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第4回 电视 向水平分工模式转移趋势明显
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作者 山田刚良 草木 《电子设计应用》 2010年第1期25-26,共2页
2009年的全球电视市场也深受经济危机的影响。在中国政府电视下乡政策等的支持下,预计全球平板电视年销量可达1.3亿台,同比大幅增长24%,但整个电视市场却因CRT电视的快速萎缩(全球仅销1.9亿台,比上年略降3%)。
关键词 平板电视 转移趋势 分工模式 全球电视 水平分工 东芝公司 松下公司 高性能处理器 录像功能 超薄设
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Design of molecule-based magnetic conductors
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作者 Naureen Akhtar Graeme R. Blake +3 位作者 Roberto Felici Heinz Amenitsch Thomas T. M. Palstra Petra Rudolf 《Nano Research》 SCIE EI CAS CSCD 2014年第12期1832-1842,共11页
Enabling the use of rationally designed thin films in technological devices is a recognized goal in materials science. However, constructing such thin films using highly ordered supramolecular architectures with well-... Enabling the use of rationally designed thin films in technological devices is a recognized goal in materials science. However, constructing such thin films using highly ordered supramolecular architectures with well-controlled size and growth direction has remained an elusive target. Here, we introduce a layer-by- layer protocol to grow hybrid thin films of molecule-based magnetic conductors comprising arachidic acid and donor bis(ethylenedioxy)tetrathiafulvalene (BEDO-TTF) as the organic component and Cu/Gd complexes as the inorganic component. The construction of layered hybrid thin films was achieved at ambient conditions by employing the Langmuir-Blodgett method, which provides good control over film thickness and packing of molecules in the monolayer. As demonstrated by X-ray diffraction, these films are crystalline with distinct organic and inorganic sublattices, where the BEDO-TTF molecular layer is interfaced with the inorganic layer. Due to the flexibility of the Langmuir-Blodgett deposition technique, this result indicates a route toward the preparation of well-ordered films with various functionalities, determined by the choice of the inorganic compound that is combined with the π-unit of BEDO-TFF. Moreover, the ability to deposit films on a variety of substrates establishes the potential for lower-cost device fabrication on inexpensive substrates. 展开更多
关键词 molecule-based materials SELF-ASSEMBLY ordered heterostructures multifunctionality ultra-thin films
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