Showing posts with label liquid crystals. Show all posts
Showing posts with label liquid crystals. Show all posts

Thursday, August 11, 2011

Determination of Liquid Crystal Phase Transitions

Liquid crystals play an important part in the procession of advanced technology. They are unparalleled in their properties and are widely exploited for technical innovations including LCD displays for monitors, portable computers, cell phones, digital clocks and other electrical appliances.
Visual picture of phase transitions
The liquid crystal state is a distinct phase observed between the crystalline (solid) and isotropic (liquid) states.

Monday, May 23, 2011

Chemistry News Articles: Liquid crystal droplets discovered to be .

In the computer displays of medical equipment in hospitals and clinics, liquid crystal technologies have already establish a major role. But a discovery reported from the University of Wisconsin-Madison suggests that micrometer-sized droplets of liquid crystal, which have been ground to alter their order and optical appearance in answer to the front of very low concentrations of a specific bacterial lipid, might see new uses in a rate of biological contexts.

Wednesday, October 6, 2010

Liquid Music Tour Dates: New liquid crystal could transform .

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Chemists at Vanderbilt University have created a new role of liquid crystals with unique electrical properties that they say could revolutionize digital displays.

received sake from a number of commercial companies who are currently evaluating it.

"We have created liquid crystals with an unprecedented electric dipole, more than repeat that of existing liquid crystals," says professor Piotr Kaszynski.

New liquid crystal could transform digital displays

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Chemists at Vanderbilt University have created a new character of liquid crystals with unique electrical properties that they say could revolutionize digital displays.

received sake from a total of commercial companies who are currently evaluating it.

"We have created liquid crystals with an unprecedented electric dipole, more than double that of existing liquid crystals," says professor Piotr Kaszynski.