|
祝贺二年级研究生王天任同学的论文“Color-tunable Luminescence of Organoclay-Based Hybrid Materials Showing Potential Applications in White LED and Thermosensors”被ACS Applied Materials & Interfaces 录用
祝贺二年级研究生王天任同学的论文“Color-tunable Luminescence of Organoclay-Based Hybrid Materials Showing Potential Applications in White LED and Thermosensors”被ACS Applied Materials & Interfaces 录用
http://www.polymer.cn/ss/huanrong/newsshow_2259.html |
|
祝贺:10级硕士赵静在ACS期刊organic process research & development (IF=2.391) 发表关于吡虫啉多晶型研究论文
祝贺:10级硕士赵静在ACS期刊organic process research & development (IF=2.391) 发表关于吡虫啉多晶型研究论文
http://pubs.acs.org/doi/abs/10.1021/op300320a
http://www.polymer.cn/ss/wangml/newsshow_1476.html |
|
Xu, Chen; Hu, Xin; W ang, Jie; Zhang, Yemin; Liu, Xiaojiu; Xie, Binbin; Yao, Chen; Li, Yi; Li, Xinsong*, Library of Antifouling Surfaces Derived From Natural Amino Acids by Click Reaction, ACS Applied Materials & Interfaces, 2015, 7(31):17337-45
Biofouling is of great concern in numerous applications ranging from ophthalmological implants to catheters, and from bioseparation to biosensors. In this report, a general and facile strategy to combat surface fouling is developed by grafting of amino acids onto polymer substrates to form zwitterionic structure through amino groups induced epoxy ring opening click reaction. First of all, a librar...
http://www.polymer.cn//ss/lixs/publicationsshow_10408.html |
|
暨南大学刘明贤教授课题组ACS AMI:聚硅氧烷改性埃洛石纳米管涂覆的高效超疏水聚氨酯泡沫
关键字:超疏水,聚氨酯泡沫
勘探,生产,精炼和运输过程中的石油泄漏难以控制,这对环境会造成灾难性的破坏。石油污染对海鸟和其他海洋生物构成了巨大的威胁。泄漏的油污可能通过食用的鱼类和贝类富集在人类体内,并且会污染地下水。因此,需要新的有效解决策略来解决一直存在的土壤和海洋污染问题。
近日,暨南大学刘明贤教授团队与美国路易斯安那理工大学的Yuri Lvov教授合作,在ACS Applied Materials & Interfaces...
http://www.polymer.cn/sci/kjxw15759.html |
|
陕西科技大学张美云教授团队《ACS Nano》:省时高效制备芳纶纳米纤维研究获进展
关键字:芳纶纳米纤维,纳米复合材料,ANFs
芳纶纳米纤维(aramid nanofibers, ANFs)作为近年来开发的一种新型纳米高分子材料,兼具对位芳纶纤维(PPTA)和高分子纳米纤维的双重优势,可解决芳纶纤维存在的表面光滑惰性强、复合界面强度弱等问题。同时,ANFs可与聚合物基体通过物理/化学/自组装交联作用高效复合,使其成为构建高性能复合材料极具潜力的“增强构筑单元“,在纳米复合材料领域起着重要的界面增强作用。然而,利用宏观PPTA纤维通过去质子化法制...
http://www.polymer.cn/sci/kjxw15708.html |
|
赵学波科研团队代鹏程副教授以纸为原料制备了柔性多孔碳薄膜超级电容器,相关成果在ACS Appl. Mater. Interfaces上正式发表
近日,赵学波教授团队的代鹏程副教授和研究生曹磊、张硕等通过化学气相腐蚀的方法,以滤纸为原料制备了孔径可调的柔性梯级孔碳薄膜,并将其作为电极材料,制备了高性能的超级电容器,相关成果在ACS Appl. Mater. Interfaces上正式发表,论文题目为:
“Paper-Derived Flexible 3D Interconnected Carbon Microfiber Networks with Controllable Pore Sizes for Supercapacitors”。
基于多孔碳材料的超级电容器,因为...
http://www.polymer.cn/ss/zhaoxuebo/newsshow_5643.html |
|