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公开(公告)号:US12276029B2
公开(公告)日:2025-04-15
申请号:US17741642
申请日:2022-05-11
Inventor: Bing-Joe Hwang , Wei-Nien Su , Meng-Che Tsai , Sheng-Chiang Yang
IPC: C23C2/04
Abstract: Present invention is related to a metallic particle-deposition substrate having a metal substrate and multiple metallic particles attached thereon. The metallic particles are nano-particles with at least 90% of these nano-particles as single layer being evenly dispersed on the metal substrate. Each of the metallic particle is isolated without toughing or overlapping. The metal substrate has different material than the metallic particles in each preferred embodiment in the present invention. More preferably, at least 80% of the metallic particles have the distance between each metallic particle is at a range of 2-6 nm for better generation of hotspot effects. The present invention provides a fast production method for producing the substrate with heterogeneous interface. The metallic particles are evenly attached to the surface of the metal substrate to obtain better surface enhanced Raman effect as to apply for sensors in all kinds of field.
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公开(公告)号:US20250079861A1
公开(公告)日:2025-03-06
申请号:US18517923
申请日:2023-11-22
Inventor: Chang-Hua LIN , Jhih-Han DAI , Yi-Xin LIN
IPC: H02J7/00
Abstract: A method is to estimate the state of batteries by using a multi-level neural network formed with at least three neural networks. The method comprises steps of: extracting features from the charging and discharging data of a battery through a first-level neural network to form a first-stage output data, and inputting the first-stage output data into a second-level neural network; enhancing local features in the first-stage output data through the second-level neural network to form a second-stage output data; combining the first-stage output data with the second-stage output data to form a combination result to be input into a third-level neural network for data modeling, to generate a state estimation result of the battery. The present invention improves the accuracy of estimation for a flat zone in the charge/discharge curve of the battery, and quickly adjusts the multi-level neural network to achieve accurate estimation of different types of batteries.
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公开(公告)号:US12119496B2
公开(公告)日:2024-10-15
申请号:US17386124
申请日:2021-07-27
Inventor: Bing-Joe Hwang , Wei-Nien Su , Shi-Kai Jiang , Chen-Jui Huang , Sheng-Chiang Yang
CPC classification number: H01M4/628 , H01M4/366 , H01M4/405 , H01M4/661 , H01M10/052 , H01M2004/027 , H01M4/622 , H01M4/625 , H01M4/663 , H01M4/667 , H01M4/668
Abstract: Present invention is related to a composite modified layer attached on a current collector comprising a lithiophilic particle being covered or coated by a polymer layer. The composite modified layer further could be coated with an additional carbon layer or artificial protective film as several suitable embodiments presented in this invention. The lithiophilic particle, such as sliver nano-particle, will firstly form a lithium-silver alloys to reduce a thermodynamic instability during the growth of lithium nuclei. The sliver nano-particle is able to be attached securely on the current collector by the polymer with high adhesion ability. The fuel cell including the composite modified layer in the present invention has higher average Coulombic efficiency and higher capacity retention.
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4.
公开(公告)号:US20240134957A1
公开(公告)日:2024-04-25
申请号:US18383274
申请日:2023-10-23
Inventor: Jui-Chu LIN
CPC classification number: G06F21/45 , G06F16/27 , G06K19/06037
Abstract: A dynamic consent management platform and a personal information management method thereof are provided. The dynamic consent management platform includes a dynamic consent module, a blockchain and a system database, and the personal information management method includes: the dynamic consent module transmitting an unsigned dynamic consent form to a signer module, wherein the unsigned dynamic consent form is generated according to personal data usage ss; the dynamic consent module receiving the signed dynamic consent form from the signer module, wherein the signed dynamic consent form is generated through an identity verification procedure; the dynamic consent module receiving a confirmation signal from the signer module as authorization to generate a decentralized identity verifiable certificate according to the identity verification procedure and the signed dynamic consent form; the blockchain receiving and recording the decentralized identity verifiable certificate; and the system database storing the signed dynamic consent forms.
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公开(公告)号:US20240085369A1
公开(公告)日:2024-03-14
申请号:US18069593
申请日:2022-12-21
Inventor: Chih-Yu Chang , Chun-Yi Ho , Yu-Hsuan Cheng , Ying-Ying Chen
IPC: G01N27/416 , G01N27/30 , H02N1/04
CPC classification number: G01N27/416 , G01N27/30 , H02N1/04
Abstract: Disclosed is a self-powered formaldehyde sensing device, comprising: a triboelectric material electrode layer including a first substrate and a first electrode layer formed on the first substrate; a triboelectric material dielectric layer including a second substrate, a second electrode layer formed on the second substrate, a dielectric reacting layer formed on the second electrode layer, and a reaction modification layer formed on the dielectric reacting layer to surface-modify the dielectric reacting layer, the reaction modification layer being a phosphomolybdic acid complex (cPMA) layer, the phosphomolybdic acid complex of the phosphomolybdic acid complex layer being obtained by dissolving 4,4′-bipyridine (BPY) in isopropanol (IPA) and then mixing with phosphomolybdic acid (PMA) solution; an elastic spacer; and an external circuit.
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6.
公开(公告)号:US20240072686A1
公开(公告)日:2024-02-29
申请号:US17960992
申请日:2022-10-06
Inventor: Chang-Mou Wu , Mohana Rani Gokana
CPC classification number: H02N1/04 , B09B3/35 , B09B3/40 , B09B3/70 , B82Y30/00 , H02J7/345 , B09B2101/25
Abstract: A cigarette filter-triboelectric nanogenerator (CF-TENG) which generates triboelectric power. The cigarette filter-triboelectric nanogenerator (GF-TENG) includes a positive triboelectric material made from recycled cigarette filters (CFs) and a negative triboelectric material made from plastic waste, wherein the cigarette filters were mixed with conductive materials. The cigarette-filter triboelectric nanogenerator (CF-TENG) device exhibits excellent electrical output performance.
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7.
公开(公告)号:US11831244B2
公开(公告)日:2023-11-28
申请号:US17682042
申请日:2022-02-28
Inventor: Jing-Yuan Lin , Hsuan-Yu Yueh , Yi-Feng Lin , Che-Yu Chang
CPC classification number: H02M3/33576 , H02M3/01 , H02M3/33573
Abstract: A resonant converter having a pre-conduction mechanism for realizing a wide output voltage range is provided. The resonant converter includes a first circuit and a second circuit. The first circuit includes a plurality of primary-side switches. The plurality of primary-side switches includes a first high-side switch, a second high-side switch, a first low-side switch and a second low-side switch. The second circuit includes a plurality of secondary-side switches. The plurality of secondary-side switches includes a third high-side switch, a fourth high-side switch, a third low-side switch and a fourth low-side switch. When the second low-side switch and the first low-side switch are turned on and a current time reaches a preset on time, the fourth high-side switch and the third low-side switch are turned on.
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公开(公告)号:US11789297B2
公开(公告)日:2023-10-17
申请号:US17586819
申请日:2022-01-28
Inventor: San-Liang Lee , Tsung-Han Lee , Chia-Hsuan Yang
CPC classification number: G02F1/0316 , G02F1/011 , G02F1/0311
Abstract: An optical phase shifter array includes: 1st˜nth optical-splitting elements, wherein each has an input end, a first output end and a second output end, and the input end of the 1st optical-splitting element receives an input light and outputs an evenly distributed optical signal to the optical-splitting element of the next stage, and n is a positive integer above 1; a plurality of first optical waveguides respectively connected to the input end of the optical-splitting element odd-numbered of the next stage and the first output end of the optical-splitting element of the previous stage; a plurality of second optical waveguides respectively connected to the input end of the optical-splitting-element even-numbered of the previous stage; and phase shifters of the 1st to the kth stage, which makes the optical signal passing through the optical waveguides produce a phase shift by heating or electro-optic effects.
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公开(公告)号:US20230310320A1
公开(公告)日:2023-10-05
申请号:US17662847
申请日:2022-05-11
Inventor: Hsieh-Chih TSAI , Shuian-Yin LIN , Ming-Chien YANG , Chun-Chiang HUANG , Yu-Hsuan LIN
IPC: A61K9/16
CPC classification number: A61K9/1658 , A61K9/1617 , A61K9/1635
Abstract: The present disclosure provides a soluble microcarrier, including soluble polymer including a plurality of soluble monomers binding to each other with a reducing crosslinking agent. The soluble microcarrier of present disclosure facilitates the attachment of cells, and reducing agents can facilitate the detachment of cells. When the soluble microcarrier is in contact with a reducing agent, the soluble microcarrier degrades.
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公开(公告)号:US20230117377A1
公开(公告)日:2023-04-20
申请号:US17505608
申请日:2021-10-19
Inventor: Jeng-Ywan Jeng , Mayur Jiyalal Prajapati , Ajeet Kumar
IPC: B29C64/245 , B29C64/209 , B29C64/336 , B29C64/295 , B33Y30/00 , B33Y70/10
Abstract: A composite additive structure comprising a three-dimensional base structure and a filled structure is provided. The three-dimensional base structure comprises a shell and a cavity enclosed by the shell. The filled structure is filled in the cavity and connected to the shell to form a solid composite structure. A composite additive manufacturing equipment includes a forming stage, a first material supply module and a second material supply module. The forming stage includes a forming member. The first material supply module provides a first material stacked on the forming member layer by layer to form the three-dimensional base structure. The second material supply module provides a second material filled in the cavity of the three-dimensional base structure to obtain the composite additive structure. The second material can be filled in the three-dimensional base structure using three filling strategies: local filling, layer filling and global filling.
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