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Induction annealing and subsequent quenching: Effect on the thermoelectric properties of boron-doped nanographite ensembles
Journal article   Peer reviewed

Induction annealing and subsequent quenching: Effect on the thermoelectric properties of boron-doped nanographite ensembles

Ming Xie, Chee Huei Lee, Jiesheng Wang, Yoke Khin Yap, Paola Bruno, Dieter Gruen, Dileep Singh, Jules Routbort and Argonne National Lab. (ANL), Argonne, IL (United States)
Review of scientific instruments, Vol.81(4), p.043909
01/04/2010
PMID: 20441352

Abstract

Instruments & Instrumentation Physical Sciences Physics Physics, Applied Science & Technology Technology
Boron-doped nanographite ensembles (NGEs) are interesting thermoelectric nanomaterials for high temperature applications. Rapid induction annealing and quenching has been applied to boron-doped NGEs using a relatively low-cost, highly reliable, laboratory built furnace to show that substantial improvements in thermoelectric power factors can be achieved using this methodology. Details of the design and performance of this compact induction furnace as well as results of the thermoelectric measurements will be reported here.

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