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Featured researches published by Brooks O'Quinn.


Nature | 2001

Thin-film thermoelectric devices with high room-temperature figures of merit

Rama Venkatasubramanian; Edward Siivola; Thomas Colpitts; Brooks O'Quinn

Thermoelectric materials are of interest for applications as heat pumps and power generators. The performance of thermoelectric devices is quantified by a figure of merit, ZT, where Z is a measure of a materials thermoelectric properties and T is the absolute temperature. A material with a figure of merit of around unity was first reported over four decades ago, but since then—despite investigation of various approaches—there has been only modest progress in finding materials with enhanced ZT values at room temperature. Here we report thin-film thermoelectric materials that demonstrate a significant enhancement in ZT at 300 K, compared to state-of-the-art bulk Bi2Te3 alloys. This amounts to a maximum observed factor of ∼2.4 for our p-type Bi2Te3/Sb2Te3 superlattice devices. The enhancement is achieved by controlling the transport of phonons and electrons in the superlattices. Preliminary devices exhibit significant cooling (32 K at around room temperature) and the potential to pump a heat flux of up to 700 W cm-2; the localized cooling and heating occurs some 23,000 times faster than in bulk devices. We anticipate that the combination of performance, power density and speed achieved in these materials will lead to diverse technological applications: for example, in thermochemistry-on-a-chip, DNA microarrays, fibre-optic switches and microelectrothermal systems.


Archive | 2006

Thin film thermoelectric devices for power conversion and cooling

Rama Venkatasubramanian; Brooks O'Quinn; Edward Siivola; K. Coonley; Pratima Addepalli; Randall G. Alley; J. B. Posthill; Thomas Colpitts; Anil J. Reddy; James Christopher Caylor; P. Thomas


Archive | 2006

Methods of forming thermoelectric devices including superlattice structures of alternating layers with heterogeneous periods and related devices

Rama Venkatasubramanian; Edward Siivola; Brooks O'Quinn; James Christopher Caylor; Jonathan Pierce


Journal of Electronic Materials | 2001

In-situ monitoring of the growth of Bi 2 Te 3 and Sb 2 Te 3 films and Bi 2 Te 3 -Sb 2 Te 3 superlattice using spectroscopic ellipsometry

Hao Cui; Ishwara B. Bhat; Brooks O'Quinn; Rama Venkatasubramanian


Archive | 2004

Superlattice thin-film thermoelectric material and device technologies

Rama Venkatasubramanian; Edward Siivola; Brooks O'Quinn


Archive | 2006

Methods of forming thermoelectric devices including superlattice structures and related devices

James Christopher Caylor; Brooks O'Quinn; Jonathan Pierce; Edward Siivola; Rama Venkatasubramanian


Archive | 2012

Superlattice thermoelectric materials and devices based on Bi2Te3 thin film

Rama Venkatasubramanian; Jonathan Pierce; Thomas Colpitts; Gary Bulman; Charles Stokes; Philip Barletta; Brooks O'Quinn; Edward Siivola


Archive | 2012

Thin-film superlattice thermoelectric devices for energy harvesting and thermal management:

Rama Venkatasubramanian; Jonathan Pierce; Thomas Colpitts; Gary Bulman; Charles Stokes; J. B. Posthill; Philip Barletta; David A. Koester; Brooks O'Quinn; Edward Siivola


Archive | 2005

Dispositifs thermoelectriques a couches minces pour la gestion thermique de points chauds dans des microprocesseurs et d'autres dispositifs electroniques

Rama Venkatasubramanian; Randall G. Alley; Pratima Addepalli; Anil J. Reddy; Edward Siivola; Brooks O'Quinn; K. Coonley; J. B. Posthill; Thomas Colpitts


ACS symposium series | 2005

Nanostructured superlattice thin-film thermoelectric devices

Rama Venkatasubramanian; Edward Siivola; Brooks O'Quinn; K. Coonley; Thomas Colpitts; Pratima Addepalli; Mary Napier; M. J. Mantini

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K. Coonley

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