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公开(公告)号:US20220017434A1
公开(公告)日:2022-01-20
申请号:US17374247
申请日:2021-07-13
Inventor: Ahmed Abotaleb , Giovanni Scabbia , Alessandro Sinopoli
IPC: C07C1/32 , C01B3/26 , C01B32/75 , C07C319/06 , B01J23/42 , B01J21/04 , B01J23/04 , B01J23/883 , B01J29/40 , B01J19/24 , B01J19/00 , B01D3/14 , B01D3/00
Abstract: The present disclosure is generally directed to a new and innovative system, process and method that utilize a new “non-oxygen type of oxidizers” process for methane (CH4) upgrading to value-added products such as olefins and aromatics (i.e., benzene, toluene and xylene (BTX)) etc. and further removing toxic impurities such as sulphur-containing compounds (i.e. H2S) by using the sulphur as a source of radical.
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公开(公告)号:US11222453B1
公开(公告)日:2022-01-11
申请号:US17119762
申请日:2020-12-11
Inventor: Michael Jean-Marie Aupetit , Ala Abuthawabeh
IPC: G06T11/60 , G06F3/0484
Abstract: The present disclosure provides interactive visual data labeling systems and methods that improve upon power-diagram Voronoi Treemaps by supporting interactive arranging and grouping of objects represented by thumbnail images. The provided interactive visual data labeling system enables new and innovative fluid interactions and direct manipulation of treemap cells to arrange objects and groups of objects, and create, merge, expand, or collapse groups. In effect, these enabled fluid interactions and direct manipulation provide an intuitive, stable, and predictable Voronoi treemap for users. In at least some aspects, the provided visual data labeling system uses a force-directed power diagram technique, which enables controlling the stability of the Voronoi treemap layout and updating it smoothly when dragging a cell across a parent cell. In effect, the predictability and stability enables the Voronoi treemap to react as a user expects during the user's interaction with the treemap.
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公开(公告)号:US20210354374A1
公开(公告)日:2021-11-18
申请号:US16876785
申请日:2020-05-18
Inventor: Hicham Hamoudi , Golibjon Berdiyorov
IPC: B29C64/159 , B29C64/245 , B29C64/295 , B29C64/209 , B29C64/106 , C07C321/04 , C07C321/26 , C07D213/70
Abstract: Systems and methods for low-cost and morphologically stable 3D printing are disclosed. A solution-based method for 3D printing, comprising i) providing a substrate comprising a flat surface; ii) providing a first solution of a self-assembled monolayer (SAM) molecule comprising a functional group at each end of the SAM molecule; iii) applying the first solution to the flat surface of the substrate to form a first SAM comprising a first liquid surface; iv) providing a second solution of a metal precursor; v) applying the second solution on the first liquid surface to form a second liquid surface over the first SAM; vi) applying a first force to cross-link the first SAM; vii) repeating steps iii) and v)-vi) to form a multiple layer of the SAM; and viii) either applying a second force to anneal the multiple layer of the SAM to form a soft material or applying a third force to anneal the multiple layer of the SAM to form a hard material.
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公开(公告)号:US11150671B2
公开(公告)日:2021-10-19
申请号:US16405489
申请日:2019-05-07
Inventor: Roberto Di Pietro , Gabriele Oligeri , Pietro Tedeschi
Abstract: The presently disclosed method and system exploits a received signal strength of a jamming signal emitted by a jammer to allow navigation of an object through an area containing the jamming signal. In one embodiment, the method comprises receiving a plurality of navigation data and a jamming signal when entering a jamming zone. The method then comprises repeatedly measuring the strength of the jamming signal while moving within the jamming zone. The method then comprises determining the location of the jammer based on the movement within the jamming zone and the strength of the jamming signal at multiple coordinates. The method further comprises performing movement to destination coordinates within the jamming zone at least partially based on the jammer location and the strength of the jamming signal.
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公开(公告)号:US20210292266A1
公开(公告)日:2021-09-23
申请号:US16621555
申请日:2018-06-07
Inventor: Sarim DASTGIR , Francesco FERRETTI , Muhammad SHARIF , Ralf JACKSTELL , Matthias BELLER , Douglas W. STEPHAN , Louie FAN
IPC: C07C51/09 , C07C29/149
Abstract: Disclosed are methods or processes of synthesizing building blocks and feedstocks for producing a broader range of polymers, including renewable polymers, from renewable resources such as CO2. In a process of manufacturing a renewable feedstock for polymer production, a CO2 derived lactone is prepared and processed to form the renewable feedstock. The process may include alkoxycarbonylation of the CO2 derived lactone to form a diester and hydrogenation of the diester.
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公开(公告)号:US20210288502A1
公开(公告)日:2021-09-16
申请号:US17196372
申请日:2021-03-09
Inventor: Ali Yaseen M E Elrayyah
Abstract: A distributed energy management system includes a photovoltaic (PV) source, and a plurality of controllable loads in communication with the PV source. The plurality of controllable loads include a first controllable load including a first interactive plug associated with a first connected state timer and a first disconnected state timer, and a second controllable load including a second interactive plug associated with a second connected state timer and a second disconnected state timer. The PV source is configured to determine a maximum PV power, determine a difference between the maximum PV power and a current PV power, responsive to determining that the difference is less than or equal to a threshold power, set the reference AC voltage as a first voltage, and responsive to determining that the difference is greater than the threshold power, set the reference AC voltage as a second voltage greater than the first voltage.
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公开(公告)号:US20210269326A1
公开(公告)日:2021-09-02
申请号:US16967606
申请日:2019-02-05
Applicant: Trinity College Dublin , Qatar Foundation for Education, Science and Community Development
Inventor: Fadwa EL-MELLOUHI , Heesoo PARK , Nouar TABET , Fahhad ALHARBI , Stefano SANVITO
IPC: C01G33/00 , H01L31/036 , H01L31/0264 , C01B19/00
Abstract: Cesium-niobium-chalcogenide compounds and a semiconductor device are provided. The cesium-niobium-chalcogenide compound is selected from the group consisting of CsNbS3, CsNbSe3, and CsNbOx-3Qx, where Q is S or Se, and x is 1 or 2, and includes an edge-shared orthorhombic crystal structure. In one embodiment, the semiconductor device includes a cathode layer, an anode layer, and an active layer disposed between the cathode layer and the anode layer, and the active layer includes the cesium-niobium-chalcogenide compound.
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公开(公告)号:US20210252370A1
公开(公告)日:2021-08-19
申请号:US17175085
申请日:2021-02-12
Inventor: Michael Jean-Marie Aupetit , Khalid Kunji
Abstract: The present disclosure provides a new and innovative system for sport design, tracking, and sharing. The system includes a set of wireless components in communication with a computing system. The computing system may include a graphical user interface, and at least in some instances, communicates over a network with an external system such as a social media platform. Through the graphical interface, a user may program rules to a sport into the wireless components. The user or users may perform the sport with the programmed wireless components, which analyze the actions performed according to the programmed rules. The analysis and other data collected by the wireless components may be reviewed by the users after playing the sport. Furthermore, the data collected and the rules programmed into the wireless components may be shared online to the external system for rating and ranking by an online community.
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公开(公告)号:US11053138B2
公开(公告)日:2021-07-06
申请号:US16030807
申请日:2018-07-09
Inventor: Muataz A. Hussien , Ahmed Mohammed Fard , Tarik Rhadfi , Hugues Preud'Homme , Marwan K. Khraisheh , Nidal Hilal
IPC: C02F1/28 , B01J20/02 , C01B32/921 , B01J20/30 , C02F101/10
Abstract: A method for removing arsenic from a liquid includes adding a two-dimensional metal carbide adsorbent to the liquid to adsorb the arsenic from the liquid. The two-dimensional metal carbide adsorbent can include at least one MXene, having the formula Mn+1Xn, where n=1, 2 or 3, where M is an early transition metal, such as scandium (Sc), titanium (Ti), vanadium (V), chromium (Cr), yttrium (Y), zirconium (Zr), niobium (Nb), molybdenum (Mo) or the like, and X is either carbon or nitrogen. The MXene may be Ti3C2.
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公开(公告)号:US10927214B2
公开(公告)日:2021-02-23
申请号:US15928944
申请日:2018-03-22
Inventor: Mohammed Al-Hashimi , Hugo Bronstein
Abstract: The method of making a pyrrolo bisthiazole homopolymer starts with dissolving a dibrominated pyrrolo[3,2-d:4,5-d′]bisthiazole monomer having the formula: where R is an alkyl group, in anhydrous tetrahydrofuran (THF). Then, the solvated monomer is treated with 1 equivalent of a Turbo-Grignard reagent complex having the formula iPrMgCl.LiCl at 0° C. to form a reaction mixture. The reaction mixture is stirred for 1 hour at room temperature, and after stirring, the reaction mixture is refluxed for 24 hours. A conjugated homopolymer product having the formula: where n is the number of repeating units of pyrrolo[3,2-d:4,5-d′]bisthiazole, is recovered from the reaction mixture. The PBTz-based homopolymers showed broad absorption from 450 to 850 nm in thin film and excellent photochemical and thermal stability, making the polymers suitable for lightweight, low cost plastic electronic devices.
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