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The position of the hump shifts to a higher temperature with increasing atomic radius and decreasing electronegativity of addition elements.

结果表明:在高温处Al85Ni10M5液态合金的比热容曲线上均有驼峰出现,其位置随添加元素的原子半径的增大和电负性的减小而向高温处偏移。

To our knowledge, the electric field effect on the optical pattern formation phenomena has not been included in the earlier theoretical analysis.

在外加电场偏压下的线状液晶样品,由於其本身的介电非等向性,液晶分子的排列可以利用外加电场加以适当地控制。

Results The longer time of exposure to the 150V/m electric field, the more electrotaxis the cells showed, that is, the distance of cellular migration increased obviously with the time of exposure to the electric field compared with control group.

结果 ①150V/m电场长时间作用下,培养的血管平滑肌细胞有明显的电场趋化性,细胞向负极迁移的距离明显高于无电场作用的对照组。

The article considers that the magnetic material layer of MPCs is bismuth-substituted yttrium iron garnet which is ferromagnetic material, and the isotropic material layers are GGG, GaAs, SiO2, etc. Those materials have different relative permittivities.

文中所模拟的磁性光子晶体,其主要磁性层为亚铁磁性材料的渗入铋之钇铁石镏石(Yttrium Iron Garnet, YIG,),而等向性介质则采用、GaAs等材料,其分别具有不同的相对介电常数。

Firstly, we investigate the influence of the hole injection layer on the performance of the OLED. Evidence shows that m-MTDATA exhibits a dense film structure and fine surface morphology, leading to easy hole migration. Furthermore, a low-voltage driving of OLEDs has been achieved by doping 4F-TCNQ into m-MTDATA layer. Secondly, we obtain a highly efficient OLED by using a new oxidiazoles, an efficient electron-transporting molecular materials. Finally, we have realized the efficient electron injection and transport in organic light-emitting diodes using an electron-transport layer composed of BPhen with Liq co-deposited layer. With this cohost strategy, we improve the power efficiency by~21 % while reduce the driving voltage by~13%.

首先研究了不同空穴传输层对有机电致发光器件的影响,结果表明,由于m-MTDATA具有良好的成膜性,以及空穴注入能力,可以改善空穴向发光层的注入,提高了器件的效率,进一步在m-MTDATA中掺入4F-TCNQ可以显著降低器件的驱动电压;其次,利用一种新型含氟噁二唑类衍生物做电子注入层获得了高效有机薄膜电致发光器件;最后,研究了Bphen:Liq混合层的电子传输特性,表明混合层的电子传输能力显著提高,基于共基质电子传输层的器件的电压比传统器件降低了13%而效率却提高了21%。

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