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Preparation method of carbon dot and array thereof

A carbon dot and gold polymer technology, applied in the field of preparation of nanomaterials, can solve the problems of unfavorable promotion, weak single-molecule DNA fluorescence, and high cost of use, and achieve the effect of realizing encrypted information transmission and simple operation.

Active Publication Date: 2017-07-25
GUANGZHOU CLUSTERBIOPHOTON TECH CO LTD
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Problems solved by technology

Even so, from 2μm spacing, 1μm fluorescent spot width (that is, every 3μm is the fluorescent array period) or > 5000 / cm 2 The fluorescence array goal is also far from being reached
[0007] On the other hand, a large number of existing gene chip DNA detection methods use fluorescence recognition. Due to the extremely weak fluorescence of single-molecule DNA, it is the only choice to use confocal laser microscopy imaging equipment to observe and record. This equipment is expensive (more than 2 million RMB ), the use cost is high, which is not conducive to mass promotion

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  • Preparation method of carbon dot and array thereof
  • Preparation method of carbon dot and array thereof
  • Preparation method of carbon dot and array thereof

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Embodiment Construction

[0036] Nanogold, including but not limited to gold nanoparticles, gold nanorods, star-shaped, triangular, and core-shell structured gold nanoparticles, will produce surface plasmon resonance and certain fluorescence under the irradiation of a specific wavelength laser. The inventors have further studied and found that after the nano-gold in the nano-gold polymer film reaches a certain concentration, the nano-gold produces surface plasmon resonance through laser irradiation, and local high heat is generated in the nano-scale region. Under the joint action of heat and nano-gold, it can Very good for generating carbon dots. In order to obtain a higher effect, the selected gold nanoparticles should have the same or similar response wavelength as possible.

[0037] In the present invention, there is no special requirement for the polymer forming the polymer film, and it can be a polymer material commonly used by those skilled in the art, as long as it is easy to mix with nano-gold ...

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Abstract

The invention discloses a preparation method of a carbon dot and an array thereof. A nano-gold macromolecular membrane is illuminated by laser so that nano-gold is subjected to surface plasmon resonance and temperature rising, and a macromolecular structure at the periphery is damaged to form the carbon dot. The method disclosed by the invention is simple to operate and the preparation success rate can reach 100 percent; the prepared carbon dot can send out intensive fluorescent light under the stimulation of light in a range of 220nm to 550nm; the carbon dots can be used for preparing various arrayed carbon dot arrays; the fluorescence intensity of the carbon dot can be controlled through adjusting the laser illumination time and power and controlling the size of the carbon dot; the prepared carbon dot array can form an invisible fluorescence array and encrypted information transmission can be realized. Meanwhile, trace detection of ions or molecules can also be realized by utilizing quenching characteristics of the ions or molecules to be detected on the fluorescent light.

Description

technical field [0001] The invention relates to a method for preparing nanometer materials, in particular to a method for preparing carbon nanometer dots and arrays thereof. Background technique [0002] Carbon dots (carbon nanodots) are near-spherical zero-dimensional semiconductor nanocrystals with a diameter of ≤10 nm. They are composed of very few molecules or nanoclusters mainly composed of carbon atoms. The absorption peak is very broad and covers ultraviolet~ Visible light region. More importantly, carbon dots have good biocompatibility, easy functionalization of surface groups, and sensitive fluorescence responses to many anions and cations and molecules (expressed as carbon dot fluorescence quenching or enhancement) and are used for these ions, cations, and molecules. Ultra-low limit detection of molecules, therefore, since 2004 by Xu et al. (Xu X Y, Ray R, Gu Y L, Ploehn H J, Gearheart L, Paker K, Scrivens W A, J. Am. Chem. Soc. , 2004, 126: 12736. ) has attr...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09K11/65C01B32/15B82Y40/00G01N21/64
CPCB82Y40/00C09K11/65G01N21/643
Inventor 铁绍龙兰胜刘海英路广何瑾
Owner GUANGZHOU CLUSTERBIOPHOTON TECH CO LTD
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