维普中文期刊产品整合服务
8篇 您的检索式:作者名="Yanchun DING"
    题名 作者 年代 出处 被引量
1Thickness Uniformity Adjustment of Inkjet Printed Light-emitting Polymer Films by Solvent Mixture显示文摘在这份报纸,厚度一致性(9,9-di-n-octylfluorene ) poly,由打印的 inkjet 有图案的电影被溶剂混合物的使用改进(与有更低的轻快的另一溶剂,有更高的轻快,更高的表面精力和更低的粘性的溶剂降低表面精力和更高的粘性) 。poly 打印的 inkjet (9,9-di-n-octylfluorene ) 的厚度拍摄的一般水准从 ca 被增加。30 nm 到 ca。100 nm 当溶剂混合物被使用而不是纯 chlorobenzene 时。更完全, PFO 电影与象咖啡戒指效果形成的剖面图一样的凹面透镜被形成而不是原来的电影。这改进被强烈 Marangoni 流动的联合在早在在溶剂混合形成的以后的弄干过程弄干过程和弱互补流动解释。有图案(9,9-di-n-octylfluorene ) poly,电影与改进电子性质被用于 electroluminescence 设备的制造。有大约 80% 有效轻射出的区域的象素的数组被获得。Rubo Xing Tengling Ye Yan Ding Zicheng Ding Dongge Ma Yanchun Han 2013Chinese Journal of Chemistry2013,31,11:8
2Microstructure and mechanical properties of Mg-4.0Zn alloy reinforced by NiO-coated CNTs显示文摘Mg-4.0Zn alloy composite reinforced by NiO-coated CNTs(NiO@CNTs) was synthesized by combining ball-milling and a casting process. The yield strength(YS) and elongation to failure of the composite were dramatically increased by 44.9% and 38.6%, respectively, compared to its alloy counterpart. The significantly enhanced mechanical properties of the as-synthesized composite are mainly ascribed to an improved interfacial bond, grain refinement and good dispersion of CNTs in the matrix via. coating NiO on CNTs.It is shown that the NiO-nanolayer on the CNTs significantly enhances the interfacial bonding strength and effectively prevents the agglomeration of CNTs. NiO@CNTs are, therefore, expected to be a highly sustainable and dispersible reinforcement for magnesium matrix composites with superior performance.Qiuhong Yuan Xiaoshu Zeng Yanchun Wang Lan Luo Yan Ding Dejiang Li Yong Liu 2017Journal of Materials Science & Technology2017,33,5:8
3To inhibit coffee ring effect in inkjet printing of light-emitting polymer films by decreasing capillary force显示文摘Polymer thin film with uniform thickness and flat surface profile is the key point for polymer light emitting diodes(PLEDs) by inkjet printing. However, the coffee ring effect is usually observed due to the mismatch between the evaporation of the solvent and the decrease of solution volume, which promotes the formation of radial flow from the interior of the drop to the edge. In this paper, coffee ring effects of inkjet printed poly(spirobifluorene) films were proposed to be restrained by decreasing capillary force by adding co-solvent with high boiling point and high viscosity to the main solvent. The low evaporation rate of the co-solvent can reduce the driving force of the radial flow; meanwhile the high viscosity of the co-solvent can increase the resistance of the radial flow. Thus, polymer films with improve uniformity can be obtained due to the suppression of the radial flow. The device performance was greatly improved under the condition of proper film thickness and film uniformity and the maximum luminous efficiency of devices with inkjet printed poly(spirobifluorene) can reach 80% of the spin-coated devices.Xinhong Yu Rubo Xing Zhongxiang Peng Yangming Lin Zhonghui Du Junqiao Ding Lixiang Wang Yanchun Han 2019Chinese Chemical Letters2019,30,1:4
4Effect of cooling rate on plastic deformation of Zr-based bulk metallic glassesChunyan Li Shengzhong Kou Yanchun Zhao Guangqiao Liu Yutian Ding 2012Progress in Natural Science:Materials International2012,22,1:3
5Characteristic analysis of transformants in T-DNA mutation library of Monascus ruber显示文摘Shao Yanchun Ding Yuedi Zhao Ying 2009World J Mierobiol Biotechnol2009,25,6:1
6MiR-483–5p suppresses the proliferation of glioma cells via directly targeting ERK1显示文摘Li Wang Ming Shi Shuangxing Hou Bojun Ding Lijuan Liu Xituan Ji Jian Zhang Yanchun Deng 2012FEBS Letters2012,,9:1
7Variations in cardiac diastolic function in hypertensive patients with dfferent left ventricular geometric patterns显示文摘Peng QU Yanchun DING 2001Hypertens Res2001,24,:1
8Telecommunica-tions Infrastructure and Regional Income Convergence in China:Panel Data Approaches显示文摘Lei Ding Haynes KE Yanchun Liu 2008Ann Reg Sci2008,,42:1
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费