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    • 131. 发明申请
    • LIGHT EMITTING MATERIAL AND METHOD FOR PRODUCTION THEREOF
    • 发光材料及其生产方法
    • US20150108406A1
    • 2015-04-23
    • US14398519
    • 2013-05-07
    • Pavle RADOVANOVICTing WANG
    • Pavle RadovanovicTing Wang
    • C09K11/06C09K11/62C09K11/54C09K11/64
    • C09K11/06C09K11/54C09K11/621C09K11/641C09K2211/1018H01L33/504H01L2933/0041Y02B20/181
    • A method of synthesizing a hybrid nanomaterial substrate for use in a light emitting structure is provided comprising the steps of: (a) defining one or more light emission characteristics for the light emitting structure; (b) selecting a nanocrystal and a compatible light emitting molecule; and (c) based on the light emission characteristics synthesizing a hybrid nanomaterial substrate by selectively varying the size of the nanocrystals in the substrate, and selectively bonding the light emitting molecules to surfaces of the nanocrystals, thereby synthesizing a nanomaterial structure that is operable to define a single illuminating entity operable upon application of a single excitation energy value to generate light emissions consistent with the light emission characteristics. A novel hybrid nanomaterial is also provided consisting of a nanocrystal-luminescent molecule structure defining a single illuminating entity with light emission affecting structural characteristics that vary across surfaces defined by the nanocrystals based on (a) selective variability of the size of the nanocrystals; and (b) selective variability across the substrate of the concentration of the luminescent molecule bonded to surfaces of the nanocrystals. Upon application to for example a diode comprising the hybrid nanomaterial of a single excitation energy value, the hybrid nanomaterial substrate converts the energy value into light emissions that across the variable substrate generates light emissions in white light range. The hybrid nanomaterial is tunable to achieve desired light emitting characteristics of the light emitting structure.
    • 提供合成用于发光结构的混合纳米材料基板的方法,包括以下步骤:(a)限定发光结构的一个或多个发光特性; (b)选择纳米晶体和相容的发光分子; 和(c)基于通过选择性地改变衬底中的纳米晶体的尺寸来合成混合纳米材料衬底的发光特性,并且将发光分子选择性地结合到纳米晶体的表面,由此合成纳米材料结构,其可操作地限定 单个照明实体在施加单个激发能量值时可操作以产生与发光特性一致的光发射。 还提供了一种新颖的混合纳米材料,其由限定单个照明实体的纳米晶体发光分子结构组成,其具有影响结构特征的发光,所述结构特征在纳米晶体限定的表面上变化,所述表面基于(a)纳米晶体尺寸的选择性变化; 和(b)穿过衬底的与纳米晶体表面结合的发光分子的浓度的选择性变化。 当应用于例如包含单个激发能量值的混合纳米材料的二极管时,混合纳米材料衬底将能量值转换成在白色光范围内跨越可变衬底产生光发射的光发射。 混合纳米材料是可调谐的以实现发光结构的期望的发光特性。
    • 134. 发明授权
    • USB connector assembly
    • USB连接器总成
    • US08801471B2
    • 2014-08-12
    • US13664609
    • 2012-10-31
    • Zhi-Ming ZhuTing WangDan Yu
    • Zhi-Ming ZhuTing WangDan Yu
    • H01R24/00
    • H01R13/6271H01R12/79
    • A connector assembly includes a USB socket and a USB connector. The USB socket includes a housing and at least one engaging protrusion protruding from an inner surface of the housing. The USB connector includes a holding portion; a header adapted to be plugged into the USB socket which extends from a first end of the holding portion along a first direction; and a plurality of cables, extending from a second end of the holding portion along a second direction substantially perpendicular to the first direction. At least one groove is defined in the header for receiving the at least one engaging protrusion and preventing the header from accidentally disengaging from the USB socket.
    • 连接器组件包括USB插座和USB连接器。 USB插座包括壳体和从壳体的内表面突出的至少一个接合突起。 USB连接器包括保持部分; 适于插入从所述保持部分的第一端沿着第一方向延伸的所述USB插座的插头; 以及从所述保持部分的第二端沿着基本上垂直于所述第一方向的第二方向延伸的多根电缆。 在集管中限定有至少一个槽,用于容纳至少一个接合突起并防止集管偶然脱离USB插座。