نتایج جستجو برای: figure of merit

تعداد نتایج: 21167355  

Journal: :Nano letters 2011
Xiao Yan Giri Joshi Weishu Liu Yucheng Lan Hui Wang Sangyeop Lee J W Simonson S J Poon T M Tritt Gang Chen Z F Ren

Half-Heuslers would be important thermoelectric materials due to their high temperature stability and abundance if their dimensionless thermoelectric figure of merit (ZT) could be made high enough. The highest peak ZT of a p-type half-Heusler has been so far reported about 0.5 due to the high thermal conductivity. Through a nanocomposite approach using ball milling and hot pressing, we have ach...

2012
Suyong Kwon Yong-Gyoo Kim Sanghyun Jong Chul Kim

The apparatus for evaluation of the figure of merit (ZT) of thermoelectric devices has been developed. ZT value is comprised of three physical quantities, Seebeck coefficient, electrical conductivity, and thermal conductivity. However, to date, the ZT values of the thermoelectric devices have been evaluated by Harman method due to difficulty in measuring thermal conductivity of the devices with...

Journal: :ACS nano 2011
Peter Offermans Martijn C Schaafsma Said R K Rodriguez Yichen Zhang Mercedes Crego-Calama Sywert H Brongersma Jaime Gómez Rivas

We demonstrate an improvement by more than 1 order of magnitude of the figure of merit (FoM) of plasmonic nanoparticle sensors by means of the diffractive coupling of localized surface plasmon resonances. The coupling in arrays of nanoparticles leads to Fano resonances with narrow line widths known as surface lattice resonances, which are very suitable for the sensitive detection of small chang...

Journal: :Nanoscale 2014
Ho Sun Shin Seong Gi Jeon Jin Yu Yong-Sung Kim Hyun Min Park Jae Yong Song

Thermoelectric figure-of-merits (ZT) are enhanced or degraded by crystal defects such as twins and excess atoms that are correlated with thermal conductivity (k) and carrier concentration (n). For Bi2Te3, it is unclear whether the crystal defects can enhance ZT without a degradation in the thermopower factor. In the present study, n-type Bi2Te3 nanowires (NWs) are electrochemically synthesized ...

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