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    • 2. 发明申请
    • ALUMINIUM OXIDE POWDER PRODUCED BY FLAME HYDROLYSIS AND HAVING A LARGE SURFACE AREA
    • 火焰水解法制备的氧化铝粉末及其大面积表面
    • WO2005061385A2
    • 2005-07-07
    • PCT/EP2004013564
    • 2004-11-30
    • DEGUSSASCHUMACHER KAIGOLCHERT RAINERSCHILLING ROLANDBATZ-SOHN CHRISTOPHMOERTERS MARTIN
    • SCHUMACHER KAIGOLCHERT RAINERSCHILLING ROLANDBATZ-SOHN CHRISTOPHMOERTERS MARTIN
    • C01F7/02C01F7/30
    • C01F7/302C01P2002/01C01P2002/02C01P2002/72C01P2004/50C01P2006/10C01P2006/12C01P2006/19
    • Aluminium oxide powder produced by flame hydrolysis and consisting of aggregates of primary particles, having a BET surface area of from 100 to 250 m /g, a dibutyl phthalate absorption of from 50 to 450 g/100 g of aluminium oxide powder, which powder shows only crystalline primary particles in high-resolution TEM pictures. It is prepared by vaporising aluminium chloride, transferring the vapour by means of a carrier gas to a mixing chamber and, separately therefrom, supplying hydrogen, air (primary air), which may optionally be enriched with oxygen and/or may optionally be pre-heated, to the mixing chamber, then igniting the mixture of aluminium chloride vapour, hydrogen, air in a burner and burning the flame into a reaction chamber that is separated from the surrounding air, subsequently separating the solid material from the gaseous substances and then treating the solid material with steam and optionally with air, the discharge rate of the reaction mixture from the mixing chamber into the reaction chamber being at least 10 m/s, and the lambda value being from 1 to 10 and the gamma value being from 1 to 15. It can be used as an ink-absorbing substance in ink-jet media.
    • 通过火焰水解制备并由初级颗粒聚集体组成的氧化铝粉末,其BET表面积为100-250平方米/克,邻苯二甲酸二丁酯吸收量为50-450克/ 100克氧化铝粉末, 该粉末在高分辨率TEM照片中仅显示结晶初级粒子。 它通过蒸发氯化铝,通过载气将蒸汽转移到混合室并与此分开地供应氢气,空气(一次空气),其可以任选地富含氧气和/或可以任选地被预处理, 加热到混合室,然后在燃烧器中点燃氯化铝蒸汽,氢气和空气的混合物,并将火焰燃烧到与周围空气分离的反应室中,随后将固体物质与气态物质分离,然后处理 具有蒸汽和任选的空气的固体材料,反应混合物从混合室进入反应室的排出速率至少为10m / s,λ值为1至10,γ值为1至10 15.它可以用作喷墨介质中的吸墨物质。
    • 3. 发明申请
    • PHOTOVOLTAIC ASSEMBLY
    • 光伏模块
    • WO2012104208A3
    • 2013-01-10
    • PCT/EP2012051314
    • 2012-01-27
    • AZUR SPACE SOLAR POWER GMBHSCHILLING ROLAND
    • SCHILLING ROLAND
    • H01L31/0216H01L27/142
    • H01L27/1421H01L31/02021H01L31/02167H01L31/022441Y02E10/50
    • The invention relates to a photovoltaic assembly (10) comprising a support substrate (12) consisting of silicon, a solar cell (26), in particular a solar concentrator cell, said cell having a first and a second solar cell contact (28, 30) and being connected to the upper face (38) of the support substrate (12) by means of the first solar cell contact (28), a pn-junction (46) that is integrated into the support substrate (12) in order to form a protective diode (14) comprising a first protective diode contact (16) and a second protective diode contact (20), said diodes being connected in anti-parallel to the solar cell (26). In order to design the contacts of the protective diode with as large a surface area as possible and to permit a simple contacting of the solar cell, the first and second protective diode contact (16, 20) form a first and second surface area (18, 22) respectively of the upper face (38) of the support substrate (12).
    • 本发明涉及一种光生伏打模块(10),包括由硅,第一和具有太阳能电池(26)的第二太阳能电池接触层(28,30)的载体基板(12),尤其是聚光太阳能电池, 被连接到在载体基材(12),在所述载体基片(12)整合pn结(46)的上表面(38),所述第一太阳能电池接触(28),以形成具有一个保护二极管(14) 第一保护二极管触点(16)和第二保护二极管触点(20),其被连接在反平行于太阳能电池(26)。 为了形成保护二极管的尽可能大的接触,并实现了太阳能电池的简单接触,它提供的是,第一和第二保护二极管触点(16,20)各自具有第一和第二表面区域(18,22)(顶侧38 )所述载体衬底(12)的形式。
    • 4. 发明申请
    • SOLAR CELL RECEIVER
    • 太阳能接收器
    • WO2012104107A3
    • 2013-01-10
    • PCT/EP2012000704
    • 2012-01-31
    • AZUR SPACE SOLAR POWER GMBHSCHILLING ROLANDKHORENKO VICTOR
    • SCHILLING ROLANDKHORENKO VICTOR
    • H01L31/048H01L31/052
    • H01L31/02327H01L31/048H01L31/0543H01L31/0547Y02E10/52
    • The invention relates to a solar cell receiver comprising: a semiconductor element that has a front face, a solar cell provided on the front face, a rear face, multiple lateral surfaces and two electric connectors; a carrier for receiving the semiconductor element, the rear face of said element being fixed to the carrier; and an optical element for concentrating the light onto the rear face of the semiconductor element. The optical element has an underside which partially faces the upper side of the semiconductor element, the underside of said optical element having a first shaped section with a first surface that lies on the front face of the semiconductor element and a second surface that lies on the carrier. The shaped section is designed as a cavity or groove.
    • 具有半导体主体,其包括具有形成在所述太阳能电池和背面和多个侧表面和两个电端子的前部的开口,以及用于接收所述半导体主体中的载体的前面板的太阳能接收器,所述半导体主体的后部侧被固定在载体上,并用于光学元件 光的在半导体本体的前侧的捆扎包括底部,其被部分地朝向半导体本体的顶部,下侧上的光学元件具有搁置在半导体本体的前侧和第二表面的第一表面的第一形状 搁置在支撑件和凸部被形成为一个腔或一个折。