Zobrazeno 1 - 10
of 103
pro vyhledávání: '"Amelia Montone"'
On Tailoring Co-Precipitation Synthesis to Maximize Production Yield of Nanocrystalline Wurtzite ZnS
Publikováno v:
Nanomaterials, Vol 11, Iss 3, p 715 (2021)
Pyroelectric materials can harvest energy from naturally occurring ambient temperature changes, as well as from artificial temperature changes, notably from industrial activity. Wurtzite- based materials have the advantage of being cheap, non-toxic,
Externí odkaz:
https://doaj.org/article/c8d198d232fd4fc1affb1e9b8efb28e3
On Tailoring Co-Precipitation Synthesis to Maximize Production Yield of Nanocrystalline Wurtzite ZnS
Publikováno v:
Nanomaterials, Vol 11, Iss 715, p 715 (2021)
Nanomaterials
Volume 11
Issue 3
Nanomaterials
Volume 11
Issue 3
Pyroelectric materials can harvest energy from naturally occurring ambient temperature changes, as well as from artificial temperature changes, notably from industrial activity. Wurtzite- based materials have the advantage of being cheap, non-toxic,
Autor:
Radenka Krsmanovic Whiffen, Elena Salernitano, Selene Grilli, Giuseppe Magnani, Francesca Mazzanti, Luciano Pilloni, Amelia Montone
The Two-Step Sintering (TSS) process is a useful method to obtain sintered materials of high density and to limit the grain growth associated with the final stage of the sintering process. One of the main advantages of this method is the lowering of
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______2659::5be507c9c85613e24fa66fd59336f78d
https://zenodo.org/record/4110995
https://zenodo.org/record/4110995
Autor:
Radenka Krsmanovic Whiffen, Loris Pietrelli, Luciano Pilloni, Giuseppe Magnani, Elena Salernitano, Selene Grilli, Francesca Mazzanti, Amelia Montone
The pyroelectric performances of non-ferroelectric pyroelectrics like wurtzite- based materials (e.g. AlN, GaN, CdS or ZnO) make them important, although not widely used, compared to the current state-of-the-art ferroelectrics. Their high chemical an
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::f48e83b3d03a91e863e843b23d963fbd
Autor:
Elena Salernitano, Selene Grilli, Radenka Krsmanovic Whiffen, Giuseppe Magnani, Francesca Mazzanti, Amelia Montone, Luciano Pilloni
Pyrolectric materials are able to harvest energy both from naturally and artificially occurring temperature changes. These materials could be the right way to recover some of the enormous amount of energy wasted as heat and help to develop new device
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::167b353a1c356f29e6543a0630302aa7
Autor:
Marcello Baricco, Torben R. Jensen, Julian Jepsen, Alastair D. Stuart, José M. Bellosta von Colbe, José R. Ares, Mykhaylol V. Lototskyy, Amelia Montone, Craig E. Buckley, Giovanni Capurso, David M. Grant, Thomas Klassen, H.N. Yang, I. Jacob, Jussara Barale, Volodymyr A. Yartys, Drew A. Sheppard, Gavin S. Walker, Kandavel Manickam, Colin J. Webb, Julián Puszkiel, Sabrina Sartori, Matylda N. Guzik, Andreas Züttel, Noris Gallandat, Emil H. Jensen, Martin Dornheim
Publikováno v:
International journal of hydrogen energy
Bellosta von Colbe, J, Ares, J R, Barale, J, Baricco, M, Buckley, C, Capurso, G, Gallandat, N, Grant, D M, Guzik, M N, Jacob, I, Jensen, E H, Jensen, T, Jepsen, J, Klassen, T, Lototskyy, M V, Manickam, K, Montone, A, Puszkiel, J, Sartori, S, Sheppard, D A, Stuart, A, Walker, G, Webb, C J, Yang, H, Yartys, V, Züttel, A & Dornheim, M 2019, ' Application of hydrides in hydrogen storage and compression : Achievements, outlook and perspectives ', International Journal of Hydrogen Energy, vol. 44, no. 15, pp. 7780-7808 . https://doi.org/10.1016/j.ijhydene.2019.01.104
CONICET Digital (CONICET)
Consejo Nacional de Investigaciones Científicas y Técnicas
instacron:CONICET
Biblos-e Archivo. Repositorio Institucional de la UAM
instname
International Journal of Hydrogen Energy
Bellosta von Colbe, J.; Ares, J.-R.; Barale, J.; Baricco, M.; Buckley, C.; Capurso, G.; Gallandat, N.; Grant, D.M.; Guzik, M.N.; Jacob, I.; Jensen, E.H.; Jensen, T.; Jepsen, J.; Klassen, T.; Lototskyy, M.V.; Manickam, K.; Montone, A.; Puszkiel, J.; Sartori, S.; Sheppard, D.A.; Stuart, A.; Walker, G.; Webb, C.J.; Yang, H.; Yartys, V.; Zuettel, A.; Dornheim, M.: Application of hydrides in hydrogen storage and compression: Achievements, outlook and perspectives. In: International Journal of Hydrogen Energy. Vol. 44 (2019) 15, 7780-. (DOI: /10.1016/j.ijhydene.2019.01.104)
Bellosta von Colbe, J, Ares, J R, Barale, J, Baricco, M, Buckley, C, Capurso, G, Gallandat, N, Grant, D M, Guzik, M N, Jacob, I, Jensen, E H, Jensen, T, Jepsen, J, Klassen, T, Lototskyy, M V, Manickam, K, Montone, A, Puszkiel, J, Sartori, S, Sheppard, D A, Stuart, A, Walker, G, Webb, C J, Yang, H, Yartys, V, Züttel, A & Dornheim, M 2019, ' Application of hydrides in hydrogen storage and compression : Achievements, outlook and perspectives ', International Journal of Hydrogen Energy, vol. 44, no. 15, pp. 7780-7808 . https://doi.org/10.1016/j.ijhydene.2019.01.104
CONICET Digital (CONICET)
Consejo Nacional de Investigaciones Científicas y Técnicas
instacron:CONICET
Biblos-e Archivo. Repositorio Institucional de la UAM
instname
International Journal of Hydrogen Energy
Bellosta von Colbe, J.; Ares, J.-R.; Barale, J.; Baricco, M.; Buckley, C.; Capurso, G.; Gallandat, N.; Grant, D.M.; Guzik, M.N.; Jacob, I.; Jensen, E.H.; Jensen, T.; Jepsen, J.; Klassen, T.; Lototskyy, M.V.; Manickam, K.; Montone, A.; Puszkiel, J.; Sartori, S.; Sheppard, D.A.; Stuart, A.; Walker, G.; Webb, C.J.; Yang, H.; Yartys, V.; Zuettel, A.; Dornheim, M.: Application of hydrides in hydrogen storage and compression: Achievements, outlook and perspectives. In: International Journal of Hydrogen Energy. Vol. 44 (2019) 15, 7780-. (DOI: /10.1016/j.ijhydene.2019.01.104)
Metal hydrides are known as a potential efficient, low-risk option for high-density hydrogen storage since the late 1970s. In this paper, the present status and the future perspectives of the use of metal hydrides for hydrogen storage are discussed.
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::3ef6000c87bb4a6631be2ce8b9f39788
https://hdl.handle.net/11250/2588094
https://hdl.handle.net/11250/2588094
Publikováno v:
International Journal of Hydrogen Energy. 41:14455-14460
Development of technologies which utilize hydrogen as energy vector requires the realization of efficient gas storage systems. Materials suitable for hydrogen storage at the solid state have to fulfill some specific requirements in order to be used i
Autor:
Bernardo Molinas, H.A. Peretti, D. Mirabile Gattia, Maximiliano Melnichuk, Amelia Montone, H.L. Corso, Annalisa Aurora, M. Scapin, A. Pontarollo
Publikováno v:
International Journal of Hydrogen Energy. 41:14484-14490
Among hydrogen storage materials, the MmNi5 (Mm = mischmetal, a mixture of rare earth elements) family of alloys has good properties for transportation technologies due to their ability to react reversibly with hydrogen at moderate pressures and temp
Autor:
I. Di Sarcina, Marilena Re, M. Vittori Antisari, E. Pesce, F. De Pascalis, Amelia Montone, Michele Nacucchi, Daniele Mirabile Gattia
Publikováno v:
International Journal of Hydrogen Energy. 41:9834-9840
Heat management in hydrogen storage tanks is a mandatory issue in order to ensure high level performances both in terms of hydrogen release/uptake kinetics and storage capacity. Previous research has ascertained that powders tend to pack and sinter d
Autor:
T.-H. Steriotis, D. Mirabile Gattia, Gianni Barucca, Christos Tampaxis, Dimitra Giasafaki, Georgia Charalambopoulou, Amelia Montone
Publikováno v:
Journal of Alloys and Compounds. 645:S485-S489
Single wall carbon nanohorns as well as their thermally oxidized derivatives were decorated with Pd nanoparticles and their H2 sorption performance was examined at 298 K up to 20 bar. The specific surface area of the nanohorns was increased through a