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1.
Lab Chip ; 11(20): 3401-3, 2011 Oct 21.
Artigo em Inglês | MEDLINE | ID: mdl-21863149

RESUMO

A Laplace pressure gradient between a droplet and a liquid meniscus was utilized to create an on-demand constant flow rate capillary pump. Electrowetting on dielectric was implemented to induce the pressure gradient in the microchannel. For an initial droplet volume of 0.3 µL and a power of 12 nW a constant flow rate of 0.02 µL s(-1) was demonstrated. The effects of the wetting line energy on the static contact angle and the wetting line velocity on the dynamic contact angle in the pump operation were studied. Sample loading on-demand could be achieved by regulating an electric potential.

2.
Nano Lett ; 11(3): 977-81, 2011 Mar 09.
Artigo em Inglês | MEDLINE | ID: mdl-21280657

RESUMO

A novel graphene-on-organic film fabrication method that is compatible with a batch microfabrication process was developed and used for electromechanically driven microactuators. A very thin layer of graphene sheets was monolithically integrated and the unique material characteristics of graphene including negative thermal expansion and high electrical conductivity were exploited to produce a bimorph actuation. A large displacement with rapid response was observed while maintaining the low power consumption. This enabled the successful demonstration of transparent graphene-based organic microactuators.

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