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High-stability carbon nanometer fluorescence dye

A fluorescent dyeing and carbon nanotechnology, which is applied in the direction of luminescent materials, chemical instruments and methods, etc., can solve the problems of not being used on a large scale, not being able to be applied on a large scale, and limiting the scope of application

Inactive Publication Date: 2013-10-09
SHANGHAI DONGZHOU IND
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Most of the fluorescent dyes used in existing luminescent materials are mainly organic materials. It has been restricted for a long time, such as in the field of luminous lighting, outdoor advertising, luminous signage and other fields, it cannot be applied on a large scale
For example, the existing long-lasting luminescent materials, green and blue-green have good brightness and long life, while yellow and orange have poor brightness and life. Yellow and red are mainly dyed with organic dyes or sulfide rare earth materials, and none of them have been used on a large scale.
The existing fluorescent pigments have better stability than fluorescent dyes, but they are opaque, large in size and slightly toxic, so people are greatly restricted in their use.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment

[0027] Dissolve the carbon nano-dot fluorescent material in water to form a transparent yellow color, add 10% sodium silicate solution, add long-lasting green aluminate luminescent material, dry, and then pulverize to form a yellow-emitting long-lasting luminescent powder.

[0028] Yellow long afterglow glow powder can be mixed with plastic, paint mixed, epoxy mixed, silicone mixed. It can also be directly used in LED devices.

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Abstract

The invention provides a high-stability carbon nanometer fluorescence dye. The high-stability carbon nanometer fluorescence dye is coated on the surface of a conventional luminescent material, can be used for changing a luminescent spectrum and comprises a carbon nano-dot fluorescent material, a thinning agent, a binding agent and a fluorescent dyeing matter. The high-stability carbon nanometer fluorescence dye is characterized in that the carbon nano-dot fluorescent material is mixed with the thinning agent to form a fluorescent solution containing the carbon nano-dot fluorescent material; the fluorescent solution is uniformly mixed with the binding agent to form a fluorescent binding agent; and the fluorescent binding agent is combined with the fluorescent material. The high-stability carbon nanometer fluorescence dye provided by the invention has the characteristics of transparency, stability, no toxicity, environmental protection, low cost, simplicity in use and the like. The high-stability carbon nanometer fluorescence dye can be widely applied to the fields such as color long afterglow, light emitting display, light conversion agents, anti-fake fluorescent materials and various coatings.

Description

technical field [0001] The invention belongs to the preparation technology of luminescent material in the field of solid luminescence. Background technique [0002] Most of the fluorescent dyes used in existing luminescent materials are mainly organic materials. Due to their poor temperature resistance, poor light fastness, and fear of humidity, their application range has been limited for a long time, such as in the field of luminous lighting, outdoor advertising, and luminous indicators. Signage and other fields cannot be applied on a large scale. Such as the existing long-lasting luminescent materials, green and blue-green have good brightness and long life, while yellow and orange have poor brightness and life. Yellow and red are mainly dyed with organic dyes or sulfide rare earth materials, and they have not been used on a large scale. The existing fluorescent pigments have better stability than fluorescent dyes, but they are opaque, large in size and slightly toxic, ...

Claims

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Application Information

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IPC IPC(8): C09K11/65C09K11/02
Inventor 郑岩刘星元边静宇耿树范
Owner SHANGHAI DONGZHOU IND
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