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您现在的位置:中国聚合物网 > 全站 > Supramolecular Materials 的搜索结果 共有结果1503,当前从第561条到第570条,本次搜索耗时0.0310456
 
Supramolecular Hydrogels Made of End-functionalized Low-molecular-weight PEG and α-Cyclodextrin and their Hybridization with SiO2 Nanoparticles through Host-guest Interaction
As quite generally stated in the literature, low-molecular-weight (MW) poly(ethylene glycol) (PEG) (Mn less than 2K) and R-cyclodextrin (R-CD) can lead to only crystalline precipitates (not hydrogels). However, in this study we found that: (1) adamantane monoend-functionalized low-MW PEG (Ada-PEG, Mn) 1.1 or 2K) and R-CD lead to hydrogels but not to crystalline precipitates and (2) ...
http://www.polymer.cn//ss/MingyuGuo/publicationsshow_8749.html
 
[J. Phys. Chem. B.] Probing into the Supramolecular Driving Force of an Amphiphilic β?Cyclodextrin Dimer in Various Solvents: Host?Guest Recognition or Hydrophilic?Hydrophobic Interaction?
Tuning of the morphology and size of supramolecular self-assemblies is of theoretical and practical significance. To date, supramolecular driving forces in different solvents remain unclear. In this study, we first synthesized an amphiphilic β-cyclodextrin (β-CD) dimer that consists of one hydrophobic ibuprofen (Ibu) and two hydrophilic β-CD moieties (i.e., Ibu-CD2...
http://www.polymer.cn//ss/tianwei/publicationsshow_8687.html
 
Direct Synthesis of Amphiphilic Block Copolymers from Glycidyl Methacrylate and Poly(ethylene glycol) by Cationic Ring-Opening Polymerization and Supramolecular Self-Assembly Thereof
Amphiphilic block copolymers composed of hydrophilic poly(ethylene glycol) (PEG) block and hydrophobic poly(glycidyl methacrylate) (PGMA) block were synthesized through cationic ring-opening polymerization. By the control of the reaction time in the synthesis of block copolymer PEG-b-PGMA, a linear GMA block was obtained through the ring-opening polymerization of epoxy groups, whereas the d...
http://www.polymer.cn//ss/zhouyongfeng/publicationsshow_8066.html
 
2018年5月30日Materials Science & Engineering C论文接受
2017年5月30日,张小勇和清华大学合作在Materials Science & Engineering C上发表论文,论文题目为:“Surface grafting of rare-earth ions doped hydroxyapatite nanorods  (HAp:Ln(Eu/Tb)) with hydrophibic copolymers based on ligand exchange reaction: biological imaging and cancer treatment”。热烈祝贺!
http://www.polymer.cn/ss/xiaoyongzhang/newsshow_5223.html
 
2018年5月2日Materials Science & Engineering C论文接受
2017年5月2日,张小勇和清华大学合作在Materials Science & Engineering C上发表论文,论文题目为:“Fabrication and characterization of hyperbranched polyglycerol modified carbon  nanotubes through the host-guest interactions”。热烈祝贺!
http://www.polymer.cn/ss/xiaoyongzhang/newsshow_5191.html
 
2018年5月3日Materials Science & Engineering C论文接受
2017年5月3日,张小勇和清华大学合作在Materials Science & Engineering C上发表论文,论文题目为:“Facile fabrication of luminescent hyaluronic acid with aggregation-induced  emission through formation of dynamic bonds and their theranostic applications”。热烈祝贺!
http://www.polymer.cn/ss/xiaoyongzhang/newsshow_5192.html
 
2018年5月5日Materials Science & Engineering C论文接受
2017年5月5日,张小勇和清华大学合作在Materials Science & Engineering C上发表论文,论文题目为:“A novel thiol-ene click reaction for preparation of graphene quantum dots and  their potential for fluorescence imaging”。热烈祝贺!
http://www.polymer.cn/ss/xiaoyongzhang/newsshow_5193.html
 
2018年5月15日Materials Science & Engineering C论文接受
2017年5月15日,张小勇和清华大学合作在Materials Science & Engineering C上发表论文,论文题目为:“Preparation of water dispersible and biocompatible nanodiamond-poly(amino acid)  composites through the ring-opening polymerization”。热烈祝贺!
http://www.polymer.cn/ss/xiaoyongzhang/newsshow_5194.html
 
一作文章发表于Journal of Materials Chemistry A
One-Step Transformation of Highly Hydrophobic Membranes to Superhydrophilic and Underwater Superoleophobic Ones for High-Efficiency Separation of Oil-in-Water Emulsion
http://www.polymer.cn/ss/wangzhenxing/newsshow_4982.html
 
2017年12月29日Materials Science & Engineering C论文接受
2017年12月29日,张小勇和清华大学合作在Materials Science & Engineering C上发表论文,论文题目为:“Facile construction of luminescent supramolecular assemblies with aggregation-induced emission feature through supramolecular polymerization and their biological imaging”。热烈祝贺!
http://www.polymer.cn/ss/xiaoyongzhang/newsshow_4916.html
 
 
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