Non-destructive quality control method for microarray substrate coatings via labeled doping
    1.
    发明申请
    Non-destructive quality control method for microarray substrate coatings via labeled doping 审中-公开
    通过标记掺杂的微阵列基底涂层的非破坏性质量控制方法

    公开(公告)号:US20060003376A1

    公开(公告)日:2006-01-05

    申请号:US11213984

    申请日:2005-08-30

    Abstract: A non-destructive method of determining the uniformity of a coating on a substrate comprises coating the substrate with a homogenous coating mixture comprising a labeled compound and a chemically functional compound to which other chemical moieties can be bound, and detecting the presence and locations of the labeled compound on the surface. The invention also relates to a surface for attachment of molecules comprising a substrate and a coating thereon of a homogeneous mixture of a labeled compound and a first chemically functional compound to which other chemical moieties can be bound.

    Abstract translation: 确定基材上涂层的均匀性的非破坏性方法包括用包含标记化合物和化学官能化合物的均匀涂层混合物涂覆底物,其中可结合其它化学部分的化合物,并且检测其中的存在和位置 表面上标有化合物。 本发明还涉及用于附着包含底物和其上涂层的分子的标记化合物和第一化学官能化合物的均匀混合物的表面,其它化学部分可以结合到其上。

    FUSED QUARTZ TUBING FOR PHARMACEUTICAL PACKAGING
    2.
    发明申请
    FUSED QUARTZ TUBING FOR PHARMACEUTICAL PACKAGING 审中-公开
    用于药物包装的FASED QUARTZ管

    公开(公告)号:US20120148770A1

    公开(公告)日:2012-06-14

    申请号:US13391527

    申请日:2010-08-20

    Abstract: A high silica glass composition comprising about 82 to about 99.9999 wt. % SiO2 and from about 0.0001 to about 18 wt. % of at least one dopant selected from Al2O3, CeO2, TiO2, La2O3, Y2O3, Nd2O3, other rare earth oxides, and mixtures of two or more thereof. The glass composition has a working point temperature ranging from 600 to 2,000° C. These compositions exhibit stability similar to pure fused quartz, but have a moderate working temperature to enable cost effective fabrication of pharmaceutical packages. The glass is particularly useful as a packaging material for pharmaceutical applications, such as, for example pre-filled syringes, ampoules and vials.

    Abstract translation: 一种高二氧化硅玻璃组合物,包含约82-约99.9999wt。 %SiO 2和约0.0001至约18wt。 选自Al 2 O 3,CeO 2,TiO 2,La 2 O 3,Y 2 O 3,Nd 2 O 3,其它稀土氧化物中的至少一种掺杂剂的%,以及其两种或更多种的混合物。 玻璃组合物的工作点温度范围为600至2000℃。这些组合物表现出与纯熔融石英相似的稳定性,但具有适度的工作温度以使药物包装成本有效地制造。 该玻璃特别可用作药物应用的包装材料,例如预填充注射器,安瓿和小瓶。

    Low temperature joining of phosphate glass
    3.
    发明授权
    Low temperature joining of phosphate glass 失效
    低温接合磷酸盐玻璃

    公开(公告)号:US06652972B1

    公开(公告)日:2003-11-25

    申请号:US09430885

    申请日:1999-11-01

    Abstract: A method for the low temperature joining of similar and/or different phosphate glass by mating at low temperature glass components by an aqueous solution containing phosphorus. In preferred embodiments, the phosphate glasses are polished, cleaned, and brought together with the phosphate-containing solution between the polished surfaces. Vacuum may be applied to assist in making the joint. The composite is optionally heat treated to increase strength, chemical durability, and optical performance. The bond thereby formed has low birefringence, is strong, and is virtually photonically invisible. The joints now make possible, for example, substrates for virtually no loss signal splitters and other high-end optical components at low cost. Large hybrid performs substrates composed of multiple glass components may be prepared and segmented, providing an inexpensive novel substrate for the photonics industry. Active lasing phosphate glasses may be joined by the present invention method to passive non-lasing glasses for use in laser and related applications.

    Abstract translation: 一种通过含磷水溶液在低温玻璃组分配合来低温接合相似和/或不同磷酸盐玻璃的方法。 在优选的实施方案中,将磷酸盐玻璃与抛光表面之间的含磷酸盐溶液进行抛光,清洁并与之一起。 可以使用真空来辅助接头。 任选地对复合材料进行热处理以提高强度,化学耐久性和光学性能。 由此形成的结合具有低双折射性,是强的,并且实际上是光学不可见的。 接头现在使得成为可能,例如,用于几乎没有损耗信号分离器和其它高端光学部件的基板以低成本。 可以制备和分段的由多个玻璃组分组成的大型混合的基片,为光子学工业提供便宜的新型基片。 主动激光磷酸盐玻璃可以通过本发明的方法连接到用于激光和相关应用的被动非激光玻璃。

    Arrangement for fluorescence amplification
    5.
    发明申请
    Arrangement for fluorescence amplification 有权
    荧光放大布置

    公开(公告)号:US20050244860A1

    公开(公告)日:2005-11-03

    申请号:US11082518

    申请日:2005-03-17

    CPC classification number: G01N21/6452 G01N21/0303

    Abstract: The invention relates to an arrangement for fluorescence amplification including a substrate, a fluorescence amplifier coating applied to the substrate, and a thin fluorescencable material which lies on the coating and emits light with the emission wavelength λE when it is exposed to excitation light of an excitation wavelength λA. The fluorescence amplifier coating includes an interference layer system of high-index and low-index dielectric layers, which reflects at least the excitation light. What is crucial for the design of the coating is that the fluorescencable material applied to the coating is arranged on the surface of the coating in the region of the maximum of the electric field amplitude of the standing wave with the excitation wavelength λA, which is formed during exposure to the excitation light.

    Abstract translation: 本发明涉及一种用于荧光扩增的装置,包括底物,施加到基底上的荧光放大器涂层,以及位于涂层上并发射具有发射波长λΛE的光的薄的荧光发射材料 暴露于激发波长λA的激发光。 荧光放大器涂层包括至少反射激发光的高折射率和低折射率介电层的干涉层系统。 对于涂层的设计至关重要的是,施加到涂层上的荧光材料在激发波长λA的驻波的最大电场振幅的最大区域内被布置在涂层的表面上 ,其在曝光于激发光的过程中形成。

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