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    • 2. 发明授权
    • Method of manufacturing organic electronic device, and organic electronic device
    • 有机电子器件制造方法及有机电子器件
    • US08796674B2
    • 2014-08-05
    • US13578671
    • 2011-02-07
    • Shun FurukawaTomoyuki NakayamaHiroshi Ishidai
    • Shun FurukawaTomoyuki NakayamaHiroshi Ishidai
    • H01L51/00H01L51/50
    • H01L51/0072H01L51/0037H01L51/0073H01L51/508
    • Provided is a method of manufacturing an organic electronic device, wherein an organic electronic device that controls the injection and mobility of carriers in an organic charge transport layer thereof is manufactured by laminating organic layers comprising the same charge transportable organic compound, when manufacturing the organic electronic device with the coating method. In this method of manufacturing an organic electronic device, which comprises a pair of electrodes on a substrate, and at least an organic functional layer and an organic charge transport layer in between the electrodes, the organic charge transport layer is formed by, in the following order: 1) a process for forming a first organic layer by coating, on the organic functional layer, a first organic layer coating-liquid, containing a charge transportable organic compound; and 2) a process for forming a second organic layer by coating, on the first organic layer, a second organic layer coating-liquid containing the charge transportable organic compound and a metallic compound. The method of manufacturing an organic electronic device is further specified by sections 3), 4), and 5).
    • 本发明提供一种制造有机电子器件的方法,其中通过层压含有相同的电荷传输性有机化合物的有机层来制造有机电子输送层中的有机电子输送层中的载流子的注入和迁移率的有机电子器件, 装置采用涂层法。 在这种制造有机电子器件的方法中,该有机电子器件包括在基片上的一对电极,以及至少有机功能层和电极之间的有机电荷传输层,有机电荷传输层在下面形成 顺序:1)通过在有机功能层上涂覆含有电荷传输性有机化合物的第一有机层涂布液形成第一有机层的方法; 和2)通过在第一有机层上涂覆含有电荷输送性有机化合物和金属化合物的第二有机层涂布液形成第二有机层的方法。 制造有机电子器件的方法进一步由部分3),4)和5)指定。
    • 4. 发明申请
    • METHOD OF MANUFACTURING ORGANIC ELECTRONIC DEVICE, AND ORGANIC ELECTRONIC DEVICE
    • 制造有机电子器件的方法和有机电子器件
    • US20120319094A1
    • 2012-12-20
    • US13578671
    • 2011-02-07
    • Shun FurukawaTomoyuki NakayamaHiroshi Ishidai
    • Shun FurukawaTomoyuki NakayamaHiroshi Ishidai
    • H01L51/54H01L51/56
    • H01L51/0072H01L51/0037H01L51/0073H01L51/508
    • Provided is a method of manufacturing an organic electronic device, wherein an organic electronic device that controls the injection and mobility of carriers in an organic charge transport layer thereof is manufactured by laminating organic layers comprising the same charge transportable organic compound, when manufacturing the organic electronic device with the coating method. In this method of manufacturing an organic electronic device, which comprises a pair of electrodes on a substrate, and at least an organic functional layer and an organic charge transport layer in between the electrodes, the organic charge transport layer is formed by, in the following order: 1) a process for forming a first organic layer by coating, on the organic functional layer, a first organic layer coating-liquid, containing a charge transportable organic compound; and 2) a process for forming a second organic layer by coating, on the first organic layer, a second organic layer coating-liquid containing the charge transportable organic compound and a metallic compound. The method of manufacturing an organic electronic device is further specified by sections 3), 4), and 5).
    • 本发明提供一种制造有机电子器件的方法,其中通过层压含有相同的电荷传输性有机化合物的有机层来制造有机电子输送层中的有机电子输送层中的载流子的注入和迁移率的有机电子器件, 装置采用涂层法。 在这种制造有机电子器件的方法中,该有机电子器件包括在基片上的一对电极,以及至少有机功能层和电极之间的有机电荷传输层,有机电荷传输层在下面形成 顺序:1)通过在有机功能层上涂覆含有电荷传输性有机化合物的第一有机层涂布液形成第一有机层的方法; 和2)通过在第一有机层上涂覆含有电荷输送性有机化合物和金属化合物的第二有机层涂布液形成第二有机层的方法。 制造有机电子器件的方法进一步由部分3),4)和5)指定。
    • 6. 发明申请
    • ULTRASONIC PROBE AND ULTRASONIC DIAGNOSTIC DEVICE
    • 超声探头和超声诊断装置
    • US20120022378A1
    • 2012-01-26
    • US13146464
    • 2010-02-05
    • Hiroshi IshidaiHiromi Akahori
    • Hiroshi IshidaiHiromi Akahori
    • A61B8/14B06B1/06
    • B06B1/064A61B8/13B06B1/0622
    • An ultrasonic probe includes at least one transmission element layer for transmitting ultrasonic waves, at least one reception element layer for receiving ultrasonic waves and which is provided with an electrode on each of both surfaces opposed in a direction of a thickness thereof, and at least one matching layer for matching acoustic impedance. These layers are arranged in this order in a direction of transmitting the ultrasonic waves. The reception element layer is provided with a projecting portion projecting in a direction of elevation from upper and lower layers which sandwich the two electrodes respectively formed on both surfaces of the reception element layer, and at least one of the electrodes is formed by extending to the projecting portion.
    • 超声波探头包括至少一个用于发射超声波的传输元件层,至少一个用于接收超声波的接收元件层,并且在其厚度方向上相对的两个表面中的每一个上设置有电极,并且至少一个 用于匹配声阻抗的匹配层。 这些层按照发送超声波的方向依次排列。 接收元件层具有突出部,该突出部从夹着形成在接收元件层的两个表面上的两个电极的上下层突出的方向突出,并且至少一个电极通过延伸到 突出部分。
    • 7. 发明授权
    • Ultrasonic probe and ultrasonic diagnostic device
    • 超声波探头和超声波诊断装置
    • US08784319B2
    • 2014-07-22
    • US13146464
    • 2010-02-05
    • Hiroshi IshidaiHiromi Akahori
    • Hiroshi IshidaiHiromi Akahori
    • A61B8/00A61B8/14
    • B06B1/064A61B8/13B06B1/0622
    • An ultrasonic probe includes at least one transmission element layer for transmitting ultrasonic waves, at least one reception element layer for receiving ultrasonic waves and which is provided with an electrode on each of both surfaces opposed in a direction of a thickness thereof, and at least one matching layer for matching acoustic impedance. These layers are arranged in this order in a direction of transmitting the ultrasonic waves. The reception element layer is provided with a projecting portion projecting in a direction of elevation from upper and lower layers which sandwich the two electrodes respectively formed on both surfaces of the reception element layer, and at least one of the electrodes is formed by extending to the projecting portion.
    • 超声波探头包括至少一个用于发射超声波的传输元件层,至少一个用于接收超声波的接收元件层,并且在其厚度方向相对的两个表面中的每个表面上设置有电极,并且至少一个 用于匹配声阻抗的匹配层。 这些层按照发送超声波的方向依次排列。 接收元件层具有突出部,该突出部从夹着形成在接收元件层的两个表面上的两个电极的上下层突出的方向突出,并且至少一个电极通过延伸到 突出部分。
    • 8. 发明授权
    • Ultrasonic probe and ultrasonic diagnostic device
    • 超声波探头和超声波诊断装置
    • US08469894B2
    • 2013-06-25
    • US13146527
    • 2010-02-05
    • Hiroshi Ishidai
    • Hiroshi Ishidai
    • A61B9/00B06B1/06
    • B06B1/0622A61B8/13A61B8/4483B06B1/064
    • An ultrasonic probe includes at least one transmission element layer for transmitting ultrasonic waves, at least one reception element layer for receiving ultrasonic waves and which is provided with an electrode on each of both surfaces opposed in a thickness direction thereof, and at least one matching layer for matching acoustic impedance. These layers are arranged in this order in a direction of transmitting the ultrasonic waves. An upper layer and a lower layer each sandwiching the electrodes formed on both surfaces of the reception element layer are each provided with a projecting portion which projects from the reception element layer in a direction of elevation. At least one of the electrodes formed on the reception element layer is formed by extending on a surface of one of the projecting portion opposed to a respective one of the upper layer and the lower layer.
    • 超声波探头包括至少一个用于发送超声波的传输元件层,至少一个用于接收超声波的接收元件层,并且在其厚度方向上相对的两个表面中的每一个上设置有电极,以及至少一个匹配层 用于匹配声阻抗。 这些层按照发送超声波的方向依次排列。 每个夹着形成在接收元件层的两个表面上的电极的上层和下层分别设置有从接收元件层沿高度方向突出的突出部分。 形成在接收元件层上的至少一个电极通过在与上层和下层中的相应一个相对的突出部分中的一个的表面上延伸而形成。
    • 9. 发明申请
    • ULTRASONIC PROBE AND ULTRASONIC DIAGNOSTIC DEVICE
    • 超声探头和超声诊断装置
    • US20110288416A1
    • 2011-11-24
    • US13146527
    • 2010-02-05
    • Hiroshi Ishidai
    • Hiroshi Ishidai
    • A61B8/00B06B1/06
    • B06B1/0622A61B8/13A61B8/4483B06B1/064
    • An ultrasonic probe includes at least one transmission element layer for transmitting ultrasonic waves, at least one reception element layer for receiving ultrasonic waves and which is provided with an electrode on each of both surfaces opposed in a thickness direction thereof, and at least one matching layer for matching acoustic impedance. These layers are arranged in this order in a direction of transmitting the ultrasonic waves. An upper layer and a lower layer each sandwiching the electrodes formed on both surfaces of the reception element layer are each provided with a projecting portion which projects from the reception element layer in a direction of elevation. At least one of the electrodes formed on the reception element layer is formed by extending on a surface of one of the projecting portion opposed to a respective one of the upper layer and the lower layer.
    • 超声波探头包括至少一个用于发送超声波的传输元件层,至少一个用于接收超声波的接收元件层,并且在其厚度方向上相对的两个表面中的每一个上设置有电极,以及至少一个匹配层 用于匹配声阻抗。 这些层按照发送超声波的方向依次排列。 每个夹着形成在接收元件层的两个表面上的电极的上层和下层分别设置有从接收元件层沿高度方向突出的突出部分。 形成在接收元件层上的至少一个电极通过在与上层和下层中的相应一个相对的突出部分中的一个的表面上延伸而形成。
    • 10. 发明授权
    • Silver halide color photographic light-sensitive material
    • 卤化银彩色摄影感光材料
    • US5565313A
    • 1996-10-15
    • US612072
    • 1996-03-07
    • Hiroshi IshidaiHiroshi KitaYutaka Kaneko
    • Hiroshi IshidaiHiroshi KitaYutaka Kaneko
    • G03C7/00C07D487/04G03C7/30G03C7/38G03C7/392
    • G03C7/3835G03C7/3008G03C7/39216
    • Disclosed is a silver halide color photographic light-sensitive material comprising at least one of magenta coupler represented by Formula I or II: ##STR1## wherein R.sup.1 and R.sup.4 each represent a substituent; R.sup.2 and R.sup.3 each represent a substituted or unsubstituted alkyl group; L.sub.1 and L.sub.2 each represent a substituted or unsubstituted alkylene group, an arylene group, an aralkylene group or an arylenealkylene group; Y represents ##STR2## R.sup.5 and R.sup.6 each represent a substituent; X.sub.1 represents a hydrogen atom or a group capable of splitting off upon reacting with an oxidized product of a color developing agent; Z represents non-metal atomic group forming a 5-membered or 6-membered heterocyclic ring together with a nitrogen atom; m and n each represent an integer of 0 or 1; p represents an integer of 0 to 4; q represents an integer of 0 to 2, provided that when p is 2 or more, R.sup.4 may be the same or different; and each of them may form a ring.
    • 公开了一种卤化银彩色照相感光材料,其包含由式I或II表示的品红色偶联剂中的至少一种:R 1和R 4各自表示取代基; R2和R3各自表示取代或未取代的烷基; L1和L2各自表示取代或未取代的亚烷基,亚芳基,亚芳烷基或亚芳基亚烷基; Y表示R5和R6各自表示取代基; X1表示氢原子或与彩色显影剂的氧化物反应时能够分解的基团; Z表示与氮原子一起形成5元或6元杂环的非金属原子团; m和n各自表示0或1的整数; p表示0〜4的整数, q表示0〜2的整数,条件是当p为2以上时,R 4可以相同或不同, 并且它们中的每一个可以形成环。