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公开(公告)号:US20210395137A1
公开(公告)日:2021-12-23
申请号:US17297034
申请日:2019-11-25
Applicant: CORNING INCORPORATED
Inventor: Indrajit Dutta , Nicholas James Smith
Abstract: A glass glass-ceramic composite comprises a substrate comprising an alkali-containing glass bulk, the bulk comprising Al2O3 and SiO2 and alkali, and a glass-ceramic surface layer, the surface layer comprising an alkali-depleted glass ceramic comprising Al2O3 and SiO2 with at least 5% crystalline phase by volume, wherein the alkali-depleted glass ceramic surface layer comprises a mol % Al2O3 of at least 51%. A method of preparing the composite is also disclosed.
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公开(公告)号:US20200062630A1
公开(公告)日:2020-02-27
申请号:US16542585
申请日:2019-08-16
Applicant: Corning Incorporated
Inventor: Indrajit Dutta , Jean Marc Galea , Melinda Ann Hourihan , Lisa Ann Lamberson , Robert Michael Morena , Jian-Zhi Jay Zhang
Abstract: Methods of producing a glass article include melting a first glass composition and feeding a second glass composition into the melter. Both glass compositions include the same combination of components but at least one component has a concentration that is different in each. At least three glass articles may be drawn from the melter, including: a first glass article formed from the first glass composition; at least one intermediate glass article composed of neither the first nor the second glass composition; and a final glass article not composed of the first glass composition. The concentration of the at least one component in the intermediate glass article may be between the concentration in the first and second glass compositions. The first glass article and final glass article may have differing values for certain properties, and the intermediate glass article may have an intermediate set of values for the same properties.
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公开(公告)号:US10472271B2
公开(公告)日:2019-11-12
申请号:US15155161
申请日:2016-05-16
Applicant: CORNING INCORPORATED
Inventor: Indrajit Dutta , Nicholas James Smith
Abstract: Embodiments of a glass substrate including an alkali-containing bulk and an alkali-depleted surface layer, including a substantially homogenous composition are disclosed. In some embodiments, the alkali-depleted surface layer includes about 0.5 atomic % alkali or less. The alkali-depleted surface layer may be substantially free of hydrogen and/or crystallites. Methods for forming a glass substrate with a modified surface layer are also provided.
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公开(公告)号:US20190221885A1
公开(公告)日:2019-07-18
申请号:US16363509
申请日:2019-03-25
Applicant: CORNING INCORPORATED
Inventor: Michael Edward Badding , Indrajit Dutta , Lanrik Wayne Kester , Xinghua Li
IPC: H01M10/0562 , H01M2/14
CPC classification number: H01M10/0562 , H01M2/145 , H01M2300/0068
Abstract: The disclosure relates to ceramic lithium ion electrolyte membranes and processes for forming them. The ceramic lithium electrolyte membrane may comprise at least one ablative edge. Exemplary processes for forming the ceramic lithium ion electrolyte membranes comprise fabricating a lithium ion electrolyte sheet and cutting at least one edge of the fabricated electrolyte sheet with an ablative laser.
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公开(公告)号:US11485663B2
公开(公告)日:2022-11-01
申请号:US16542585
申请日:2019-08-16
Applicant: Corning Incorporated
Inventor: Indrajit Dutta , Jean Marc Galea , Melinda Ann Hourihan , Lisa Ann Lamberson , Robert Michael Morena , Jian-Zhi Jay Zhang
Abstract: Methods of producing a glass article include melting a first glass composition and feeding a second glass composition into the melter. Both glass compositions include the same combination of components but at least one component has a concentration that is different in each. At least three glass articles may be drawn from the melter, including: a first glass article formed from the first glass composition; at least one intermediate glass article composed of neither the first nor the second glass composition; and a final glass article not composed of the first glass composition. The concentration of the at least one component in the intermediate glass article may be between the concentration in the first and second glass compositions. The first glass article and final glass article may have differing values for certain properties, and the intermediate glass article may have an intermediate set of values for the same properties.
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公开(公告)号:US20220344711A1
公开(公告)日:2022-10-27
申请号:US17862036
申请日:2022-07-11
Applicant: CORNING INCORPORATED
Inventor: Michael Edward Badding , Indrajit Dutta , Lanrik Wayne Kester , Xinghua Li
IPC: H01M10/0562 , H01M50/403
Abstract: Lithium-containing polycrystalline ceramic sheets include grains having an average grain size of less than 5 μm, a relative density greater than 90%, and a thickness of up to 200 μm. In aspects, the lithium-containing polycrystalline ceramic sheets include an outer edge of the sheet that has no height variations greater than 1 mm from baseline in a perimeter trace. In aspects, the lithium-containing polycrystalline ceramic sheets include microstructural features of an outer edge of the sheet are no greater than about ⅓ the thickness of the sheet. In aspects, the lithium-containing polycrystalline ceramic sheets include an outer edge of the sheet that is enriched in lithium relative to a bulk of the sheet.
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公开(公告)号:US11469446B2
公开(公告)日:2022-10-11
申请号:US17077330
申请日:2020-10-22
Applicant: CORNING INCORPORATED
Inventor: Michael Edward Badding , Indrajit Dutta , Lanrik Wayne Kester , Xinghua Li
IPC: H01M10/0562 , H01M50/403
Abstract: The disclosure relates to ceramic lithium ion electrolyte membranes and processes for forming them. The ceramic lithium electrolyte membrane may comprise at least one ablative edge. Exemplary processes for forming the ceramic lithium ion electrolyte membranes comprise fabricating a lithium ion electrolyte sheet and cutting at least one edge of the fabricated electrolyte sheet with an ablative laser.
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公开(公告)号:US09917299B2
公开(公告)日:2018-03-13
申请号:US15528978
申请日:2015-11-24
Applicant: Corning Incorporated
IPC: H01M10/0562 , H01M4/134 , H01M4/36 , H01M4/48 , H01M4/60 , H01M4/1395
CPC classification number: H01M4/134 , C01B33/021 , H01M4/0471 , H01M4/13 , H01M4/1395 , H01M4/36 , H01M4/364 , H01M4/366 , H01M4/386 , H01M4/48 , H01M4/483 , H01M4/602
Abstract: Highly porous synergistic combinations of silicon and carbon materials are provided, along with articles that incorporate such materials and processes for producing the materials. The compositions have novel properties and provide significant improvements in Coulombic efficiency, dilithiation capacity, and cycle life when used as anode materials in lithium battery cells including solid state batteries.
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公开(公告)号:US09688570B2
公开(公告)日:2017-06-27
申请号:US14773518
申请日:2014-03-04
Applicant: CORNING INCORPORATED
Inventor: Gabriel Pierce Agnello , Indrajit Dutta , Jean-Francois Oudard
IPC: B32B15/04 , B32B17/06 , C03C17/245 , C03C17/00 , C03C17/34 , C23C16/40 , C23C16/453 , C23C16/52
CPC classification number: C03C17/245 , C03C17/007 , C03C17/2453 , C03C17/3417 , C03C2217/211 , C03C2217/241 , C03C2217/45 , C03C2217/94 , C03C2218/1525 , C03C2218/30 , C03C2218/345 , C23C16/40 , C23C16/453 , C23C16/52
Abstract: Transparent conductive oxide thin films having a plurality of layers with voids located at each interface. Smooth TCO surfaces with no post growth processing and a largely tunable haze value. Methods of making include applying multiple layers of a conductive oxide onto a surface of a substrate, and interrupting the application between the multiple layers to form a plurality of voids at the interfaces.
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公开(公告)号:US11823967B2
公开(公告)日:2023-11-21
申请号:US17100102
申请日:2020-11-20
Applicant: CORNING INCORPORATED
Inventor: Robert Alan Bellman , Indrajit Dutta , Yi-Cheng Hsieh , Toshihiko Ono , Nicholas James Smith
CPC classification number: H01L23/15 , C03C15/00 , C03C21/002 , C03C23/0075 , H01L23/562 , Y10T428/24364 , Y10T428/24479
Abstract: A glass or glass-ceramic carrier substrate, the substrate having undergone at least one complete cycle of a semiconductor fabrication process and having also undergone a reclamation process following the end of the semiconductor fabrication process; the glass or glass-ceramic carrier substrate comprising at least one of the following properties: (i) a coefficient of thermal expansion of less than 13 ppm/° C.; (ii) a Young's Modulus of 70 GPa to 150 GPa; (iii) an IR transmission of greater than 80% at a wavelength of 1064 nm; (iv) a UV transmission of greater than 20% at a wavelength of 255 nm to 360 nm; (v) a thickness tolerance within the same range as the thickness tolerance of the carrier substrate before undergoing at least one complete cycle of the semiconductor fabrication process; (vi) a total thickness variation of less than 2.5 μm; (vii) a failure strength of greater than 80 MPa using a 4-point-bending test; (viii) a pre-shape of 50 μm to 300 μm.
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