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    • 22. 发明申请
    • LAYER SYSTEM HAVING A LAYER OF CARBON NANOTUBES ARRANGED PARALLEL TO ONE ANOTHER AND AN ELECTRICALLY CONDUCTIVE SURFACE LAYER, METHOD FOR PRODUCING THE LAYER SYSTEM, AND USE OF THE LAYER SYSTEM IN MICROSYSTEM TECHNOLOGY
    • 具有碳纳米管层的层系统平行于另一个和电导电表面层,用于生产层系统的方法以及在微结构技术中使用层系统
    • US20140321026A1
    • 2014-10-30
    • US14131318
    • 2012-07-06
    • Sascha HermannThomas GessnerStefan E. Schulz
    • Sascha HermannThomas GessnerStefan E. Schulz
    • C01B31/02H01G2/08H01G11/36
    • H01G11/36B82Y30/00B82Y40/00C01B32/16C01B32/162C01B2202/08H01G2/08Y10T428/25
    • The present invention relates to a coating system comprising a layer of carbon nanotubes aligned parallel to another, and a directly linked surface layer with metallic properties, from which said carbon nanotubes are grown in “tip” growth. The coating system may further comprise a base layer and/or a substrate. It can be obtained by producing a structured layer from a first phase, consisting of a metal having no independent catalytic activity in terms of the emergence of CNTs from the gas phase, and a second phase consisting of a metal, which catalyzes the emergence of CNTs from the gas phase, on a substrate or a base layer, wherein the first phase has an uneven thickness and/or folded structure potentially interspersed with pores, and the second phase is located in depressions and/or pores of the initial phase in such a way that both material phases are present at least partially next to each other in the lateral plane on said substrate or said base layer located thereon. Carbon is removed from a hydrocarbon gas atmosphere on this structured layer, wherein carbon nanotubes form, which raise at least parts of the structured layer in closed form. The substrate or base layer may then be removed. The coating system of the invention is suitable for use in a variety of components and electronic micro and nanosystems, flip chip connections, sensors and actuators, particularly pressure sensors, touch sensors, optical sensors, reflectors, projectors, optical filters, nanopositioning systems or interferometers in a specific form in a supercapacitor.
    • 本发明涉及一种涂层系统,其包括平行于另一层的碳纳米管层,以及具有金属性质的直接连接的表面层,所述碳纳米管从该尖端生长形成。 涂层系统还可以包括基层和/或基底。 可以通过从第一相制备结构化层,由从气相中的CNT的出现而不具有独立催化活性的金属组成的第二相和由金属组成的第二相,其催化CNT的出现 在气相中,在基底或基底层上,其中第一相具有潜在地散布有孔的不均匀厚度和/或折叠结构,并且第二相位于初始相的凹陷和/或孔中 两种材料相在至少部分地彼此相邻的方式存在于位于其上的所述基底或所述基底层上的横向平面中。 在该结构化层上从碳氢化合物气体气氛中除去碳,其中碳纳米管形成,其以封闭形式升高至少部分结构化层。 然后可以去除衬底或基层。 本发明的涂层系统适用于各种部件,电子微和纳米系统,倒装芯片连接,传感器和致动器,特别是压力传感器,触摸传感器,光学传感器,反射器,投影仪,光学滤波器,纳米定位系统或干涉仪 在超级电容器中以特定形式。
    • 26. 发明授权
    • Switchable special effect substances
    • 可切换特效物质
    • US08586745B2
    • 2013-11-19
    • US12991710
    • 2009-05-18
    • Thomas GessnerRuediger SensSophia Ebert
    • Thomas GessnerRuediger SensSophia Ebert
    • C07D471/02
    • B42D15/00B23K26/00C07D487/22C09B5/62C09B57/00C09B57/008
    • A process for altering the absorption of electromagnetic radiation by one or more compounds of the general formulae (I) wherein these compounds are irradiated with electromagnetic radiation of wavelength from 300 to 750 nm. The use of compounds of the general formula (I) or (II) for marking materials, for example paper or mineral oil, and use of compounds of the general formula (I) or (II) for causing a color change. The use of compounds of the general formula (I) or (II) for laser welding, heat management, as a photoinitiator, as a free-radical scavenger or for detection of oxygen. A process for regulating the absorption or transmission of electromagnetic radiation by a material wherein one or more compounds of the general formula (I) or (II) are contacted with this material and these compounds are irradiated with electromagnetic radiation of wavelength from 300 to 750 nm. Specific compounds of the general formula (I).
    • 一种通过一种或多种通式(I)化合物改变电磁辐射吸收的方法,其中这些化合物用波长为300-750nm的电磁辐射照射。 使用通式(I)或(II)的化合物来标记材料,例如纸或矿物油,以及使用通式(I)或(II)的化合物引起颜色变化。 将通式(I)或(II)的化合物用作激光焊接,热处理,作为光引发剂,作为自由基清除剂或用于检测氧气。 通过其中一种或多种通式(I)或(II)化合物与该材料接触的材料调节电磁辐射的吸收或透过的方法,并且这些化合物用波长在300至750nm的电磁辐射照射 。 具体的通式(I)化合物。
    • 28. 发明授权
    • Microstructure with reactive bonding
    • 具有反应性键合的微结构
    • US08299630B2
    • 2012-10-30
    • US13146759
    • 2010-01-26
    • Joerg BraeuerThomas GessnerLutz HofmannJoerg FroemelMaik WiemerHolger LetschMario Baum
    • Joerg BraeuerThomas GessnerLutz HofmannJoerg FroemelMaik WiemerHolger LetschMario Baum
    • H01L23/48H01L29/40H01L21/44H01L21/48
    • B81C3/001B81C2203/019B81C2203/032
    • A microstructure has at least one bonding substrate and a reactive multilayer system. The reactive multilayer system has at least one surface layer of the bonding substrate with vertically oriented nanostructures spaced apart from one another. Regions between the nanostructures are filled with at least one material constituting a reaction partner with respect to the material of the nanostructures. A method for producing at least one bonding substrate and a reactive multilayer system, includes, for forming the reactive multilayer system, at least one surface layer of the bonding substrate is patterned or deposited in patterned fashion with the formation of vertically oriented nanostructures spaced apart from one another, and regions between the nanostructures are filled with at least one material constituting a reaction partner with respect to the material of the nanostructures. A microsystem is formed from two bonding substrates and a construction lying between the bonding substrates, the construction having a reacted reactive layer system. The microsystem is a sensor coated with biomaterial and/or has elements composed of polymeric material and/or at least one magnetic and/or piezoelectric and/or piezoresistive component.
    • 微结构具有至少一个键合衬底和反应性多层体系。 反应性多层体系具有至少一个表面层,该表面层具有彼此间隔开的垂直取向的纳米结构的接合基底。 纳米结构之间的区域填充有至少一种相对于纳米结构材料构成反应伴侣的材料。 一种用于制造至少一个接合基材和反应性多层体系的方法,包括用于形成反应性多层体系的方法,所述接合基材的至少一个表面层以图案化方式图案化或沉积,形成垂直取向的纳米结构, 并且纳米结构之间的区域填充有相对于纳米结构的材料构成反应伴侣的至少一种材料。 微系统由两个接合基板和位于接合基板之间的结构形成,该结构具有反应的反应层系统。 微系统是涂覆有生物材料的传感器和/或具有由聚合物材料和/或至少一个磁性和/或压电和/或压阻组件组成的元件。