Novel Condensed Polycyclic Aromatic Compound and Use Thereof
申请人:Takimiya Kazuo
公开号:US20090001357A1
公开(公告)日:2009-01-01
The object of the present invention to provide an organic semiconductor device comprising an organic semiconductor material satisfying both the requirement of high electron field-effect mobility and high on/off current ratio. The present invention provides a novel condensed polycyclic aromatic compound satisfying both the high electron field-effect mobility and high on/off current ratio required for organic semiconductor materials.
A structured organic film with an added functionality comprising a plurality of segments and a plurality of linkers arranged as a covalent organic framework, wherein the structured organic film may be a multi-segment thick structured organic film.
ELECTRONIC DEVICES COMPRISING STRUCTURED ORGANIC FILMS
申请人:HEUFT Matthew A.
公开号:US20100224867A1
公开(公告)日:2010-09-09
An electronic device comprising a structured organic film with an added functionality comprising a plurality of segments and a plurality of linkers arranged as a covalent organic framework, wherein the structured organic film may be a multi-segment thick structured organic film.
STRUCTURED ORGANIC FILMS HAVING AN ADDED FUNCTIONALITY
申请人:COTE Adrien Pierre
公开号:US20100228025A1
公开(公告)日:2010-09-09
A structured organic film with an added functionality comprising a plurality of segments and a plurality of linkers arranged as a covalent organic framework, wherein the structured organic film may be a multi-segment thick structured organic film.
Staged condensation, dynamic vulcanization process for making a substantially unplasticized plastic/rubber blend
申请人:Advanced Elastomer Systems, L.P.
公开号:EP0965607A1
公开(公告)日:1999-12-22
This invention describes a staged process in which successive dynamic vulcanizations of plural curable rubber blend components are based on condensation reactions of a functional group (reactive site) carried by each curable rubber. The process is carried out in three stages during each of which gases evolved during the condensation reactions are removed. It is essential to form an intermediate fully dense hard blend in the second stage. This intermediate hard blend contains a relatively large amount of plastic (relative to curable rubbers) and is therefore much harder than the desired final blend. In the third stage, additional rubber and curative for uncured rubber are added to achieve the desired softness. This process, carried out in an extruder, results in fully dense pellets which are injection moulded to produce articles having essentially the same specific gravity as that of the pellets.