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    • 71. 发明授权
    • Lighting fixture with quick-disconnect light source mount
    • 照明灯具具有快速断开的光源安装
    • US07059745B2
    • 2006-06-13
    • US10072703
    • 2002-02-07
    • Myron K. GordinTimothy J. Boyle
    • Myron K. GordinTimothy J. Boyle
    • H01R33/00
    • F21V19/0085F21V9/06F21V19/008F21V19/04F21V21/30F21V25/00F21W2131/105H01J61/35
    • A luminaire assembly (10) using a double-ended, unshielded high intensity discharge (HID) light source (100). In one aspect, the assembly (10) includes a light source mount (22) adapted to manually, without tools, mount and remove the HID light source (100). The light source mount (22) can optionally include structure (106L and R, 134L and R) to automatically position the light source (100) in a desired orientation. In another aspect, the assembly (10) includes a connection (104L and R, 304L and R, 306L and R) adapted to manually, without tools, connect the light source (100) to electrical power, the connection (104L and R, 304L and R, 306L and R) can be configured to have no electrically conducting surfaces directly exposed or accessible to human fingers and can be configured to be positioned relatively away from the light source (100). In another aspect, the assembly (10) can include an ignitor circuit for the light source (100) farther away from a ballast circuit for the light source (100) but closer to the light source (100). The ignitor circuit can be in a housing (16) that is mountable to the assembly (10).
    • 一种使用双端,非屏蔽高强度放电(HID)光源(100)的照明器组件(10)。 在一个方面,组件(10)包括适于在没有工具的情况下手动安装和移除HID光源(100)的光源安装座(22)。 光源支架(22)可以可选地包括结构(106L和R,134L和R),以将光源(100)自动定位在期望的方位。 在另一方面,组件(10)包括适于手动地连接(104L和R,304L和R,306L和R),无需工具将光源(100)连接到电力,连接(104 L和R,304L和R,306L和R)可以被配置为不具有直接暴露于人类手指的可接触的导电表面,并且可被配置为相对远离光源(100)定位。 在另一方面,组件(10)可以包括用于光源(100)的点火器电路,远离光源(100)的镇流器电路,但更靠近光源(100)。 点火器电路可以在可安装到组件(10)的壳体(16)中。
    • 72. 发明授权
    • Synthesis metal nanoparticle
    • 合成金属纳米粒子
    • US06929675B1
    • 2005-08-16
    • US10424231
    • 2003-04-24
    • Scott D. BungeTimothy J. Boyle
    • Scott D. BungeTimothy J. Boyle
    • B01J13/00B22F1/00B22F9/24
    • B82Y30/00B01J13/00B22F1/0018B22F9/24
    • A method for providing an anhydrous route for the synthesis of amine capped coinage-metal (copper, silver, and gold) nanoparticles (NPs) using the coinage-metal mesityl (mesityl=C6H2(CH3)3-2,4,6) derivatives. In this method, a solution of (Cu(C6H2(CH3)3)5, (Ag(C6H2(CH3)3)4, or (Au(C6H2(CH3)3)5 is dissolved in a coordinating solvent, such as a primary, secondary, or tertiary amine; primary, secondary, or tertiary phosphine, or alkyl thiol, to produce a mesityl precursor solution. This solution is subsequently injected into an organic solvent that is heated to a temperature greater than approximately 100° C. After washing with an organic solvent, such as an alcohol (including methanol, ethanol, propanol, and higher molecular-weight alcohols), oxide free coinage NP are prepared that could be extracted with a solvent, such as an aromatic solvent (including, for example, toluene, benzene, and pyridine) or an alkane (including, for example, pentane, hexane, and heptane). Characterization by UV-Vis spectroscopy and transmission electron microscopy showed that the NPs were approximately 9.2±2.3 nm in size for Cu°, (no surface oxide present), approximately 8.5±1.1 nm Ag° spheres, and approximately 8–80 nm for Au°.
    • 提供用于合成胺封端的造币金属(铜,银和金)纳米颗粒(NP)的无水路线的方法,其使用造币金属mesityl(mesityl = C 6 N H 2(CH 3 3)3 - 2,4,6)衍生物。 在该方法中,将(Cu(C)3 H 2(CH 3 3)3) 5(Ag(C 6 H 2)3(CH 3)3)(4),或(Au(C 6 H 2)2(CH 3 3)3) 将其溶解在辅助溶剂如伯胺,仲胺或叔胺,伯,仲或叔膦或烷基硫醇中以产生均三甲苯前体溶液,随后将该溶液注入 加热到大于约100℃的有机溶剂。用有机溶剂如醇(包括甲醇,乙醇,丙醇和较高分子量的醇)洗涤后,制备无氧化物的NP, 可以用溶剂如芳族溶剂(包括例如甲苯,苯和吡啶)或烷烃(包括例如戊烷,己烷和庚烷)进行萃取。通过UV-Vis光谱和透射 电 在显微镜下显示,对于Cu°(没有表面氧化物存在),大约8.5±1.1nm Ag°球,NPs的尺寸为约9.2±2.3nm,对于Au°为约8-80nm。
    • 78. 发明授权
    • Perovskite phase thin films and method of making
    • 钙钛矿相薄膜及其制备方法
    • US6153317A
    • 2000-11-28
    • US128423
    • 1998-08-04
    • Timothy J. BoyleMark A. Rodriguez
    • Timothy J. BoyleMark A. Rodriguez
    • C23C18/12H01L21/314H01L21/316B32B18/06
    • H01L21/31691C23C18/1216C23C18/1225Y10T29/42
    • The present invention comprises perovskite-phase thin films, of the general formula A.sub.x B.sub.y O.sub.3 on a substrate, wherein A is selected from beryllium, magnesium, calcium, strontium, and barium or a combination thereof; B is selected from niobium and tantalum or a combination thereof; and x and y are mole fractions between approximately 0.8 and 1.2. More particularly, A is strontium or barium or a combination thereof and B is niobium or tantalum or a combination thereof. Also provided is a method of making a perovskite-phase thin film, comprising combining at least one element-A-containing compound, wherein A is selected from beryllium, magnesium, calcium, strontium or barium, with at least one element-B-containing compound, wherein B niobium or tantalum, to form a solution; adding a solvent to said solution to form another solution; spin-coating the solution onto a substrate to form a thin film; and heating the film to form the perovskite-phase thin film.
    • 本发明包括在基底上具有通式AxByO3的钙钛矿相薄膜,其中A选自铍,镁,钙,锶和钡或其组合; B选自铌和钽或其组合; x和y是约0.8和1.2之间的摩尔分数。 更具体地,A是锶或钡或其组合,B是铌或钽或其组合。 还提供了制造钙钛矿相薄膜的方法,其包括将至少一种含元素A的化合物与至少一种含元素B的化合物结合,其中A选自铍,镁,钙,锶或钡, 化合物,其中B铌或钽形成溶液; 向所述溶液中加入溶剂以形成另一种溶液; 将溶液旋涂到基底上以形成薄膜; 并加热该膜以形成钙钛矿相薄膜。