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Influence of Grain Size on the Thermoelectric Properties of Polycrystalline Silicon Nanowires
by
Narducci, D.
, Solmi, S.
, Belsito, L.
, Ferri, M.
, Roncaglia, A.
, Suriano, F.
, Moscatelli, F.
, Gazzadi, G.C.
, Frabboni, S.
, Mancarella, F.
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Electric properties
/ Electronics and Microelectronics
/ Grain size
/ Instrumentation
/ Materials Science
/ Nanowires
/ Optical and Electronic Materials
/ Silicon
/ Solid State Physics
/ Thermal energy
2015
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Influence of Grain Size on the Thermoelectric Properties of Polycrystalline Silicon Nanowires
by
Narducci, D.
, Solmi, S.
, Belsito, L.
, Ferri, M.
, Roncaglia, A.
, Suriano, F.
, Moscatelli, F.
, Gazzadi, G.C.
, Frabboni, S.
, Mancarella, F.
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Electric properties
/ Electronics and Microelectronics
/ Grain size
/ Instrumentation
/ Materials Science
/ Nanowires
/ Optical and Electronic Materials
/ Silicon
/ Solid State Physics
/ Thermal energy
2015
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Influence of Grain Size on the Thermoelectric Properties of Polycrystalline Silicon Nanowires
by
Narducci, D.
, Solmi, S.
, Belsito, L.
, Ferri, M.
, Roncaglia, A.
, Suriano, F.
, Moscatelli, F.
, Gazzadi, G.C.
, Frabboni, S.
, Mancarella, F.
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Electric properties
/ Electronics and Microelectronics
/ Grain size
/ Instrumentation
/ Materials Science
/ Nanowires
/ Optical and Electronic Materials
/ Silicon
/ Solid State Physics
/ Thermal energy
2015
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Influence of Grain Size on the Thermoelectric Properties of Polycrystalline Silicon Nanowires
Journal Article
Influence of Grain Size on the Thermoelectric Properties of Polycrystalline Silicon Nanowires
2015
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Overview
The thermoelectric properties of doped polycrystalline silicon nanowires have been investigated using doping techniques that impact grain growth in different ways during the doping process. In particular, As- and P-doped nanowires were fabricated using a process flow which enables the manufacturing of surface micromachined nanowires contacted by Al/Si pads in a four-terminal configuration for thermal conductivity measurement. Also, dedicated structures for the measurement of the Seebeck coefficient and electrical resistivity were prepared. In this way, the thermoelectric figure of merit of the nanowires could be evaluated. The As-doped nanowires were heavily doped by thermal doping from spin-on-dopant sources, whereas predeposition from POCl
3
was utilized for the P-doped nanowires. The thermal conductivity measured on the nanowires appeared to depend on the doping type. The P-doped nanowires showed, for comparable cross-sections, higher thermal conductivity values than As-doped nanowires, most probably because of their finer grain texture, resulting from the inhibition effect that such doping elements have on grain growth during high-temperature annealing.
Publisher
Springer US,Springer Nature B.V
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