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However, the presence of higher concentration of V 2 O 5 in the glass matrix seems to be a hindrance for getting the high luminescence efficiency especially in the red region.
Exposure to ambient light does not have a noticeable effect on the electrical properties, which is an important point as regards the application of these devices in active matrix displays.
These observations suggest that domestic intensity light does not maintain phase without scheduled sleep/activity, possibly due to indirect effects on behaviour influencing light exposure.
The matrix therefore plays a key role by strongly absorbing the laser light energy and causing, indirectly, the analyte to vaporize.
The presence of photoinitiator molecules within host matrix clearly indicating the relation between damage threshold and absorption of light is revealed.
The attenuation of field strength due to the presence of the matrix varies only slightly from the edge to the centre of the matrix, so the pattern of light intensity is in good qualitative agreement with the pattern of field strength.
The resulting simple passive matrix quantum dot light emitting displays possess excellent photoelectric characteristics, which represents a step toward practical application.
The experimental results show that these dark I-V diagnostic parameters, complemented by light I-V performance and series-resistance measurements, can accurately detect and identify the four degradation modes discussed.
Furthermore, it is shown that the discomfort glare caused by a matrix light source can be evaluated by applying the revised position index to the UGR.

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