Lee, Namkyu ORCID: 0000-0002-0342-9764 and Wiegand, Simone ORCID: 0000-0001-6333-1956 (2020). Thermophoretic Micron-Scale Devices: Practical Approach and Review. Entropy, 22 (9). BASEL: MDPI. ISSN 1099-4300

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Abstract

In recent years, there has been increasing interest in the development of micron-scale devices utilizing thermal gradients to manipulate molecules and colloids, and to measure their thermophoretic properties quantitatively. Various devices have been realized, such as on-chip implements, micro-thermogravitational columns and other micron-scale thermophoretic cells. The advantage of the miniaturized devices lies in the reduced sample volume. Often, a direct observation of particles using various microscopic techniques is possible. On the other hand, the small dimensions lead to some technical problems, such as a precise temperature measurement on small length scale with high spatial resolution. In this review, we will focus on the state of the art thermophoretic micron-scale devices, covering various aspects such as generating temperature gradients, temperature measurement, and the analysis of the current micron-scale devices. We want to give researchers an orientation for their development of thermophoretic micron-scale devices for biological, chemical, analytical, and medical applications.

Item Type: Journal Article
Creators:
CreatorsEmailORCIDORCID Put Code
Lee, NamkyuUNSPECIFIEDorcid.org/0000-0002-0342-9764UNSPECIFIED
Wiegand, SimoneUNSPECIFIEDorcid.org/0000-0001-6333-1956UNSPECIFIED
URN: urn:nbn:de:hbz:38-320305
DOI: 10.3390/e22090950
Journal or Publication Title: Entropy
Volume: 22
Number: 9
Date: 2020
Publisher: MDPI
Place of Publication: BASEL
ISSN: 1099-4300
Language: English
Faculty: Faculty of Mathematics and Natural Sciences
Divisions: Faculty of Mathematics and Natural Sciences > Department of Chemistry > Institute of Physical Chemistry
Subjects: no entry
Uncontrolled Keywords:
KeywordsLanguage
THERMAL-DIFFUSION; FLUORESCENCE LIFETIME; ELECTRIC-FIELDS; TEMPERATURE; MICROFLUIDICS; SORET; THERMODIFFUSION; MANIPULATION; COEFFICIENTS; PARTICLESMultiple languages
Physics, MultidisciplinaryMultiple languages
Refereed: Yes
URI: http://kups.ub.uni-koeln.de/id/eprint/32030

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