Patents by Inventor Kui Yao
Kui Yao has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20160313316Abstract: An influenza detector for detecting a targeted influenza virus and a surface acoustic wave (SAW) sensor for Influenza A virus detection in liquid are provided. The influenza detector includes a liquid environment, the surface acoustic wave (SAW) sensor and an influenza specific binding agent such as an antibody. The agent is immobilized on a surface of the SAW sensor for selectively capturing an analyte for the targeted influenza virus. The SAW sensor is in contact with the liquid environment and includes a substrate comprising a piezo-electric material for producing a surface acoustic wave signal in response to an applied electric field and an insulative layer formed on top of the substrate and having a functionalized surface formed thereon for selectively immobilizing the influenza specific binding agent, the functionalized surface being in contact with the liquid environment.Type: ApplicationFiled: December 10, 2014Publication date: October 27, 2016Inventors: Kui YAO, Chin Yaw TAN, Ying JIANG, Yi Fan CHEN, Sze Yu TAN, Lei ZHANG
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Patent number: 9450175Abstract: The present invention discloses a method of preparing a lead-free piezoelectric thin film comprising the steps of: providing a precursor solution comprising at least one alkali metal ion, a polyamino carboxylic acid, and an amine; depositing the precursor solution on a substrate to form a film; and annealing the film. The present invention also provides a lead-free piezoelectric thin film prepared according to the method, a precursor solution for use in the method and a method of preparing the precursor solution.Type: GrantFiled: January 22, 2015Date of Patent: September 20, 2016Assignee: Agency for Science, Technology and ResearchInventors: Phoi Chin Goh, Kui Yao
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Patent number: 9423295Abstract: According to one aspect of the invention, there is provided a photo-sensor comprising: an optically transparent substrate; an electrode pair; and a photoactive film with electrical polarization located between the optically transparent substrate and the electrode pair, wherein the optically transparent substrate is configured to transmit incident radiation received by the optically transparent substrate to the photoactive film and wherein the electrode pair is configured to receive charge carriers generated by the photoactive film in response to the transmitted incident radiation.Type: GrantFiled: April 24, 2014Date of Patent: August 23, 2016Assignee: Agency for Science, Technology and ResearchInventors: Szu Cheng Lai, Kui Yao, Yi Fan Chen, Yee Fun Lim
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Publication number: 20160133826Abstract: A method of making a lead-free ceramic coating is provided. The method includes providing a lead-free ceramic composition with a crystalline phase of perovskite structure. The ceramic composition has a general formula of: (1-a)(KbNacXd)(NbeYfZg)O3?aE, wherein X is one of an alkali metal, a transition metal and a post-transition metal; each of Y and Z is one of a transition metal and a metalloid; E is a metal oxide; 0?a?0.05; 0.4?b?0.6; 0.4?c?0.6; 0?d?0.2; 0.8?e?1; 0?f?0.2; 0?g?0.2; b+c+d=1; and e+f+g=1. The ceramic composition is heated to at least a partially molten state and the at least partially molten ceramic composition is deposited onto a substrate. The deposited ceramic composition is cooled and the deposited ceramic composition re-crystallizes on cooling to form the lead-free ceramic coating with a single crystalline phase of perovskite structure.Type: ApplicationFiled: November 4, 2015Publication date: May 12, 2016Inventors: Kui YAO, Shuting CHEN, Ivan Chee Kiang TAN
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Publication number: 20150376068Abstract: The present invention provides a product and manufacturing method for electro-optic ceramic material having the composition (A?(1-y)A?y)1-XLnxM(1-2X/5)O3 wherein 0<x<0.1; 0<y<1; A? and A? are independently, alkali metals; Ln is a lanthanide metal; and M is a transition metal. The present invention provides a product and manufacturing method for an electro-optic device that is operable at room temperature and the properties of which are tunable by an applied external electric field.Type: ApplicationFiled: February 6, 2014Publication date: December 31, 2015Applicant: Agency for Science, Tecnology and ResearchInventors: Santiranjan Shannigrahi, Chee Kiang Ivan Tan, Hong Fei Liu, Kui Yao
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Patent number: 9058934Abstract: A method of forming a vinylidene fluoride (VDF) oligomer or co-oligomer film on a substrate is disclosed. The method comprises forming a VDF oligomer or co-oligomer precursor solution; depositing the VDF oligomer or co-oligomer precursor solution onto the substrate to form a preliminary VDF oligomer or co-oligomer film on the substrate; and applying uniaxial pressure on the preliminary VDF oligomer or co-oligomer film and the substrate at an elevated temperature to form the VDF oligomer or co-oligomer film on the substrate. The substrate may comprise a metal surface which may be used as a bottom electrode and a top electrode may be deposited on the VDF oligomer or co-oligomer film. The VDF oligomer or co-oligomer film, the bottom electrode on the substrate and the top electrode on the VDF oligomer or co-oligomer film form an electrical device.Type: GrantFiled: December 23, 2009Date of Patent: June 16, 2015Assignees: Agency for Science, Technology and Research, National University of SingaporeInventors: Kui Yao, Shuting Chen, Eng Hock Francis Tay
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Publication number: 20150132475Abstract: The present invention discloses a method of preparing a lead-free piezoelectric thin film comprising the steps of: providing a precursor solution comprising at least one alkali metal ion, a polyamino carboxylic acid, and an amine; depositing the precursor solution on a substrate to form a film; and annealing the film. The present invention also provides a lead-free piezoelectric thin film prepared according to the method, a precursor solution for use in the method and a method of preparing the precursor solution.Type: ApplicationFiled: January 22, 2015Publication date: May 14, 2015Applicant: Agency for Science, Technology and ResearchInventors: Phoi Chin GOH, Kui Yao
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Patent number: 8961679Abstract: The present invention discloses a method of preparing a lead-free piezoelectric thin film comprising the steps of: providing a precursor solution comprising at least one alkali metal ion, a polyamine carboxylic acid, and an amine; depositing the precursor solution on a substrate to form a film; and annealing the film. The present invention also provides a lead-free piezoelectric thin film prepared according to the method, a precursor solution for use in the method and a method of preparing the precursor solution.Type: GrantFiled: May 20, 2011Date of Patent: February 24, 2015Assignee: Agency for Science, Technology and ResearchInventors: Phoi Chin Goh, Kui Yao
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Publication number: 20140319317Abstract: According to one aspect of the invention, there is provided a photo-sensor comprising: an optically transparent substrate; an electrode pair; and a photoactive film with electrical polarization located between the optically transparent substrate and the electrode pair, wherein the optically transparent substrate is configured to transmit incident radiation received by the optically transparent substrate to the photoactive film and wherein the electrode pair is configured to receive charge carriers generated by the photoactive film in response to the transmitted incident radiation.Type: ApplicationFiled: April 24, 2014Publication date: October 30, 2014Applicant: Agency for Science, Technology and ResearchInventors: Szu Cheng Lai, Kui Yao, Yi Fan Chen, Yee Fun Lim
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Patent number: 8833165Abstract: The miniaturized piezoelectric accelerometer includes a support frame (102) having a cavity (104) and a seismic mass (108) supported by a plurality of suspension beams (110) extending from the support frame (102). Each of the suspension beams (110) has a piezoelectric thin film coated on a top surface thereof, with a pair of inter-digital electrodes (114) deposited on an upper surface of each piezoelectric thin film. The presence of acceleration excites bending and thus strain in the piezoelectric thin film, which in turn causes electrical signals to be generated over terminals of the electrodes (114). To collect constructively the output of the electrodes (114), one terminal of each of the electrodes (114) is routed to and electrically connected at a top surface (308) of the seismic mass (108).Type: GrantFiled: September 4, 2009Date of Patent: September 16, 2014Assignee: Agency for Science, Technology and ResearchInventors: Kui Yao, Saravanan Shanmugavel, Trung Dung Luong, Ajit S. Gaunekar, Hon Yu Peter Ng
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Patent number: 8767355Abstract: According to embodiments of the present invention, a piezoelectric actuator is provided. The piezoelectric actuator includes a shear mode piezoelectric material including a first arm and a second arm intersecting each other, the shear mode piezoelectric material having a polarization direction oriented at least substantially along a length of the first arm, wherein the shear mode piezoelectric material has a first surface and a second surface opposite to the first surface, the first surface and the second surface being adapted to undergo a shear displacement relative to each other along an axis at least substantially parallel to the polarization direction in response to an electric field applied between the first surface and the second surface in a direction at least substantially perpendicular to the polarization direction.Type: GrantFiled: January 22, 2013Date of Patent: July 1, 2014Assignee: Agency for Science, Technology and ResearchInventors: Lei Zhang, Kui Yao, Charanjit Singh Bhatia
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Patent number: 8696812Abstract: Thin films of ferroelectric material with a high mole fraction of Pb(A2+1/3B5+2/3)O3 substantially in a perovskite phase, wherein A is zinc or a combination of zinc and magnesium, and B is a valence 5 element such as niobium or tantalum, have been prepared. Typically, the mole fraction of Pb(A2+1/3B5+2/3)O3 in the ferroelectric material is >0.7. The method for preparing the thin films of ferroelectric material comprises providing a precursor solution containing lead, A2+, and B5+; modifying the precursor solution by addition of a polymer species thereto; applying the modified precursor solution to a surface of a substrate and forming a coating thereon; and (d) subjecting the coating to a heat treatment and forming the film in the perovskite phase. Optimal results have been obtained with PEG200 as the polymer species.Type: GrantFiled: May 4, 2010Date of Patent: April 15, 2014Assignee: Agency for Science, Technology and ResearchInventors: Kui Yao, Shuhui Yu, Francis Eng Hock Tay
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Publication number: 20140034815Abstract: A self-powered photodetector is provided including: a photovoltaic sensor element for generating an electrical charge under exposure to electromagnetic radiation; a charge storage section for accumulating the electrical charge generated by the photovoltaic sensor element; an electrical load configured to be powered by the accumulated electrical charge from the charge storage section and outputs a signal in response thereto, the signal being analyzable to determine a measurement of the electromagnetic radiation; and a switch for controlling a flow of the accumulated electrical charge from the charge storage section to the electrical load for powering the electrical load. There is also provided a wireless receiver for analyzing a signal from the self-powered photodetector to provide a measurement of the electromagnetic radiation, a photodetector system including the self-powered photodetector and the wireless receiver, and a method of fabricating the self-powered photodetector.Type: ApplicationFiled: August 5, 2013Publication date: February 6, 2014Applicant: Agency for Science, Technology and ResearchInventors: Szu Cheng Lai, Kui Yao
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Patent number: 8470211Abstract: The present invention provides new ferroelectric ceramic materials which can be sintered at a temperature lower than that of the conventional ferroelectric ceramic materials and upon sintering, devices formed of the new ferroelectric ceramic materials possesses excellent piezoelectric properties which are suitable for many industrial applications. The ferroelectric ceramic material includes a composition with a general formula of wPb(Ni1/3Nb2/3)O3-xPb(Zn1/3Nb2/3)O3-yPb(Mg1/3Nb2/3)O3-zPbZrO3-(1?w?x?y?z)PbTiO3, in which 0<w<1, 0<x<1, 0?y<1, 0<z<1, w+x+y+z<1, and 0.5?w+x+y. A method of preparing a ferroelectric ceramic material includes preparing MgNb2O6, ZnNb2O6 and NiNb2O6 powder precursors, mixing the precursors with PbO, TiO2 and ZrO2 to form a mixture and calcining the mixture.Type: GrantFiled: April 13, 2006Date of Patent: June 25, 2013Assignee: Agency for Science, Technology and ResearchInventors: Kui Yao, Bee Keen Gan
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Publication number: 20130064970Abstract: The present invention discloses a method of preparing a lead-free piezoelectric thin film comprising the steps of: providing a precursor solution comprising at least one alkali metal ion, a polyamine carboxylic acid, and an amine; depositing the precursor solution on a substrate to form a film; and annealing the film. The present invention also provides a lead-free piezoelectric thin film prepared according to the method, a precursor solution for use in the method and a method of preparing the precursor solution.Type: ApplicationFiled: May 20, 2011Publication date: March 14, 2013Inventors: Phoi Chin Goh, Kui Yao
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Publication number: 20130026382Abstract: A photovoltaic UV detector configured to generate an electrical output under UV irradiation. The photovoltaic UV detector comprises a first layer comprising an electrically polarized dielectric thin layer configured to generate a first electrical output under the UV irradiation; and a second, layer configured to form an electrical energy barrier at an interface between the second layer and the first layer so as to generate a second electrical output under the UV irradiation, the second electrical output having a same polarity as the first electrical output, the electrical output of the photovoltaic UV detector being a sum of at least the first electrical output and the second electrical output. The electrically polarized dielectric thin layer may be a ferroelectric thin film, which may comprise PZT or PZLT. The second layer may be a metal and the electrical energy barrier may be a Schottky barrier.Type: ApplicationFiled: April 12, 2011Publication date: January 31, 2013Inventors: Kui Yao, Bee Keen Gan, Szu Cheng Lai
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Patent number: 8334454Abstract: The present invention provides a thin film photovoltaic device and a method of forming a thin film photovoltaic device. The thin film photovoltaic device has a substrate, a thin film layer formed on the substrate and first and second electrodes formed on one side of the thin film layer. By applying an electric field over the first and second electrodes, the thin film layer is polarized in a direction parallel to the surface plane of the film. Upon exposure to light, the thin film layer converts light energy into electricity. According to the method, a thin film layer is formed on a substrate. A first electrode and a second electrode are formed on one side of the thin film layer. By applying an electric field over the first and second electrodes, the thin film layer is polarized in a direction parallel to the surface plane of the film.Type: GrantFiled: December 3, 2010Date of Patent: December 18, 2012Assignee: Agency for Science, Technology and ResearchInventors: Kui Yao, Santiranjan Shannigrahi, Mei M. Chen, Bee K. Gan
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Publication number: 20120313482Abstract: A method of forming a vinylidene fluoride (VDF) oligomer or co-oligomer film on a substrate is disclosed. The method comprises forming a VDF oligomer or co-oligomer precursor solution; depositing the VDF oligomer or co-oligomer precursor solution onto the substrate to form a preliminary VDF oligomer or co-oligomer film on the substrate; and applying uniaxial pressure on the preliminary VDF oligomer or co-oligomer film and the substrate at an elevated temperature to form the VDF oligomer or co-oligomer film on the substrate. The substrate may comprise a metal surface which may be used as a bottom electrode and a top electrode may be deposited on the VDF oligomer or co- oligomer film The VDF oligomer or co-oligomer film, the bottom electrode on the substrate and the top electrode on the VDF oligomer or co-oligomer film form an electrical device.Type: ApplicationFiled: December 23, 2009Publication date: December 13, 2012Inventors: Kui Yao, Shuting Chen, Eng Hock Francis Tay
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Patent number: 8253390Abstract: A power supply device and system have an electrically polarized element in which a remnant electrical polarization is formed and retained. Electrodes are formed on the electrically polarized elements and the remnant electrical polarization generates an electrical potential on the electrodes. Electrical circuits are coupled to the electrically polarized element to control the external electric charges attracted and distributed on the electrodes, for establishing the electrical potential on the electrodes. The electrodes can output electric currents by controlling the external electric charges distribution. The electrically polarized element may be made of ferroelectric material, including a ferroelectric bulk ceramic, ferroelectric multilayer ceramic, ferroelectric single crystal, ferroelectric thin film, ferroelectric thick film and ferroelectric polymer, and all the other materials with electric polarization retained therein.Type: GrantFiled: August 22, 2007Date of Patent: August 28, 2012Assignee: Agency for Science, Technology and ResearchInventors: Kui Yao, Yee Yuan Tan
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Publication number: 20120137787Abstract: A piezoelectric sensor comprising a piezoelectric film formed on a surface of an object to be monitored; a plurality of electrodes formed on a surface of the piezoelectric film; and wherein electrical polarization of the piezoelectric film is about coplanar with the surface of the piezoelectric film. A method of forming a piezoelectric sensor. The method comprises forming a piezoelectric film on a surface of an object to be monitored; forming electrodes on a surface of the piezoelectric film; and orientating electrical polarization in the piezoelectric film to be about coplanar with the surface of the piezoelectric film.Type: ApplicationFiled: August 13, 2010Publication date: June 7, 2012Inventors: Kui Yao, Chin Yaw Tan, Ajit S. Gaunekar, Hon Yu Peter Ng