Xuliang
Xuliang Dai, Fargo, ND US
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20160068691 | SILICON MATERIALS FROM THE PROCESSING OF LIQUID SILANES AND HETEROATOM ADDITIVES - Methods for forming silicon thin films and structures with incorporated metals, non-metals, and combinations thereof, liquid precursor compositions useful in such methods, and silicon thin films and structures with embedded heteroatom(s) are described. The compositions are generally liquid at ambient temperature and are comprised of liquid silane(s) and have metal and/or non-metal additives. Metal and non-metal sources include organometallic and organic compounds, respectively. The compositions may also contain a solvent. The compositions may be processed by printing, coating, or spraying onto a substrate and subjected to UV, thermal, IR, and/or laser treatment to form silicon films or structures with embedded heteroatom(s). | 03-10-2016 |
Xuliang Dai, Solon, OH US
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20130093122 | LIQUID SILANE-BASED COMPOSITIONS AND METHODS FOR PRODUCING SILICON-BASED MATERIALS - Described herein are synthesis schemes and methods for producing silicon based nanostructures and materials, including compositions and methods for synthesis of silicon-based nanowires and composites from three-component and four-component liquid silane/polymer inks. Materials and methods for producing silicon based micro and nanofibers that can be used in a variety of applications including material composites, electronic devices, sensors, photodetectors, batteries, ultracapacitors, and photosensitive substrates, and the like. | 04-18-2013 |
Xuliang Huang, Nanshan Shenzhen CN
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20080261902 | Pharmaceutical composition containing polydatin and its application - A composition includes polydatin and solvent for dissolving the polydatin, wherein the solvent comprises alcohol in a range between 40 and 95% by volume, propanediol in a range between 0 and 60% by volume, and water in remaining volume. The concentration of the polydatin must be at least 6 mg/ml. The composition has good stability in cold preservation. The composition is in a pharmaceutically acceptable administrative form selected from the group consisting of an intravenous injection, and intramuscular injection, an oral administration, a spray solution, and an aerosol form. | 10-23-2008 |
Xuliang Li, Dongguan City CN
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20100039827 | Secondary Optic Lens - A secondary optical lens ( | 02-18-2010 |
Xuliang Qian, Rancho Cucamonga, CA US
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20160022297 | METHOD AND APPARATUS FOR LITHIASIS TREATMENT - A medical apparatus may include an inflatable tubular component that can be inflated into a U-shaped structure, a plurality of connecting portions formed on a main body. In one embodiment, the connecting portion can be used for inflating an inflatable cylindrical component formed in the U-shaped structure. The medical apparatus treatment may further include a plurality of control filaments disposed on an inner surface of the U-shaped structure to control the size thereof, so the inner surface of the U-shaped structure can tightly press against an outer surface of the inflatable cylindrical component when it is inflated, and a chamber is formed in the U-shaped structure next to the inflated cylindrical component. When in use, the stones can be trapped into the chamber and chemical reagents can be introduced to either dissolve or disrupt the stones. | 01-28-2016 |
Xuliang Qian, Ningbo CN
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20150065277 | MESH RACKET - The present invention discloses a mesh racket and its manufacturing method, comprising a handle ( | 03-05-2015 |
Xuliang Shi, Beijing CN
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20130185429 | Processing Store Visiting Data - The present disclosure introduces a method and a system for processing store visiting data. New visiting data is obtained. A user ID, a store ID, and a visiting time are analyzed from the new visiting data. It is determined whether the user ID and the store ID match one of user IDs and store IDs in static historical visiting data. If there is a match, it is determined that a user corresponding to the new visiting data is a repeated user of the store. Otherwise, it is then determined whether the user ID and the store ID match one of user IDs and store IDs in dynamic historical visiting data. If there is a match, it is also determined that a user corresponding to the new visiting data is a repeated user of the store. | 07-18-2013 |
Xuliang Wang, Baoding City CN
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20130242605 | OPTICAL DIFFUSING FILM AND A LIQUID CRYSTAL DISPLAY BACKLIGHT USING THE SAME - An optical diffusing film and a LCD backlight using the same are provided. The optical diffusing film comprises a transparent substrate made of an optically transparent material with a refractive index of 1.4 to 1.8, and a diffusing coating with a refractive index of 1.4 to 1.7 disposed on an upper surface of the transparent substrate, wherein diffusing particles with a refractive index of 1.4 to 1.7 are distributed in the diffusing coating, and the diffusing particles are in close contact with each other, the diffusing coating has a thickness of ½ to ⅔ of the largest particle size of the diffusing particles, and the coating density of the diffusing particles is 10 | 09-19-2013 |
20130260138 | OPTICAL HARDENED FILM AND METHOD OF PRODUCING THE SAME - An optical hardened film and method of making same is provided, which comprises a substrate, and a hardened coating layer formed from a photohardenable coating composition applied onto the substrate, wherein the photohardenable coating composition consists of the following components: (1) 20 to 60 wt % of an acrylate-based compound with a functionality of 1 to 3; (2) 40 to 80 wt % of a hydroxyl-containing or amino-containing oligomer with a functionality of 4 to 10; (3) 1 to 30 wt % of nanoparticles having a particle size of 5 to 50 nm and being ones selected from the group consisting of silica, aluminum oxide, barium sulfate, titanium dioxide and methyl methacrylate; and (4) 0.1 to 8 wt % of a photoinitiator; wherein the above weight percentages are each based on the total weight of the components (1) and (2). | 10-03-2013 |
Xuliang Zhang, Shenzhen CN
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20090175303 | LIGHT SOURCE MODE ALIGNMENT DEVICE AND METHOD, PASSIVE OPTICAL NETWORK SYSTEM - A light source mode alignment device and method and a passive optical network system are provided. The device includes a laser and a temperature control unit connected to each other and further includes a signal processing unit. The laser converts an incident light into a current signal. The current signal is amplified and converted into a voltage signal via a transimpedance amplifier. Together with a modulation signal generated by the signal processing unit, the voltage signal adjusts a bias voltage of the temperature control unit. | 07-09-2009 |
Xuliang Zhang, Tianjin CN
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20150096934 | Preparation method of homogeneous-reinforced PVDF hollow fiber membrane - A preparation method of a homogeneous-reinforced PVDF hollow fiber membrane includes steps of: a) preparing a reinforced matrix membrane, wherein a PVDF hollow fiber membrane is utilized as the reinforced matrix membrane; b) preparing a PVDF casting solution, wherein mass fractions of the PVDF casting solution are: PVDF 6˜20 wt %; hydrophilic polymers or hydrophilic inorganic particles 0.6˜2 wt %; pore-forming agent 6˜10 wt %; and solvent 68˜87.4 wt %; mixing the above solutes in a water bath with a temperature of 70˜90° C., dissolving for 3˜4 h with stirring, then deaerating under vacuum for obtaining the uniform PVDF casting solution; and c) preparing the homogeneous-reinforced membrane; wherein the PVDF casting solution is uniformly coated on an outer surface of the reinforced matrix membrane through a spinning spinneret, then the reinforced matrix membrane is towed by a filament guide roller in such a manner that the hollow fiber forms a membrane, then the membrane passes through an air gap with a length of 5˜20 cm and is immersed in ultrafiltered water for coagulation, in such a manner that the homogeneous-reinforced membrane is obtained; wherein a traction speed is 5˜25 cm/(r·min). | 04-09-2015 |
Xuliang Zhou, Beijing CN
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20150024601 | METHOD OF MANUFACTURING SI-BASED HIGH-MOBILITY GROUP III-V/GE CHANNEL CMOS - A method can include: growing a Ge layer on a Si substrate; growing a low-temperature nucleation GaAs layer, a high-temperature GaAs layer, a semi-insulating InGaP layer and a GaAs cap layer sequentially on the Ge layer after a first annealing, forming a sample; polishing the sample's GaAs cap layer, and growing an nMOSFET structure after a second annealing on the sample; performing selective ICP etching on a surface of the nMOSFET structure to form a groove, and growing a SiO | 01-22-2015 |