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190results about How to "Fluorescent" patented technology

Amino porphyrin- poly (N-isopropylacrylamide) europium coordination compound and preparation method thereof

The invention discloses amino porphyrin-poly (N-isopropylacrylamide) europium coordination compound and a preparation method of the amino porphyrin-poly (N-isopropylacrylamide) europium coordination compound. The preparation method of the amino porphyrin- poly (N-isopropylacrylamide) europium coordination compound is characterized in that (NH2)n-TPP is prepared into an ATRP initiator which is NH2-TPP-X, wherein the X is halogen. The NH2-TPP-X is adopted to initiate NIPAM to be polymerized to obtain polymer which is (NH2)n-TPP-PNIPAM. The europium with tervalence is coordinated with the polymer (NH2)n-TPP-PNIPAM to obtain coordination compound which is (NH2)n-TPP-PNIPAM-Eu(III)-TTA through the TTA, wherein the n meets an equation that is n=1,2,3. The amino porphyrin- poly (N-isopropylacrylamide) europium coordination compound is characterized in that a short form of the amino porphyrin- poly (N-isopropylacrylamide) europium coordination compound is (NH2)n-TPP-PNIPAM-Eu(III)-TTA, wherein the TPP is tetraphenylporphyrin, wherein the shortened form of the tetraphenylporphyrin is porphyrin, the PNIPAM is the poly (N-isopropylacrylamide), the Eu(III) is the europium with the tervalence, and the TTA is alpha- thenoyltrifluoroacetone.
Owner:CHANGCHUN UNIV OF SCI & TECH

Method and system for analysing sample containing multiple fluorescent substance

InactiveCN1424574AWavelength combination changeGood excitation wavelengthEmission spectroscopyRaman/scattering spectroscopyPath lengthFluorescence
The present invention proposes a method of and system for analyzing samples (particularly, bio-samples), wherein the continuous spectrum white light pulse generated from an ultra-short optical pulse is used in a simple manner. By a system according to the invention, continuous spectrum white light pulses generated by converging ultra-short optical pulses on a point in a transparent substance 23 are dispersed into a spectrum of light by a dispersing element 25, and a plurality of objective wavelength components are separately selected by small reflection mirrors, masked mirrors or the like. The selected objective wavelength components are combined by the dispersing element 25 into a composite optical pulse containing the objective wavelength components. The composite optical pulse is irradiated onto the bio-sample 28 or other samples, whereby only the desired fluorescent substances are excited by the objective wavelength components corresponding to them. The selected objective wavelength components may preferably have different light path lengths. By this construction, the component optical pulses corresponding to the objective wavelengths in the composite optical pulse are separated from each other, so that the noise due to the interference of different wavelength components is prevented.
Owner:SHIMADZU SEISAKUSHO CO LTD

Method for preparing FePt:RE amorphous alloy nano material mixed with rare earth elements

InactiveCN101538691AAmorphous tendency increasesImprove thermal stabilityRare-earth elementFluorescence
The invention discloses a method for preparing FePt:RE amorphous alloy nano material mixed with rare earth elements, platinum-containing inorganic salt/platinum-containing composition, iron-containing inorganic salt/iron-containing composition and water soluble salt of RE(RE=Eu, Dy, Ce) are used as the reaction precursor, the reaction precursor, organic solvent and phase transfer catalyst crown ether are put into a high pressure kettle, and the needed product is obtained through reaction by making use of the phase transfer among the reactants and the coreduction of the reaction precursor and taking oleic acid as the stabilizer. Based on the invention, alloy nano particles of FePt:Ce, FePt:Dy and FePt:Eu with the particle diameter being 3-5nm can be synthesized, the synthesized alloy nano particles have chemical out-of sequence fcc structure, the amorphous state inclination of the alloy is reinforced by mixing Eu, and the coercive force is greatly enhanced. The alloy nano particles of FePt:Ce and FePt:Dy are processed by backfire at 600 DEG C, the structure thereof carries out phase variation on sequenced L10. At the same time, with the enhanced coercive force, the thermal stability of the FePt:Eu alloy is reinforced by mixing Eu, thus having certain phase variation inhibition effect; in addition, the FePt alloy nano particles are caused to have fluorescence by mixing rare earth elements.
Owner:TONGJI UNIV

Multifunctional coordination copolymer nanometer material as well preparation method and application thereof

The invention belongs to the field of medicine materials, and particularly relates to a coordination copolymer nanometer material as well a preparation method and application thereof. The coordination copolymer nanometer material is characterized in that 1,1'-ferrocene dicarboxylic acid-gadolinium nanoparticles are taken as a core, silicon dioxide is taken as a shell, and the surface of the shell is modified by a functional material. The preparation method comprises the following steps of: preparing the 1,1'-ferrocene dicarboxylic acid-gadolinium nanoparticles by a direct precipitation method, then coating the silicon dioxide on the surface of the magnetic nanoparticles so that the surfaces of the 1, 1'-ferrocene dicarboxylic acid-gadolinium nanoparticles carry a quantity of amidogens while the 1,1'-ferrocene dicarboxylic acid-gadolinium nanoparticles have water solubility, connecting to the surface of the 1,1'-ferrocene dicarboxylic acid-gadolinium nanoparticles through rhodamine isothiocyanate B and an amidogen effect, and finally connecting arginine glycine aspartic acid tripeptide through the amidogens. The coordination copolymer nanometer material is uniform in particle size and has good dispersity, a very good magnetic resonance imaging effect of T1 and T2, luminescent property and a target function; the synthetic process is simple; raw materials are easily available; and environmental pollution is avoided.
Owner:SHANGHAI NORMAL UNIVERSITY

Attapulgite clay quantum dot nano-composite fluorescent material and preparation method thereof

The invention relates to an attapulgite clay quantum dot nano-composite fluorescent material and a preparation method thereof, the material comprises inorganic quantum dots and uniformly dispersed nano-attapulgite clay, the quantum dots are positioned in pore paths of the nano-attapulgite clay, and the inorganic quantum dots are zinc oxide, zinc sulfide or cadmium sulfide. The method comprises the following steps: a) adding the nano-attapulgite clay into water solution of metal ion salt, carrying out magnetic stirring for 1-60h at the temperature of 20-80 DEG C, carrying out centrifugation on solids, cleaning with deionized water, drying and obtaining attapulgite clay / metal ions; and b) taking the attapulgite clay / metal ions, carrying out reaction on the attapulgite clay / metal ions and a negative ion source for 1-60h at the temperature of 20-80 DEG C, carrying out the centrifugation on the solids, washing, drying and obtaining the attapulgite clay quantum dot nano-composite fluorescent material. The prepared attapulgite clay quantum dot composite material is the one-dimensional nano-material with uniform size and integration of the fluorescence property of the quantum dots and the water solubility of the attapulgite clay, fluorescence is derived from the intrinsic luminescence of the quantum dots in the pore paths, and the size of the quantum dots is controllable.
Owner:SOUTHEAST UNIV

Fe-MOFs chemiluminescence-fluorescence double-response immunosensor

The invention discloses a Fe-MOFs chemiluminescence-fluorescence double-response immunosensor. The immunosensor comprises detection antibodies and a paper chip; the detection antibodies are labeled byFe-MOFs; the detection regions of the paper chip are connected with capture antibodies; the non-specific sites of the paper chip are sealed through a sealing agent; and the Fe-MOFs are a metal organic frame material formed by Fe<3+> and 2-aminobenzene-1,4-dicarboxylic acid. According to the immunosensor disclosed by the invention, the Fe-MOFs are used as signal molecules, have relatively high stability and have relatively good water solubility; and in addition, the material not only has fluorescent performance, but also can catalyze a luminal-H2O2 chemiluminiscence system to generate chemiluminiscence. When the immunosensor disclosed by the invention is used for immunoreaction, two modes of the signal output of the detection result of the immunosensor can be provided, in particular, detection can be performed through either a fluorescence method or a chemiluminescence method, the two detection modes can be flexibly selected, and therefore, detection modes can be enriched, and the useof the two modes can further improve the accuracy of the detection result.
Owner:SHAANXI NORMAL UNIV

Method for rapidly preparing carbon-oxygen co-doped boron nitride room-temperature phosphorescent material through microwave heating

The invention provides a method for quickly preparing a carbon-oxygen co-doped boron nitride room-temperature phosphorescent material by microwave heating, and the method comprises the following steps: adding a carbon-nitrogen source into a boric acid water solution to obtain a mixed solution, carrying out microwave heating on the mixed solution to react, cooling, washing and drying to obtain thecarbon-oxygen co-doped boron nitride room-temperature phosphorescent material. The method has the advantages of convenient operation of the preparation process, low device requirements, short reactiontime, mild reaction conditions, simple post-treatment, environmental protection, easily available reaction raw materials, low cost, and easy batch production. The obtained carbon-oxygen co-doped boron nitride room-temperature phosphorescent material shows a green room-temperature phosphorescent phenomenon in a solid state, and the obtained carbon-oxygen co-doped boron nitride has good water solubility and has blue fluorescence in aqueous solution and powder states. The obtained carbon-oxygen co-doped boron nitride room-temperature phosphorescent material can be used for display materials andhigher-level anti-counterfeiting and information encryption.
Owner:SHANDONG UNIV

Silicon dioxide and titanium dioxide composite material containing carbon dots and preparation method of material

The invention provides a silicon dioxide and titanium dioxide composite material containing carbon dots and a preparation method of the material. The silicon dioxide and titanium dioxide composite material containing the carbon dots comprises a carbon dot and mesoporous silica composite material of a channel structure and nano titanium dioxide particles attached to the surface of the composite material. The preparation method includes the steps that mesoporous silica and a solution containing citric acid and ethylenediamine are mixed and subjected to ultrasonic dispersion to obtain turbid liquid, the turbid liquid is subjected to normal-pressure microplasma discharge treatment, then the product is subjected to centrifugal separation, solid washing and vacuum drying, and the carbon dot and mesoporous silica composite material is obtained; a titanium precursor solution is mixed with the carbon dot and mesoporous silica composite material, the mixture is dropwise added into an ethyl alcohol solution containing glacial acetic acid, stirring continues, the product is dried, and the silicon dioxide and titanium dioxide composite material containing the carbon dots are obtained. The preparation method is simple, high in efficiency and low in energy consumption, and the prepared composite material is fluorescent, can be used for the field of heavy metal ion adsorption catalysis, and has a good adsorption catalysis effect especially on uranyl ions.
Owner:DONGGUAN JIAQIAN NEW MATERIAL TECH CO LTD

Multi-component copolyamide containing side group and preparation method and application thereof

The invention discloses multi-component copolyamide containing a side group and a preparation method and application thereof. The side group can be a triazines side group or a triphenylamine side group; the multi-component copolyamide containing the side group has excellent performance; the regularity of the molecular chain is effectively reduced, the crystallinity of the copolyamide is reduced, and accordingly, the solubility of the polymer is greatly improved. The polymer can be dissolved in NMP, DMSO, DMAc, NMP-LiCl, DMF-LiCl and other organic solvents, and solution processing can be conducted. The mechanical property of the thin film prepared from the polymer is excellent, and the thin film is expected to be applicable to the field of high-strength materials. The polymer is high in transparency, has fluorescence, and is expected to be applicable to the field of optical materials. The preparation method is simple and mild in condition, convenience is brought to purification, the monomer can be directly purchased, the price is low, and industrialization is facilitated. The modified multi-component copolyamide can be used in the field of textiles, the military field of ballistic helmets and the traffic field of tires.
Owner:INST OF CHEM CHINESE ACAD OF SCI
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