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    • 21. 发明申请
    • Methods of producing carbon nanotubes using peptide or nucleic acid micropatterning
    • 使用肽或核酸微图案生产碳纳米管的方法
    • US20050151126A1
    • 2005-07-14
    • US10750141
    • 2003-12-31
    • Mineo YamakawaYeugang ZhangXing SuLei SunAndrew BerlinNarayanan Sundararajan
    • Mineo YamakawaYeugang ZhangXing SuLei SunAndrew BerlinNarayanan Sundararajan
    • C01B31/02D01F9/127H01L51/00H01L51/30D01F9/12H01L29/06
    • B82Y40/00B82Y10/00B82Y30/00C01B32/162C01B2202/08C01B2202/36D01F9/127H01L51/0048H01L51/0052
    • The methods, apparatus and systems disclosed herein concern ordered arrays of carbon nanotubes. In particular embodiments of the invention, the nanotube arrays are formed by a method comprising attaching catalyst nanoparticles 140, 230 to polymer 120, 210 molecules, attaching the polymer 120, 210 molecules to a substrate, removing the polymer 120, 210 molecules and producing carbon nanotubes on the catalyst nanoparticles 140, 230. The polymer 120, 210 molecules can be attached to the substrate in ordered patterns, using self-assembly or molecular alignment techniques. The nanotube arrays can be attached to selected areas 110, 310 of the substrate. Within the selected areas 110, 310, the nanotubes are distributed non-randomly. Other embodiments disclosed herein concern apparatus that include ordered arrays of nanotubes attached to a substrate and systems that include ordered arrays of carbon nanotubes attached to a substrate, produced by the claimed methods. In certain embodiments, provided herein are methods for aligning a molecular wire, by ligating the molecular wire to a double stranded DNA molecule.
    • 本文公开的方法,装置和系统涉及碳纳米管的有序阵列。 在本发明的具体实施方案中,纳米管阵列通过包括将催化剂纳米颗粒140,230连接到聚合物120,210分子,将聚合物120,210分子连接到基底上的方法形成,除去聚合物120,210分子并产生碳 催化剂纳米颗粒140,230上的纳米管。聚合物120,210分子可以使用自组装或分子对准技术以有序图案附着到基底上。 纳米管阵列可以附着到基板的选定区域110,310。 在所选择的区域110,310内,纳米管是非随机分布的。 本文公开的其它实施方案涉及包括连接到衬底的纳米管的有序阵列和包括通过所要求保护的方法产生的连接到衬底的碳纳米管的有序阵列的系统的装置。 在某些实施方案中,本文提供了通过将分子线连接到双链DNA分子来对齐分子线的方法。
    • 23. 发明授权
    • Translating language characters in media content
    • 翻译媒体内容中的语言字符
    • US09251144B2
    • 2016-02-02
    • US13277109
    • 2011-10-19
    • Jun DuLei SunJian SunQiang Huo
    • Jun DuLei SunJian SunQiang Huo
    • G06F17/28G06F3/0488G06F17/30G06F3/0484
    • G06F17/289G06F3/04842G06F3/0488G06F17/30253
    • Some implementations disclosed herein provide techniques and arrangements to enable translating language characters in media content. For example, some implementations receive a user selection of a first portion of media content. Some implementations disclosed herein may, based on the first portion, identify a second portion of the media content. The second portion of the media content may include one or more first characters of a first language. Some implementations disclosed herein may create an image that includes the second portion of the media content and may send the image to a server. Some implementations disclosed herein may receive one or more second characters of a second language corresponding to a translation of the one or more first characters of the first language from the server.
    • 本文公开的一些实施例提供了能够在媒体内容中翻译语言字符的技术和布置。 例如,一些实现接收用户对媒体内容的第一部分的选择。 本文公开的一些实施例可以基于第一部分标识媒体内容的第二部分。 媒体内容的第二部分可以包括第一语言的一个或多个第一字符。 本文公开的一些实现方式可以创建包括媒体内容的第二部分并且可以将图像发送到服务器的图像。 本文公开的一些实现方式可以从服务器接收对应于第一语言的一个或多个第一字符的翻译的第二语言的一个或多个第二字符。
    • 30. 发明授权
    • Methods for synchronized pulse shape tailoring
    • 同步脉冲形状裁剪方法
    • US07301981B2
    • 2007-11-27
    • US11067319
    • 2005-02-25
    • Yunlong SunLei Sun
    • Yunlong SunLei Sun
    • H01S3/082
    • H01S3/082B23K26/0622H01S3/07H01S3/0805H01S3/08086H01S3/083H01S3/10038H01S3/10046H01S3/109H01S3/117H01S3/127H01S3/1611
    • A plurality of subresonators (12, 14), having different design configurations, share a common resonator section (18) such that the lasing action can be substantially synchronized to provide coherent laser pulses that merge the different respective pulse energy profile and/or pulse width characteristics imparted by the configurations of the subresonators (12, 14). The subresonators (12, 14) may share a laser medium (42) in the common section, or each distinct subresonator section (28, 36) may have its own laser medium (42). Exemplary long and short subresonators (12, 14) generate specially tailored laser pulses having a short rise time and a long pulse width at one wavelength or two different wavelengths that may be beneficial for a variety of laser and micromachining applications including memory link processing.
    • 具有不同设计配置的多个子共振器(12,14)共享公共谐振器部分(18),使得激光作用可以基本上同步,以提供合并不同的相应脉冲能量分布和/或脉冲宽度的相干激光脉冲 通过子共振器(12,14)的构造赋予的特性。 子共振器(12,14)可以在公共部分中共享激光介质(42),或者每个不同的子谐振器部分(28,36)可以具有其自己的激光介质(42)。 示例性的长和短子谐振器(12,14)产生特定定制的激光脉冲,其具有在一个波长或两个不同波长处具有短的上升时间和长脉冲宽度,这可能对于包括存储器链路处理的各种激光和微加工应用有利。