PHOTOCURABLE COMPOSITION, ARTICLE, AND METHOD OF USE
    1.
    发明申请
    PHOTOCURABLE COMPOSITION, ARTICLE, AND METHOD OF USE 审中-公开
    可光合成分,文章和使用方法

    公开(公告)号:US20150060113A1

    公开(公告)日:2015-03-05

    申请号:US14017707

    申请日:2013-09-04

    摘要: A photocurable composition includes an acid-generating compound, a multifunctional epoxy resin, and an epoxysilane oligomer represented by the following Structure (I): wherein R1 is a substituted or unsubstituted alkyl group, R2 is a substituted or unsubstituted linear, branched, or cyclic alkyl group or an alkyl ether residue substituted with an epoxide, R3 is hydrogen or a substituted or unsubstituted alkyl, and x+y≧2. The photocurable composition can be provided as a photoresist layer on a substrate, and can then be imprinted to form a pattern of micro-channels. These micro-channels can be filled with a conductive composition (ink) and used to form an entrenched pattern of micro-wires to provide a transparent conductive electrode.

    摘要翻译: 光固化性组合物包括产酸化合物,多官能环氧树脂和由以下结构(I)表示的环氧硅烷低聚物:其中R1是取代或未取代的烷基,R2是取代或未取代的直链,支链或环状 烷基或被环氧化物取代的烷基醚残基,R3是氢或取代或未取代的烷基,x +y≥2。 可光固化组合物可以作为光致抗蚀剂层提供在基底上,然后可以印刷以形成微通道图案。 这些微通道可以用导电组合物(油墨)填充,并用于形成固定的微细线图案以提供透明的导电电极。

    Method of forming conductive films with micro-wires
    2.
    发明授权
    Method of forming conductive films with micro-wires 有权
    用微丝形成导电膜的方法

    公开(公告)号:US09099227B2

    公开(公告)日:2015-08-04

    申请号:US14017638

    申请日:2013-09-04

    摘要: A pattern of conductive micro-wires as in a conductive pattern can be prepared using photo-lithography, or imprint technology. A photocurable composition is cured to form a pattern of photocured micro-channels. A conductive composition comprising metal nano-particles is added to the photocured micro-channels and excess conductive composition outside the photocured micro-channels is removed. The conductive composition in the photocured micro-channels is then dried at a temperature of less than 60° C. The dried conductive composition in the photocured micro-channels is treated with hydrogen chloride vapor to form conductive micro-wires in the photocured micro-channels at a temperature of less than 60° C. The outer surface of the conductive micro-wires is then polished in the presence of water, to form a micro-wire pattern.

    摘要翻译: 可以使用光刻或压印技术制备导电图案中的导电微线的图案。 固化光固化组合物以形成光固化微通道的图案。 将包含金属纳米颗粒的导电组合物添加到光固化微通道中,并除去光固化微通道外部的过量导电组合物。 然后将光固化微通道中的导电组合物在小于60℃的温度下干燥。光固化微通道中的干燥导电组合物用氯化氢蒸气处理以在光固化微通道中形成导电微丝 在低于60℃的温度下,然后在水的存在下对导电微细线的外表面进行抛光,以形成微线图案。

    Method of making micro-channel structure for micro-wires
    5.
    发明授权
    Method of making micro-channel structure for micro-wires 有权
    微线微通道结构的制作方法

    公开(公告)号:US09282647B2

    公开(公告)日:2016-03-08

    申请号:US13746346

    申请日:2013-01-22

    摘要: A method of making a micro-channel structure and applying a curable ink to the micro-channel structure includes providing a substrate and depositing a single layer of a curable polymer on the substrate, the single curable layer having a layer thickness. One or more micro-channels adapted to receive curable ink are embossed into the single curable layer, the micro-channels having a micro-channel thickness that is in a range of two microns to ten microns less than the layer thickness. The single curable layer is cured to form a single cured layer so that deformations of the micro-channels or the surface of the single cured layer are reduced. Curable ink is coated over the surface and micro-channels of the single cured layer. The curable ink is removed from the surface of the single cured layer and the curable ink is cured.

    摘要翻译: 制造微通道结构并将可固化油墨施加到微通道结构的方法包括提供基底并在基底上沉积单层可固化聚合物,该单一可固化层具有层厚度。 适于接收可固化油墨的一个或多个微通道被压印到单个可固化层中,微通道的微通道厚度比层厚度小2微米至10微米。 单个可固化层被固化以形成单个固化层,使得微通道或单个固化层的表面变形减小。 可固化油墨涂覆在单一固化层的表面和微通道上。 可固化油墨从单一固化层的表面除去,固化油墨固化。

    MICRO-CHANNEL STRUCTURE FOR MICRO-WIRES
    8.
    发明申请
    MICRO-CHANNEL STRUCTURE FOR MICRO-WIRES 有权
    微通道微通道结构

    公开(公告)号:US20140205811A1

    公开(公告)日:2014-07-24

    申请号:US13746352

    申请日:2013-01-22

    IPC分类号: G06F3/044

    摘要: The purpose of this invention is to retain an abhor nut to a power tool while the nut is not in use. More specifically it is intended to keep the abhor nut of an angle grinder attached to the grinder. Grinding abrasives for an angle grinder can be purchased with or without a center hub. The abrasives that do not have a center hub make use of the abhor nut to secure them to the grinder. When an abrasive with a center hub is used on the grinder the abhor nut is not needed. The nut is removed from the abhor and frequently becomes misplaced. This invention keeps the grinder and nut together while the nut is not being used. This is designed for angle grinders, but could be used for other power tools and machinery.

    摘要翻译: 本发明的目的是在不使用螺母的同时将止动螺母保持在电动工具上。 更具体地说,其目的是保持角磨机的棘手螺母附着在研磨机上。 研磨研磨机可以在有或没有中心轮毂的情况下购买。 没有中心轮毂的磨料使用煞车螺母将其固定在研磨机上。 当研磨机上使用具有中心轮毂的磨料时,不需要煞车螺母。 螺母从憎恶中被移除,并且经常变得放错。 本发明在不使用螺母的同时将研磨机和螺母保持在一起。 这是为角磨机设计的,但可用于其他电动工具和机械。

    MAKING IMPRINTED THIN-FILM ELECTRONIC SENSOR STRUCTURE
    9.
    发明申请
    MAKING IMPRINTED THIN-FILM ELECTRONIC SENSOR STRUCTURE 有权
    制造薄膜薄膜电子传感器结构

    公开(公告)号:US20160047772A1

    公开(公告)日:2016-02-18

    申请号:US14460589

    申请日:2014-08-15

    IPC分类号: G01N27/403

    摘要: A method of making an imprinted electronic sensor structure on a substrate for sensing an environmental factor includes coating, imprinting, and curing a curable layer on the substrate to form a plurality of spatially separated micro-channels extending from the layer surface into the cured layer. First and second layers are located in each micro-channel to form a multi-layer micro-wire. Either the first layer is a cured electrical conductor forming a conductive layer located only within the micro-channel and the second layer is a reactive layer or the first layer is a reactive layer and the second layer is a cured electrical conductor forming a conductive layer located only within the micro-channel. The reactive layer is exposed to the environmental factor and at least a portion of the reactive layer responds to the environmental factor.

    摘要翻译: 在感测环境因素的基板上制作印刷电子传感器结构的方法包括在基板上涂覆,压印和固化可固化层,以形成从层表面延伸到固化层中的多个空间分离的微通道。 第一和第二层位于每个微通道中以形成多层微线。 第一层是固化电导体,其形成仅位于微通道内的导电层,第二层是反应层,或者第一层是反应层,第二层是形成导电层的固化电导体 只在微通道内。 反应层暴露于环境因素,并且反应层的至少一部分响应环境因素。

    Making imprinted multi-layer structure
    10.
    发明授权
    Making imprinted multi-layer structure 有权
    制作印刷多层结构

    公开(公告)号:US09186698B1

    公开(公告)日:2015-11-17

    申请号:US14526603

    申请日:2014-10-29

    摘要: A method of making an imprinted multi-layer structure includes providing a support and locating a first curable layer including a first material on or over the support. A second curable layer including a second material different from the first material is located on or over the first curable layer. The first curable layer and the second curable layer are imprinted in a single step with an imprinting stamp having a structure with a depth greater than the thickness of the second curable layer. The first curable layer and the second curable layer are cured in a single step to form a first cured layer and a second cured layer. The imprinting stamp is removed to form an imprinted multi-layer structure with a depth greater than the thickness of the second cured layer.

    摘要翻译: 一种制造压印多层结构的方法包括提供支撑件并将包括第一材料的第一可固化层定位在支撑体上或上方。 包含与第一材料不同的第二材料的第二可固化层位于第一可固化层上或上方。 第一可固化层和第二可固化层用一个具有深度大于第二可固化层的厚度的结构的压印印模在一个步骤中印刷。 第一可固化层和第二可固化层在一个步骤中固化以形成第一固化层和第二固化层。 去除压印印模以形成深度大于第二固化层厚度的印刷多层结构。