Characterizing and patterning of PDMS-based conducting composites
Characterizing and patterning of PDMS-based conducting composites
Conducting polydimethylsiloxane (PDMS) composites are synthesized by mixing conductive nano- or microparticles with a PDMS gel. Experiments show that such composites exhibit good electrical conductivity and mechanical reliability, as well as desirable thermal characteristics. 3D microstructures, such as for the use of bio-microchips, can be realized by a simple lithographic technique and a realistic 3D application is demonstrated (see figure).
2682-2686
Niu, X. Z.
f3d964fb-23b4-45db-92fe-02426e4e76fa
Peng, S. L.
46cdadd9-8c62-42a6-86b2-b3da83fab077
Liu, L. Y.
f591abe7-6522-4afd-b7fe-af83db39f51e
Wen, W. J.
032d16a6-9456-4c30-8015-b2c937f17c16
Sheng, P.
8bc15b5e-a80c-47c9-8c32-f39eba9a3c2f
2007
Niu, X. Z.
f3d964fb-23b4-45db-92fe-02426e4e76fa
Peng, S. L.
46cdadd9-8c62-42a6-86b2-b3da83fab077
Liu, L. Y.
f591abe7-6522-4afd-b7fe-af83db39f51e
Wen, W. J.
032d16a6-9456-4c30-8015-b2c937f17c16
Sheng, P.
8bc15b5e-a80c-47c9-8c32-f39eba9a3c2f
Niu, X. Z., Peng, S. L., Liu, L. Y., Wen, W. J. and Sheng, P.
(2007)
Characterizing and patterning of PDMS-based conducting composites.
Advanced Materials, 19 (18), .
(doi:10.1002/adma.200602515).
Abstract
Conducting polydimethylsiloxane (PDMS) composites are synthesized by mixing conductive nano- or microparticles with a PDMS gel. Experiments show that such composites exhibit good electrical conductivity and mechanical reliability, as well as desirable thermal characteristics. 3D microstructures, such as for the use of bio-microchips, can be realized by a simple lithographic technique and a realistic 3D application is demonstrated (see figure).
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Published date: 2007
Organisations:
Mechatronics
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Local EPrints ID: 199903
URI: http://eprints.soton.ac.uk/id/eprint/199903
ISSN: 1521-4095
PURE UUID: 08741fa2-35c5-4f63-9e7a-87273aa3a6e8
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Date deposited: 27 Oct 2011 09:04
Last modified: 14 Mar 2024 04:17
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Author:
S. L. Peng
Author:
L. Y. Liu
Author:
W. J. Wen
Author:
P. Sheng
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