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70 results about "Zirconium atom" patented technology

Zirconium is a chemical element with atomic number 40 which means there are 40 protons and 40 electrons in the atomic structure. The chemical symbol for Zirconium is Zr.

Liquid phase oxidation of P-xylene to terephthalic acid in the presence of a catalyst system containing nickel, manganese, and bromine atoms

A method for liquid phase oxidation of p-xylene with molecular oxygen to terephthalic acid that minimizes solvent loss through solvent burn and minimizes the formation of incomplete oxidation products such as 4-carboxybenzaldehyde (4-CBA). P-xylene is oxidized at a temperature in the range of 120° C. to 250° C. and in the presence of a source of molecular oxygen and a catalyst composition substantially free of zirconium atoms comprising a source of nickel (Ni) atoms, a source of manganese (Mn) atoms, and a source of bromine (Br) atoms, to form a crude reaction mixture comprising terephthalic acid and incompletely oxidized reaction products comprising 4-CBA, wherein the stoichiometric molar ratio of bromine atoms to manganese atoms is 1.5 or less, and the amount of nickel atoms is at least 500 ppm.
Owner:ALPEK POLYESTER SA DE CV

Metallocene compound, olefin polymerization catalyst containing the compound, and method for producing an olefin polymer by use of the catalyst

The present invention provides a metallocene compound which produces an olefin polymer having a high molecular weight with a high stereoregularity. The metallocene compound has the following formula (1):Q(C5H4-mR1m)(C5H4-nR2n)MXY  (1)wherein (C5H4-mR1m) and (C5H4-nR2n) each independently represent a cyclopentadienyl group;C5H4-m and C5H4-n each independently represent a cyclopentadienyl ring;m represents an integer of 1-3;n represents an integer of 2 or 3;R1 and R2 are each independently a substituent bonded respectively to C5H4-m and C5H4-n, and represent a hydrocarbon group of 1-20 carbon atoms, a silicon-containing hydrocarbon group of 1-20 carbon atoms or a heteroaromatic group;each R1m and each R2n may be the same or different;one pair of R2's in the R2n are bonded to each other to form at least one ring;Q represents a divalent group for cross-linking (C5H4-mR1m) and (C5H4-nR2n);M represents a titanium atom, a zirconium atom or a hafnium atom; andX and Y are the same or different and each a hydrogen atom, a halogen atom or a hydrocarbon group.
Owner:JNC CORP

Metallocene compounds, production process for olefin polymers using catalysts containing them and olefin polymers produced by the production process

The present invention provides metallocene compounds which exhibit high polymerization activity for production of highly stereoregular polymers, as well as a production process for olefin polymers which employs olefin polymerization catalysts containing the compounds, and olefin polymers obtained by the production process. A metallocene compound of the present invention is represented by the following general formula (1):YKLMX2  (1)wherein M represents a titanium atom, zirconium atom or hafnium atom; K and L are fused rings coordinated to M and each independently represents a fused ring of a cyclopentadienyl ring and a 5-membered ring, a fused ring of a cyclopentadienyl ring and a 6-membered ring or a fused ring of a cyclopentadienyl ring and a 7-membered ring; Y is a bridge group crosslinking K and L; and each X is bonded to M; and K and L have a 2-furyl group, substituted 2-furyl group, 2-thienyl group, substituted 2-thienyl group, 2-furfuryl group or substituted 2-furfuryl group on at least one position among each of the 2-positions, 4-positions and 5-positions.
Owner:JNC PETROCHEM +1

Photosensitive resin composition, photospacer, protective film for color filters, and protective film or insulating film of touch panel

The objective of the present invention is to provide a photosensitive resin composition which has high developability and provides a cured product that has excellent elastic modulus recovery characteristics and adhesion, and which enables the formation of a highly fine spacer. A photosensitive resin composition according to the present invention is characterized by containing (A) a hydrophilic resin, (B) a polyfunctional (meth)acrylate, (C) a photopolymerization initiator, (D) a solvent having an HLB of from 8.0 to 30.0 (inclusive) and (E) a compound which is a condensation product that has a compound represented by general formula (1) as an essential constituent monomer. (In formula (1), R1 represents one or more organic groups which are selected from the group consisting of a (meth)acryloyloxyalkyl group, a glycidoxyalkyl group, a mercaptoalkyl group and an aminoalkyl group, in each of which an alkyl group having 1-6 carbon atoms; R2 represents an aliphatic saturated hydrocarbon group having 1-12 carbon atoms or an aromatic hydrocarbon group having 6-12 carbon atoms; R3 represents an alkyl group having 1-4 carbon atoms; M represents one or more atoms selected from the group consisting of a silicon atom, a titanium atom and a zirconium atom; and m represents 0 or 1.)
Owner:SANYO CHEM IND LTD

Preparation and application of novel isopropyl zirconocene complex

The invention provides a novel metallocene catalyst and a green catalytic synthesis method of a polyarylate substituted 1,3-dicarbonyl compound developed by the catalyst. Zirconium atoms in the metallocene catalyst are connected with each other through two isopropyl-substituted cyclopentadienyl rings to display tetravalence; the zirconium atoms are coordinated with three hydrones; and the overall organic zirconium cationic part and the corresponding anions form an ion bond. The green synthesis method comprises the following steps: with a 1,3-dicarbonyl compound with active hydrogen as a reaction raw material, and aryl alcohol as an alkylation agent, carrying out intramolecular dehydration alkylation reaction under catalysis of perfluorooctane sulfonate isopropyl cyclopentadienyl zirconium; and obtaining a series of multiaryl-substituted 1,3-dicarbonyl compounds at a relatively low temperature and high yield. The method has the main advantages of being mild in reaction condition, simple to test and operate, high in yield and the like; the reaction is suitable for kinds of 1,3-dicarbonyl derivatives and different aryl alcohol; with perfluorooctane sulfonate isopropyl cyclopentadienyl zirconium as a catalyst, the catalyst can be recycled and used for a plurality of times; and meanwhile, the sole by-product is water, and has the advantages of being green, free of pollution and the like.
Owner:HUNAN UNIV

Method for synthesizing spherical nano-zirconia by using detonation method in grain diameter controllable manner

The invention belongs to the field of physical or chemical methods and provides a formula for synthesizing spherical nano-zirconia by using a detonation method in a grain diameter controllable manner and a synthetic method thereof. The method is characterized by comprising the following steps of: mixing and sensitively synthesizing zircon salt, ammonium nitrate and organic hydrocarbon compounds into paste with detonation property; and, after detonating the paste, carrying out drastic redox reaction among the ammonium nitrate as the oxidant, the zircon salt and the organic hydrocarbon compounds as the reducing agent, so that a high-temperature and high-pressure environment is formed, oxidizing zirconium atoms into zirconia, and crystallizing and gathering under the action of an inert cooling medium to form the spherical nano-zirconia. The method disclosed by the invention has the advantages that the yield of the spherical nano-zirconia is high; 20 g of spherical nano-zirconia can be obtained from 100 g of drug; the environmental pollution in the production process is low; the process is simple; the cost is low; the yield is easy to enlarge, so that industrial production is realized; the grain diameter of the spherical nano-zirconia is distributed in the range of 10-100 nm and is adjustable; and the appearance of the spherical nano-zirconia is a regular sphere.
Owner:NANJING UNIV OF SCI & TECH

Titanium carbide-zirconium carbide high-temperature solar selective absorbing coating and preparation method thereof

The invention discloses a titanium carbide-zirconium carbide high-temperature solar selective absorbing coating and a preparation method thereof. The coating comprises a heat absorbing body substrate, an absorbing layer and an antireflection layer sequentially from the bottom layer to the surface. The material of the absorbing layer is a compound of titanium carbide and zirconium carbide, is prepared through double target co-sputtering and is 35-80 nm in thickness. The percentage of zirconium atoms in the compound is 0.5%-3%. The antireflection layer is aluminum oxide and 30-100 nm in thickness. The coating prepared through the preparation method is larger than or equal to 0.90% in absorptivity and smaller than or equal to 0.13 in emissivity under the condition of the atmospheric quality factor being AM 1.5. The coating has very good high-temperature stability and corrosion resistance. The coating provided by the invention has the characteristics of high absorptivity , low emissivity, good high-temperature stability and corrosion resistance and the like. According to the coating, the preparation process is simple, the source of raw materials is wide, the piece is low, operation is convenient, and control is easy. The coating has high practical value and wide application prospects in the fields of solar heat utilization and thermal power generation.
Owner:LANZHOU INST OF CHEM PHYSICS CHINESE ACAD OF SCI

Hard tissue repairing material

A hard tissue repairing material includes zirconia as a base material. A surface of the base material has a hydrophilic group. The hydrophilic group is bonded to zirconium atom in the base material. The base material may contain at least an ionic component that is selected from a group consisting of calcium ion, sodium ion, potassium ion, and phosphate ions within the surface. A hard tissue repairing material may include zirconia as a base material and a layer of a main component of an apatite. The layer of the apatite may be formed on a hydrophilic group bonded to zirconium atom in the base material.
Owner:PANASONIC HEALTHCARE HLDG CO LTD

Novel decamethyl zirconocene coordination compound as well as preparation method and application thereof

The invention provides a preparation method of a novel decamethyl zirconocene coordination compound and application thereof to a catalytic synthesis method of a secondary amide compound. The coordination compound is a cationic decamethyl zirconocene coordination compound, wherein a zirconium atom is coordinated with three water molecules, and the cationic part and the anionic part of the whole decamethyl zirconocene form an ionic bond. In the synthesis method of the secondary amide compound, the decamethyl zirconocene perfluorooctyl sulfonic acid coordination compound is used as a catalyst, acommon organic solvent is used as a reaction solvent, and a secondary amide substance is synthesized through four different routes, wherein the four different routes are specifically as follows: (1),carboxylic acid and amine are dehydrated to synthesize secondary amide; (2), a ritter reaction is performed on nitrile and secondary (tertiary) alcohol to synthesize the secondary amide; (3), primaryamide and secondary (tertiary) alcohol are dehydrated to synthesize the secondary amide; (4), the primary amide, aldehyde and 2-naphthol are dehydrated to synthesize the secondary amide; by the synthesis method, a novel low-cost environmentally friendly way is opened up for preparation of the secondary amide compound. The invention has the advantages as follows: the catalyst has high air stability, the selectivity and the yield of a target product are high, the catalyst can be reused, the product can be obtained through simple column chromatography separation, and the whole reaction and separation process is easy to operate and environmentally friendly.
Owner:SHANXI MEDICAL UNIV

Dental composition and composite resin

A dental composition of the present invention includes: a polymerizable monomer component (A); and an amorphous filler (B) having an average particle size of 1 to 20 μm and including silica-based fine particles and coatings of an oxide that cover the surfaces of the silica-based fine particles. The oxide contains a zirconium atom, a silicon atom, and an oxygen atom. The dental composition contains 20 to 500 parts by weight of the filler (B) per 100 parts by weight of the polymerizable monomer component (A). The dental composition has a viscosity of 10 to 800 Pa·s. It is preferable that the filler (B) contain spherical particles, and that the percentage of the spherical particles in the filler (B) be at least 60%.
Owner:KURARAY NORITAKE DENTAL +1

Preparation method of ultra-abrasion-resistant high-transmittance zirconia thin film

InactiveCN108149195AReduced free pathHigh initial energyVacuum evaporation coatingSputtering coatingRadio frequency sputteringOxygen
The invention discloses a preparation method of an ultra-abrasion-resistant high-transmittance zirconia thin film. The preparation method comprises the following steps that 1, a substrate is cleaned,stains on the surface of the substrate are removed, and blow-drying is conducted; 2, the cleaned substrate is placed into magnetron sputtering film coating equipment, when the vacuum degree of a sputtering cavity meets requirements, the sputtering cavity is baked, and impurity molecules in the sputtering cavity are discharged; 3, after baking is completed, the zirconia thin film is deposited at the substrate by using zirconium as a target material, adopting a radio-frequency power supply and using argon and oxygen as sputtering gas through magnetron sputtering. Under the condition that the oxygen is excessive, it is ensured that zirconium atoms can fully react with reaction gas obtain zirconia by adopting high-power radio-frequency sputtering; through high-power sputtering, it can be ensured that primary energy of the zirconium atoms is high, the zirconia thin film can be more compact and good in abrasion resistance when being deposited at the substrate, and it can be ensured that thebinding force between the film and the substrate is better; and the technological process can be controlled accurately, it is ensured that the thickness of the zirconia thin film is controllable, andrequirements for the transmittance are met.
Owner:(CNBM) BENGBU DESIGN & RES INST FOR GLASS IND CO LTD
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