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            "abstractNote": "A patent application by the inventors OHGA, DAISUKE (Kurashiki-shi, JP); Nakatsuka, Hitoshi (Kurashiki-shi, JP); Kawakado, Shinya (Kurashiki-shi, JP); Takahashi, Eriko (Kurashiki-shi, JP); Sueyoshi, Shoji (Osaka-shi, JP), filed on July 28, 2014, was made available online on November 20, 2014, according to news reporting originating from Washington, D.C., by NewsRx correspondents (see also Kuraray Co., Ltd.).\n\nThis patent application is assigned to Kuraray Co., Ltd.\n\nThe following quote was obtained by the news editors from the background information supplied by the inventors: \"Hitherto, many fabrics providing a cool sensation have been suggested. There have been known, for example, a method for giving a fabric a cool sensation obtainable from a heat insulating effect by contriving a fiber shape or a way of weaving (Patent Document 1); a method for increasing infrared ray reflectivity by covering a fabric composed of fibers having its surface plated with silver (Patent Document 2); and a method for reflecting infrared rays of wavelengths (800 to 3000 nm) by incorporating titanium oxide into both core and sheath components (Patent Document 3).",
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            "abstractNote": "According to news reporting originating from Washington, D.C., by VerticalNews journalists, a patent application by the inventor Wendel, Dale R. (Union, SC), filed on January 12, 2015, was made available online on July 16, 2015.\n\nNo assignee for this patent application has been made.\n\nReporters obtained the following quote from the background information supplied by the inventors: \"Various different clothing items, such as pants, shirts, coats, hats, and the like are printed with camouflage patterns. The camouflage patterns are designed so that the wearer of the clothing article remains hard to detect visually in a particular environment. Camouflaged clothing articles are used regularly by hunters, outdoorsmen, and the military.\n\n\"Military personnel, for instance, are typically issued camouflaged pattered garments known at battle dress uniforms. The camouflage pattern appearing on the garments typically consists of 3 to 8 colors chosen specifically to blend into a particular environment. For instance, camouflage patterns have been designed for desert, woodland and jungle environments as well as urban environments, and the like. Camouflage patterns have become more and more sophisticated in the recent past. For instance, U.S. Pat. No. 6,805,957, which is incorporated herein by reference, discloses a camouflage pattern system that is intended to provide concealment properties in both the human visible light range and the near infrared range. The camouflage pattern, for instance, may include at least 4 colorings using dyes that in combination produce a range of reflectance values similar to that of the background environment that the individual person will be wearing the garment in. The camouflage pattern system disclosed in the '957 patent includes a macro pattern that is disruptive of the wearer's shape and a micro pattern having sharp edge units of a size capable of blending the wearer into its background.",
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                    "firstName": "Jenni",
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            "abstractNote": "The approach to infrared measurements of diffusely scattering materials often is dictated by the objective of the analysis. Spectral data from three different mid-infrared reflectance sampling accessories are contrasted. Infrared analysis of highly scattering or textured samples is often accomplished via diffuse reflectance sampling accessories. Among two of the most popular diffuse reflectance accessories are the confocal ellipsoidal mirror design, which results in only a fraction of the reflected light being collected, and the integrating sphere design (1). The specific accessory used for the measurement will be determined by the information desired. The aim of this application note is to compare mid-infrared spectral data of a diffuse sample obtained by using various reflection accessories.",
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            "creatorSummary": "Edwards et al.",
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            "itemType": "patent",
            "title": "Titanium dioxide",
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                    "creatorType": "inventor",
                    "firstName": "John L.",
                    "lastName": "Edwards"
                },
                {
                    "creatorType": "inventor",
                    "firstName": "Karl",
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                },
                {
                    "creatorType": "inventor",
                    "firstName": "Emily Ruth",
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                    "lastName": "Reid"
                },
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                    "firstName": "John",
                    "lastName": "Robb"
                },
                {
                    "creatorType": "inventor",
                    "firstName": "Rebecca Louise",
                    "lastName": "Tonkin"
                }
            ],
            "abstractNote": "The present invention provides a colored solar reflective system comprising (1) a particulate material having a substantially rutile crystal habit and having an average particle size of between about 0.5 µm and about 2.0 µm and (2) an organic pigment having a maximum absorption coefficient of about 5,000 mm-1 or greater in the visible light region, a maximum scattering coefficient of about 500 mm-1 or less in the visible light region and an average absorption coefficient of about 50 mm-1 or less in the infrared region.. The solar reflective system, which may be used in a coating composition or as a composition from which articles can be formed, exhibits a dark, intense color while also providing enhanced total solar reflectance.",
            "place": "",
            "country": "",
            "assignee": "Tioxide Europe Limited",
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            "patentNumber": "WO2011101657 A1",
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            "extra": "International Classification C09D5/00; Cooperative Classification C09D7/1225, C09D11/50, C09D7/007, C08K3/22, C09D7/1283, C08K9/02, C09D5/004, C09D7/1275, C08K3/24; European Classification C09D7/12D2B, C09D5/00C, C09D7/00P, C09D11/50, C09D7/12N3, C09D7/12N2",
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                    "firstName": "Steven",
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            ],
            "abstractNote": "An infrared reflecting system according to various aspects of the present invention includes an infrared reflective material and at least one layer. The infrared reflecting material is configured to deflect infrared radiation. The layers inhibit heat transfer via convection and/or conduction and/or obscure the infrared reflective material.",
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            "accessDate": "2015-11-01T04:10:44Z",
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            "extra": "U.S. Classification 442/181; International Classification D03D15/00; Cooperative Classification Y10T442/30, B32B5/024, B32B2437/00, B32B2262/103, B32B15/14, B32B15/02, B32B2255/02, B32B2307/416, B32B2307/714, B32B2307/724, B32B2255/205, B32B2262/0261, B32B2509/00, B32B2307/304, B32B5/26, D03D15/0033, D10B2101/20, D10B2503/03, D10B2505/18, D03D15/00, D03D1/0047, D10B2505/10, F41H3/02, D10B2401/16, B32B7/02, D03D15/0066; European Classification D03D15/00L, D03D15/00, F41H3/02, B32B7/02",
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            "title": "Layered thermal insulation material",
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                    "creatorType": "inventor",
                    "firstName": "Jelle",
                    "lastName": "Horeman"
                },
                {
                    "creatorType": "inventor",
                    "firstName": "Leon G. G.",
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            "abstractNote": "A layered thermal insulation material comprises at least one layer of bubble foil and at least one layer of reflective foil. The at least one layer of bubble foil is provided with a multitude of fluid-filled bubbles on at least one side thereof. The at least one layer of reflective foil is arranged to abut the side of said at least one layer of bubble foil that is provided with bubbles.",
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            "issueDate": "February 18, 2010",
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            "extra": "International Classification F16L59/02, B32B3/12; Cooperative Classification E04B1/78, E04B2001/7691; European Classification E04B1/78",
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            "title": "Ir-reflecting, water vapor-permeable flexible web",
            "creators": [
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                    "firstName": "Gunter",
                    "lastName": "Pusch"
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                    "firstName": "Dieter E.",
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            "abstractNote": "ABSTRACT OF THE DISCLOSURE A support net is covered on each side with a carrier web having an external metal IR-reflecting coating and superposed thereon a protective coating which is substantially transparent to infrared radiation. The metal coatings and the protective coatings are thin enough to be substantially permeable to water vapor. The support net carries the load and allows water vapor to pass through because of its open net-like structure.",
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            "extra": "International Classification E04B1/78, D06Q1/04, D06M11/83, E04H15/54, D06N7/00, B32B5/26, B32B15/14, E06B9/24; Cooperative Classification Y10T442/2139, Y10T428/31678, Y10T442/152, D06N7/0094, D06N2209/0876, D06N2209/123, Y10T428/24107, Y10T428/24091, Y10T428/24099, Y10S428/922, Y10S428/919, Y10S428/938, Y10S2/90, Y10S428/92, Y10S428/921, E04H15/54, B32B15/14, D06Q1/04, D06N7/0039, E06B9/24, D06M11/83, E04B1/78, B32B5/26; European Classification B32B5/26, D06N7/00B8, D06M11/83, E06B9/24, D06N7/00, E04H15/54, D06Q1/04, E04B1/78, B32B15/14",
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            "creatorSummary": "Conolly and Hussey",
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            "title": "Insulated Radiant Barriers in Apparel",
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                    "firstName": "Brian John",
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                    "firstName": "Thomas Kenneth",
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                }
            ],
            "abstractNote": "Fabrics made for apparel, tents, sleeping bags and the like, in various composites, constructed such that a combination of substrate layers and insulation layers is configured to provide improved thermal insulation. The fabric composites are constructed to form a radiant barrier against heat loss via radiation and via conduction from a body.",
            "place": "",
            "country": "United States",
            "assignee": "Brian John Conolly,",
            "issuingAuthority": "",
            "patentNumber": "US20140356574 A1",
            "filingDate": "2014-06-02 Jun 2, 2014",
            "pages": "",
            "applicationNumber": "",
            "priorityNumbers": "",
            "issueDate": "December 4, 2014",
            "priorityDate": "",
            "references": "",
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            "accessDate": "2015-11-01T04:11:58Z",
            "shortTitle": "",
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            "rights": "",
            "extra": "U.S. Classification 428/138, 204/192.15, 442/340, 428/212, 428/196, 442/308, 428/197, 427/535, 442/370, 442/304, 427/160, 442/181, 428/215, 442/221, 442/327, 156/233, 442/315, 427/539, 428/172, 442/189; International Classification C23C14/58, B32B37/00, B32B15/08, C23C26/00, C23C14/02, B32B37/24, B32B27/06, C23C14/24, C23C14/14, B32B27/12, C23C14/00, B32B5/02, B32B15/14; Cooperative Classification B32B2307/726, B32B2262/062, B32B2262/0261, B32B2255/205, B32B5/26, B32B2255/02, B32B3/266, B32B2262/0253, B32B2262/08, B32B2262/0276, Y10T442/60, Y10T442/469, Y10T442/614, Y10T442/425, Y10T442/40, Y10T442/30, Y10T442/647, Y10T442/3065, Y10T442/3325, C23C28/321, C23C8/10, C23C14/24, C23C8/36, C23C14/20, C23C28/345, C23C14/02, Y10T428/24818, Y10T428/24612, Y10T428/2481, Y10T428/24942, Y10T428/24967, Y10T428/24331, B32B5/026, B32B2307/416, B32B5/024, B32B2307/304, B32B2437/00, C23C14/5853, B32B5/022, C23C14/5826, C23C26/00, B32B27/12, C23C14/14, B32B2037/243, B32B27/065, B32B15/08, B32B37/24, B32B37/025, C23C14/0005, B32B15/14",
            "tags": [],
            "collections": [
                "X2TRXIEF"
            ],
            "relations": {},
            "dateAdded": "2015-11-01T04:11:58Z",
            "dateModified": "2015-11-05T04:25:00Z"
        }
    },
    {
        "key": "MATA4ZVU",
        "version": 456,
        "library": {
            "type": "group",
            "id": 423605,
            "name": "Infrared Reflectance for Textiles",
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            },
            "creatorSummary": "O'Keefe et al.",
            "parsedDate": "2014-09-11",
            "numChildren": 1
        },
        "data": {
            "key": "MATA4ZVU",
            "version": 456,
            "itemType": "patent",
            "title": "Infrared Transparent Film",
            "creators": [
                {
                    "creatorType": "inventor",
                    "firstName": "Eoin Seiorse",
                    "lastName": "O'Keefe"
                },
                {
                    "creatorType": "inventor",
                    "firstName": "Adam Joseph",
                    "lastName": "Shohet"
                },
                {
                    "creatorType": "inventor",
                    "firstName": "Paul Anthony",
                    "lastName": "Simons"
                }
            ],
            "abstractNote": "The invention relates to a thermal infrared transparent polymer film suitable for use in an identification device, said film comprising an infrared transparent polymer matrix with a pigment dispersed therein, wherein the thickness of the polymer film is greater than 30 micron and wherein the polymer film has an average transmission in the thermal infrared of greater than or equal to 0.5. Preferably, the pigment comprises an inorganic material. There is further provided a thin film, thermally reflective material (20) comprising the afore-mentioned infrared transparent film (21) and an infrared reflective layer provided on one surface thereof (22).\n\nAKA WO2013050727 A2 issued Apr 11, 2013",
            "place": "",
            "country": "United States",
            "assignee": "Qinetiq Limited",
            "issuingAuthority": "",
            "patentNumber": "US20140254000 A1",
            "filingDate": "2012-10-02 Oct 2, 2012",
            "pages": "",
            "applicationNumber": "",
            "priorityNumbers": "",
            "issueDate": "September 11, 2014",
            "priorityDate": "",
            "references": "",
            "legalStatus": "",
            "DOI": "",
            "citationKey": "",
            "url": "http://www.google.com/patents/US20140254000",
            "accessDate": "2015-11-01T03:49:07Z",
            "shortTitle": "",
            "language": "",
            "rights": "",
            "extra": "U.S. Classification 359/359, 156/308.2, 156/60; International Classification B32B37/04, G02B5/08; Cooperative Classification Y10T156/10, B32B37/04, G02B5/0808, G02B5/208, F41H3/00, G02B5/26",
            "tags": [],
            "collections": [
                "X2TRXIEF"
            ],
            "relations": {},
            "dateAdded": "2015-11-01T03:49:07Z",
            "dateModified": "2015-11-05T04:24:50Z"
        }
    },
    {
        "key": "966TD9B9",
        "version": 456,
        "library": {
            "type": "group",
            "id": 423605,
            "name": "Infrared Reflectance for Textiles",
            "links": {
                "alternate": {
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                    "type": "text/html"
                }
            }
        },
        "links": {
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                "href": "https://api.zotero.org/groups/423605/items/966TD9B9",
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            "alternate": {
                "href": "https://www.zotero.org/groups/infrared_reflectance_for_textiles/items/966TD9B9",
                "type": "text/html"
            }
        },
        "meta": {
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                }
            },
            "creatorSummary": "Holcombe and Nandi",
            "parsedDate": "2007-01-11",
            "numChildren": 1
        },
        "data": {
            "key": "966TD9B9",
            "version": 456,
            "itemType": "patent",
            "title": "Infrared suppressive material",
            "creators": [
                {
                    "creatorType": "inventor",
                    "firstName": "John",
                    "lastName": "Holcombe"
                },
                {
                    "creatorType": "inventor",
                    "firstName": "Manish",
                    "lastName": "Nandi"
                }
            ],
            "abstractNote": "Near infrared suppressive layers are described having an average reflectance between 9% and 70% in the wavelength range from about 400 nm to 700 nm, and an average reflectance of less than or equal to 70% in the wavelength range from about 720 nm to 1100 nm. Additionally, articles made from such near infrared layers are described, wherein the articles provide desirable reduced nIR reflection without substantially altering the visual shade of the overall article.\n\nAKA EP1901624 A2 issud Mar 26, 2008",
            "place": "",
            "country": "United States",
            "assignee": "Holcombe John D,",
            "issuingAuthority": "",
            "patentNumber": "US20070009679 A1",
            "filingDate": "2005-05-25 May 25, 2005",
            "pages": "",
            "applicationNumber": "",
            "priorityNumbers": "",
            "issueDate": "January 11, 2007",
            "priorityDate": "",
            "references": "",
            "legalStatus": "",
            "DOI": "",
            "citationKey": "",
            "url": "http://www.google.com/patents/US20070009679",
            "accessDate": "2015-11-01T04:14:42Z",
            "shortTitle": "",
            "language": "",
            "rights": "",
            "extra": "U.S. Classification 428/17; International Classification A41G1/00, A01N3/00; Cooperative Classification Y10T442/259, F41H3/02, Y10T442/2139; European Classification F41H3/02",
            "tags": [],
            "collections": [
                "X2TRXIEF"
            ],
            "relations": {},
            "dateAdded": "2015-11-01T04:14:42Z",
            "dateModified": "2015-11-05T04:24:44Z"
        }
    }
]