning method with polyvinylpyrrolidone (PVP). Both amorphous powders from sol-gel synthesis and as-spun fibers from electrospinning synthesis were calcined, electrospun fibers at 400 °C and the sol-gel synthesized powders at 800 °C. Electrospun fibers were previously characterized with DTA-TGA to investigate the influence of thermal process on a polymer fiber.The obtained powders were characterized accordingly. Structural analysis was done via X-ray diffraction (XRD) and results show spinel structure with no impurity. The texture and morphology was investigated via N2 physisorption and transmission electron microscopy (TEM), respectively. Chemical states of elements were investigated by X-ray photoelectron spectroscopy (XPS). The electrochemical performance of the synthesized materials as supercapacitors was tested via cyclic voltammetry (CV), electric impedance spectroscopy (EIS), and chronopotentiometry (CP) to aquire galvanostatic charge-discharge (GCD) curves. Experiments were done in 6 M KOH solution with nickel foam as a working electrode. The results show good electrochemical capacity circa 200 F/g, with the potential for further structural improvement of the materials.
PB  - Novi Sad : Faculty of Technology
C3  - Programme and book of abstracts / 14th ECerS Conference for Young Scientists in Ceramics (CYSC-2021), October 20-23, 2021, Novi Sad
T1  - Synthesis, structure and electrochemical performance of NiMn2O4
EP  - 81
SP  - 81
UR  - https://hdl.handle.net/21.15107/rcub_dais_12397
ER  - 
@conference{
author = "Dojčinović, Milena and Vasiljević, Zorka Z and Tadić, Nenad B. and Krstić, Jugoslav B. and Marković, Smilja and Spreitzer, Matjaž and Kovač, Janez and Nikolić, Maria Vesna",
year = "2021",
abstract = "NiMn2O4, with a cubic spinel structure and numerous and various applications in modern technology, were synthesized with two synthetic routes: sol-gel combustion method with glycine as fuel and electrospinning method with polyvinylpyrrolidone (PVP). Both amorphous powders from sol-gel synthesis and as-spun fibers from electrospinning synthesis were calcined, electrospun fibers at 400 °C and the sol-gel synthesized powders at 800 °C. Electrospun fibers were previously characterized with DTA-TGA to investigate the influence of thermal process on a polymer fiber.The obtained powders were characterized accordingly. Structural analysis was done via X-ray diffraction (XRD) and results show spinel structure with no impurity. The texture and morphology was investigated via N2 physisorption and transmission electron microscopy (TEM), respectively. Chemical states of elements were investigated by X-ray photoelectron spectroscopy (XPS). The electrochemical performance of the synthesized materials as supercapacitors was tested via cyclic voltammetry (CV), electric impedance spectroscopy (EIS), and chronopotentiometry (CP) to aquire galvanostatic charge-discharge (GCD) curves. Experiments were done in 6 M KOH solution with nickel foam as a working electrode. The results show good electrochemical capacity circa 200 F/g, with the potential for further structural improvement of the materials.",
publisher = "Novi Sad : Faculty of Technology",
journal = "Programme and book of abstracts / 14th ECerS Conference for Young Scientists in Ceramics (CYSC-2021), October 20-23, 2021, Novi Sad",
title = "Synthesis, structure and electrochemical performance of NiMn2O4",
pages = "81-81",
url = "https://hdl.handle.net/21.15107/rcub_dais_12397"
}
Dojčinović, M., Vasiljević, Z. Z., Tadić, N. B., Krstić, J. B., Marković, S., Spreitzer, M., Kovač, J.,& Nikolić, M. V.. (2021). Synthesis, structure and electrochemical performance of NiMn2O4. in Programme and book of abstracts / 14th ECerS Conference for Young Scientists in Ceramics (CYSC-2021), October 20-23, 2021, Novi Sad
Novi Sad : Faculty of Technology., 81-81.
https://hdl.handle.net/21.15107/rcub_dais_12397
Dojčinović M, Vasiljević ZZ, Tadić NB, Krstić JB, Marković S, Spreitzer M, Kovač J, Nikolić MV. Synthesis, structure and electrochemical performance of NiMn2O4. in Programme and book of abstracts / 14th ECerS Conference for Young Scientists in Ceramics (CYSC-2021), October 20-23, 2021, Novi Sad. 2021;:81-81.
https://hdl.handle.net/21.15107/rcub_dais_12397 .
Dojčinović, Milena, Vasiljević, Zorka Z, Tadić, Nenad B., Krstić, Jugoslav B., Marković, Smilja, Spreitzer, Matjaž, Kovač, Janez, Nikolić, Maria Vesna, "Synthesis, structure and electrochemical performance of NiMn2O4" in Programme and book of abstracts / 14th ECerS Conference for Young Scientists in Ceramics (CYSC-2021), October 20-23, 2021, Novi Sad (2021):81-81,
https://hdl.handle.net/21.15107/rcub_dais_12397 .

Exploring the impact of calcination parameters on the crystal structure, morphology, and optical properties of electrospun Fe2TiO5 nanofibers

Vasiljević, Zorka Z; Dojčinović, Milena; Vujančević, Jelena; Spreitzer, Matjaz; Kovač, Janez; Bartolić, Dragana; Marković, Smilja; Jankovic-Castvan, Ivona; Tadić, Nenad B.; Nikolić, Maria Vesna

(Royal Soc Chemistry, Cambridge, 2021)

TY  - JOUR
AU  - Vasiljević, Zorka Z
AU  - Dojčinović, Milena
AU  - Vujančević, Jelena
AU  - Spreitzer, Matjaz
AU  - Kovač, Janez
AU  - Bartolić, Dragana
AU  - Marković, Smilja
AU  - Jankovic-Castvan, Ivona
AU  - Tadić, Nenad B.
AU  - Nikolić, Maria Vesna
PY  - 2021
UR  - http://rimsi.imsi.bg.ac.rs/handle/123456789/1403
AB  - Nanostructured Fe2TiO5 (pseudobrookite), a mixed metal oxide material holds significant promise for utilization in energy and environmental applications. However, its full application is still hindered due to the difficulty to synthesize monophasic Fe2TiO5 with high crystallinity and a large specific surface area. Herein, Fe2TiO5 nanofibers were synthesized via a versatile and low-cost electrospinning method, followed by a calcination process at different temperatures. We found a significant effect of the calcination process and its duration on the crystalline phase in the form of either pseudobrookite or pseudobrookite-hematite-rutile and the morphology of calcined nanofibers. The crystallite size increased whereas the specific surface area decreased with an increase in calcination temperature. At higher temperatures, the growth of Fe2TiO5 nanoparticles and simultaneous coalescence of small particles was noted. The highest specific surface area was obtained for the sample calcined at 500 degrees C for 6 h (S-BET = 64.4 m(2) g(-1)). This work opens new opportunities in the synthesis of Fe2TiO5 nanostructures using the electrospinning method and a subsequent optimized calcination process for energy-related applications.
PB  - Royal Soc Chemistry, Cambridge
T2  - RSC Advances
T1  - Exploring the impact of calcination parameters on the crystal structure, morphology, and optical properties of electrospun Fe2TiO5 nanofibers
EP  - 32368
IS  - 51
SP  - 32358
VL  - 11
DO  - 10.1039/d1ra05748k
ER  - 
@article{
author = "Vasiljević, Zorka Z and Dojčinović, Milena and Vujančević, Jelena and Spreitzer, Matjaz and Kovač, Janez and Bartolić, Dragana and Marković, Smilja and Jankovic-Castvan, Ivona and Tadić, Nenad B. and Nikolić, Maria Vesna",
year = "2021",
abstract = "Nanostructured Fe2TiO5 (pseudobrookite), a mixed metal oxide material holds significant promise for utilization in energy and environmental applications. However, its full application is still hindered due to the difficulty to synthesize monophasic Fe2TiO5 with high crystallinity and a large specific surface area. Herein, Fe2TiO5 nanofibers were synthesized via a versatile and low-cost electrospinning method, followed by a calcination process at different temperatures. We found a significant effect of the calcination process and its duration on the crystalline phase in the form of either pseudobrookite or pseudobrookite-hematite-rutile and the morphology of calcined nanofibers. The crystallite size increased whereas the specific surface area decreased with an increase in calcination temperature. At higher temperatures, the growth of Fe2TiO5 nanoparticles and simultaneous coalescence of small particles was noted. The highest specific surface area was obtained for the sample calcined at 500 degrees C for 6 h (S-BET = 64.4 m(2) g(-1)). This work opens new opportunities in the synthesis of Fe2TiO5 nanostructures using the electrospinning method and a subsequent optimized calcination process for energy-related applications.",
publisher = "Royal Soc Chemistry, Cambridge",
journal = "RSC Advances",
title = "Exploring the impact of calcination parameters on the crystal structure, morphology, and optical properties of electrospun Fe2TiO5 nanofibers",
pages = "32368-32358",
number = "51",
volume = "11",
doi = "10.1039/d1ra05748k"
}
Vasiljević, Z. Z., Dojčinović, M., Vujančević, J., Spreitzer, M., Kovač, J., Bartolić, D., Marković, S., Jankovic-Castvan, I., Tadić, N. B.,& Nikolić, M. V.. (2021). Exploring the impact of calcination parameters on the crystal structure, morphology, and optical properties of electrospun Fe2TiO5 nanofibers. in RSC Advances
Royal Soc Chemistry, Cambridge., 11(51), 32358-32368.
https://doi.org/10.1039/d1ra05748k
Vasiljević ZZ, Dojčinović M, Vujančević J, Spreitzer M, Kovač J, Bartolić D, Marković S, Jankovic-Castvan I, Tadić NB, Nikolić MV. Exploring the impact of calcination parameters on the crystal structure, morphology, and optical properties of electrospun Fe2TiO5 nanofibers. in RSC Advances. 2021;11(51):32358-32368.
doi:10.1039/d1ra05748k .
Vasiljević, Zorka Z, Dojčinović, Milena, Vujančević, Jelena, Spreitzer, Matjaz, Kovač, Janez, Bartolić, Dragana, Marković, Smilja, Jankovic-Castvan, Ivona, Tadić, Nenad B., Nikolić, Maria Vesna, "Exploring the impact of calcination parameters on the crystal structure, morphology, and optical properties of electrospun Fe2TiO5 nanofibers" in RSC Advances, 11, no. 51 (2021):32358-32368,
https://doi.org/10.1039/d1ra05748k . .
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