Abstract:
The present invention concerns an anti-deposit additive and a deposit and/or corrosion reducing aqueous slurry containing a calcium carbonate containing material. In particular, the present invention is directed to the use of at least one anionically charged comb polymer as an anti-deposit agent in an aqueous slurry comprising a calcium carbonate containing material.
Abstract:
The present invention relates to a conductive polymer, to a conductive polymer composition, to a conductive polymer composition film, and to an organic photoelectric device using same, wherein the conductive polymer is expressed in chemical formula 1. The definition of chemical formula 1 is the same as described in the description. An organic photoelectric device having superior luminous efficiency and an elongated lifespan can be obtained using the conductive polymer.
Abstract:
Additivformulierung zur Antistatikausrüstung und zur Verbesserung der elektrischen Leitfähigkeit von unbelebtem organischen Material aus (A)1 bis 50 Gew.-% eines Olefin-Schwefeldioxid-Copolymers, (B) 1 bis 50 Gew.-% einer basische Stickstoffatome enthaltenden Verbindung mit längerkettigen Kohlenwasserstoffresten mit mindestens 4 Kohlenstoffatomen oder einem äquivalentenStrukturelement, welches die Löslichkeit von (B) im unbelebten organischen Material gewährleistet, (C) 0,1 bis 30 Gew.-% einer öllöslichen Säure und (D) 1 bis 80 Gew.-% eines hochsiedenden organischen Lösungsmittels, wobei mindestens 80 Gew.-% der Molekülsorten einen Siedepunkt von mehr als 150°C bei Normaldruck aufweisen.
Abstract:
There is provided a transparent composite conductor. The composite conductor has a first layer that includes a transparent conductive material and a second layer that includes a fluorinated acid polymer.
Abstract:
This invention relates to statistical copolymers of general formula (I) and their use in organic semiconductor devices: wherein m and j are the average number of repeat units of A and B such that: m=0.1-0.9, j=1-m, Q=10-50000; A and B are independently selected from hole transporting groups and electron transporting groups and are statistically distributed along the polymer chain; X and Z are independently selected from H, CN, F, Cl, Br, CO2CH3.
Abstract:
A process for preparing a gel-like composition of acetylene high polymer or porous acetylene high polymer. While conventional processes fail to produce acetylene high polymer moldings to any thickness and in any shape with a large mechanical strength, this process enables the production of acetylene high polymer moldings to any thickness and in any shape with a large mechanical strength. Acetylene high polymer moldings obtained by the fabrication of the gel-like composition and the porous acetylene polymer obtained by this process are p-type semiconductors having an electric conductivity of 10 s to 10 s//c s//ccm s and, since they possess photoconductivity, they can be utilized as photo-electric transducers such as electric resistance elements, heat-sensitive elements, solar batteries, photosensors, etc. The electric conductivity of the acetylene high polymer moldings can be controlled over a wide range of 10 s to 10 s//c s//ccm s by doping with an electron-accepting or electron-donating compound, thus they can find wider applications as the aforesaid electron elements.
Abstract translation:一种制备乙炔高聚物或多孔乙炔高聚物凝胶状组合物的方法。 虽然常规方法不能将乙炔高聚物模塑制成任何厚度和具有大机械强度的任何形状,但是该方法使乙炔高聚物模制品能够以任何厚度和任何具有大机械强度的形状生产。 通过制造凝胶状组合物和通过该方法获得的多孔乙炔聚合物获得的乙炔高聚物模制品是具有10 至10 s> 5的电导率的p型半导体 因为它们具有光电导性,所以它们可以用作光电换能器,例如电阻元件,热敏元件,太阳能电池,光电传感器等。 乙炔高聚物模塑制品的电导率可以通过掺杂在10 s至8 s / c / s-1> s / ccm 的宽范围内进行控制 与电子接受或给电子化合物,因此它们可以作为上述电子元件得到更广泛的应用。