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1.
严军林  刘静  陈希  房喻 《化学学报》2007,65(17):1779-1783
合成了双客体化合物N,N'-双二茂铁亚甲基丁二胺的季铵盐(1)和侧链携带β-环糊精(β-CD)的聚丙烯酰胺(3), 利用FTIR, 1H NMR, 元素分析等手段表征了合成化合物. 在此基础上以1H NMR、循环伏安、X射线粉末衍射以及扫描电镜等手段研究了化合物13间的主客体包结作用. 结果表明, 处于1两端的二茂铁基均可被位于3侧链的β-CD包结, 引起高分子化合物3分子内和分子间的物理交联, 形成超分子三维网络结构.  相似文献   

2.
具有乙二醇侧链的聚谷氨酸酯的合成、表征及其两亲性   总被引:2,自引:0,他引:2  
聚氨基酸具有良好的生物相容性和规整二级结构, 可作为生物医学材料应用. 如果聚氨基酸具有两亲性, 则能够形成纳米尺寸的胶束结构, 有望作为生物降解药物释放载体. 为得到两亲性的聚谷氨酸, 通过小分子开环聚合的方法直接制备了具有乙二醇侧链的聚谷氨酸酯. 首先制备了γ-(2-(甲氧基)乙基)-L-谷氨酸酯和γ-(2-(2-甲氧基乙氧基)乙基)-L-谷氨酸酯, 然后与三聚光气反应得到其N-羧酸酐(NCA). N-羧酸酐(NCA)单体经开环聚合反应合成了具有乙二醇侧链的聚谷氨酸酯(PEGnG). 利用IR, 1H NMR, GPC和吸湿性测定等方法对所合成聚合物进行了详细的表征. 结果表明随着侧链中EG含量的提高, 聚L-谷氨酸酯的亲水性有明显改善. 透射电镜的结果表明, 聚谷氨酸二乙二醇单甲醚酯(PEG2G)在水溶液中能够形成稳定胶束结构.  相似文献   

3.
通过硫代磷酰-氯酯与N,N-二丙基-α-乙氨基乙酰胺反应合成了21种-α-硫代磷酰基胺基乙酰胺衍生物.所合成的化合物用元素分析、1H NMR和31PNMR进行了表征,并进行了杀虫和杀螨活性的试验.  相似文献   

4.
以2,3-O-(2-氰基苄基)-4-O-氯乙酰基-β-对甲基苯基-D-葡萄糖醛酸硫苷等7个单糖模块作为糖基供体, 以甲醇等醇类化合物作为糖基受体, 分别在二氯甲烷和甲苯溶剂中进行了糖基化反应, 研究了葡萄糖醛酸C2位引入2-氰基苄基(BCN)以及溶剂效应对糖苷键α/β选择性的影响. 通过对糖基产物的 1H NMR, 13C NMR和HSQC等谱图分析发现, BCN可以有效提高糖苷键的β选择性, 其中部分糖基化产物的糖苷键α/β比例最高可达1/50. 为磺达肝癸钠分子中葡萄糖醛酸的β糖苷键的构建方法做出了初步探索.  相似文献   

5.
采用基团转移聚合、阴离子聚合以及高分子偶合反应的方法,合成了一种结构明确、链长均匀和分子量可控的聚苯乙烯接枝聚甲基丙烯酸甲酯。主链聚苯乙烯由阴离子聚合得到,并进行溴甲基化。支链活性聚甲基丙烯酸甲酯由基团转移聚合制备。经偶合反应后得到分子量为3×104~7×104、多分散性指数D为1.2~1.4的接枝共聚物。溴甲基化聚苯乙烯和活性聚甲基丙烯酸甲酯的偶合反应活性随分子量的增大而降低,理想的反应温度为-20℃。用1HNMR、GPC和DSC表征接枝产物。和均聚物相比,共聚物的玻璃化温度较低。  相似文献   

6.
赵勇  李施宏  张苗苗  刘峰 《化学学报》2019,77(9):916-921
β,γ-不饱和酯和γ-酮酯是重要的合成中间体, 从丰富的氨基酸衍生的Katritzky吡啶盐出发, 在可见光照射下, 合成了一系列的β,γ-不饱和酯和γ-酮酯, 该方法具有反应条件温和, 操作简单等优点, 且有良好的官能团兼容性, 所得的产物可进一步转化.  相似文献   

7.
《高分子学报》2021,52(5):467-476
设计合成了一种双功能的β-二亚胺锌((BDI)Zn)催化剂,其具有2-溴异丁酸酯引发基团,该基团结合了引发内酯的开环聚合(ROP)和乙烯基单体的原子转移自由基聚合(ATRP)的能力.此催化剂由单晶X射线衍射和核磁表征确定其化学结构.利用这种催化剂可以实现一锅一步法构建极性聚烯烃/聚酯嵌段共聚物,即在光照射下通过β-二亚胺锌((BDI)Zn)催化剂以正交聚合路径来同时实现乙烯基自由基聚合和环内酯开环2种嵌段相的构筑,从而提供了一种有效的途径来制备聚酯/极性聚烯烃嵌段共聚物.利用此法可构建多种聚酯/极性聚烯烃嵌段共聚物,包括聚苯乙烯-嵌段-聚丙交酯(PS-b-PLA)、聚甲基丙烯酸甲酯-嵌段-聚丙交酯(PMMA-b-PLA),以及聚苯乙烯-嵌段-聚己内酯(PS-b-PCL).且这些嵌段共聚物具有可控的分子量和组成,凝胶渗透色谱(GPC)显示单峰和窄分子量分布(M_w/M_n1.5).此双功能催化剂及对应合成策略为极性聚烯烃/聚酯等嵌段共聚物提供了一种简便的构建方案.  相似文献   

8.
延玺  吴福丽  郑泽宝 《化学学报》2005,63(4):332-336
合成了2,3,4,4'-四羟基脱氧安息香(THDB), 采用IR, UV, 1H NMR, MS和元素分析对其结构进行了表征, 并采用X射线单晶衍射仪测定了该化合物的晶体结构, 利用荧光法检测了化合物对羟基自由基的清除作用. 实验结果表明, 晶体[C14H12O5•2H2O]属于单斜晶系, 空间群C2/c, a=1.4346(5) nm, b=1.3378(5) nm, c=1.5709(5) nm, α=90°, β=110.823(6)°, γ=90°, V=2.8181(16) nm3, Z=8, Dc=1.397 g/cm3, μ=0.113 mm-1, F(000)=1248, R=0.0528, wR=0.1307; THDB具有较好的清除羟基自由基的作用.  相似文献   

9.
对-氯甲基苯乙烯共聚物引发合成接枝共聚物   总被引:3,自引:1,他引:2  
接枝共聚物含有性质差别很大的主链和支链,具有许多特殊的性质,因而一直是人们感兴趣的研究课题之一[1~5].原子转移自由基聚合(ATRP)[6,7]的问世,为接枝共聚物的合成提供了一条新的途径.本文用对-氯甲基苯乙烯和其它乙烯基单体自由基共聚.  相似文献   

10.
两亲性嵌段共聚物PS-b-PMAA的合成与胶束化行为研究   总被引:7,自引:2,他引:5  
华慢  杨伟  薛乔  陈明清  刘晓亚  杨成 《化学学报》2005,63(7):631-636
利用原子转移自由基聚合法(ATRP)得到了分子量可控、分子量分布接近1.1的聚苯乙烯-b-聚甲基丙烯酸叔丁酯(PS-b-PtBMA)嵌段共聚物, 进而在酸性条件下由水解反应得到了两亲性的聚苯乙烯-b-聚甲基丙烯酸 (PS-b-PMAA)嵌段共聚物.用GPC, FTIR和1H-NMR等对产物的分子量和组成进行了表征.使PS-b-PMAA在选择性溶剂中进行自组装, 通过激光光散射和透射电子显微镜研究了影响其胶束化行为的因素与胶束形态, 并初步探讨了胶束形成的机理, 发现通过控制嵌段共聚物的链段长度之比可得到空心球形的高分子胶束.  相似文献   

11.
Biodegradable poly(tert‐butyl acrylate)–poly[(R)‐3‐hydroxybutyrate]–poly (tert‐butyl acrylate) triblock copolymers based on bacterial poly[(R)‐3‐hydroxybutyrate] (PHB) were synthesized by atom transfer radical polymerization. The chain architectures of the triblock copolymers were confirmed by 1H NMR and 13C NMR spectra. Gel permeation chromatography analysis was used to estimate the molecular weight characteristics and lengths of the PHB and poly(tert‐butyl acrylate) blocks of the copolymers. The thermal properties of the copolymers were studied by thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). TGA showed that the triblock copolymers underwent stepwise thermal degradation and had better thermal stability than their respective homopolymers, whereas DSC analyses showed that a microphase‐separation structure was formed only in the triblock copolymers with the longer PHB block. As a similar result, from wide‐angle X‐ray diffraction experimentation, the crystalline phase of PHB could not be seen evidently in the triblock copolymers with the shorter PHB block. The enzymatic hydrolysis of the copolymer films was carried at 37 °C and pH 7.4 in a potassium phosphate buffer with an extracellular PHB depolymerase from Penicillum sp. The biodegradability of the triblock copolymers increased with an increase in the PHB block content. © 2005 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 43: 4857–4869, 2005  相似文献   

12.
Well‐defined diblock and triblock copolymers composed of poly(N‐isopropylacrylamide) (PNIPAM) and poly(ethylene oxide) (PEO) were successfully synthesized through the reversible addition–fragmentation chain transfer polymerization of N‐isopropylacrylamide (NIPAM) with PEO capped with one or two dithiobenzoyl groups as a macrotransfer agent. 1H NMR, Fourier transform infrared, and gel permeation chromatography instruments were used to characterize the block copolymers obtained. The results showed that the diblock and triblock copolymers had well‐defined structures and narrow molecular weight distributions (weight‐average molecular weight/number‐average molecular weight < 1.2), and the molecular weight of the PNIPAM block in the diblock and triblock copolymers could be controlled by the initial molar ratio of NIPAM to dithiobenzoate‐terminated PEO and the NIPAM conversion. © 2004 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 42: 4873–4881, 2004  相似文献   

13.
This investigation reports the polymerization of hexyl acrylate (HA) using atom transfer radical polymerization technique and subsequently the preparation of its di‐ and triblock copolymers with methyl methacrylate. Atom transfer radical polymerization of HA was investigated using different initiators and CuBr or CuCl as catalyst in combination with varying ligands, e.g., 2,2′‐bipyridine and N,N,N′,N″,N″‐pentamethyl diethylenetriamine. Reaction parameters were adjusted to successfully polymerize HA with well‐defined molecular weights and narrow polydispersity indices. The polymerization was better controlled by the addition of polar solvents, which created a homogeneous catalytic system. UV–vis analysis showed that the polar solvent, acetone coordinated with copper (I), changes the nature of the copper catalyst, thereby influencing the dynamic equilibrium of activation–deactivation cycle. This resulted in improved control over polymerization as well as in lowering the polydispersity indices, but at the cost of polymerization rate compared with the bulk process. The presence of ? Br end group in the polymer chains was confirmed by 1H NMR as well as MALDI‐TOF mass analysis. In addition, poly(hexyl acrylate) was used as macroinitiator to prepare various “all‐acrylate” block (diblock, triblock) copolymers that were characterized by GPC and 1H NMR. © 2008 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 46: 3499–3511, 2008  相似文献   

14.
ABA-type amphiphilic triblock copolymers composed of poly(ethylene glycol)s (PEGs) with different number-average molecular weights as the hydrophilic blocks (B) and poly{6-[4-(4-ethoxyphenylazo)phenoxy]hexyl methacrylate} (PA6C) as the hydrophobic blocks (A) were prepared via atom transfer radical polymerization. These copolymers were prepared from bromo-terminated macroinitiators based on PEG6000, PEG2000, and PEG600, with CuBr/N,N,N,N,N″-pentamethyldiethylenetriamine as the catalytic system, at 85 °C in anisole. The block copolymers were characterized with 1H NMR spectroscopy and gel permeation chromatography. Differential scanning calorimetry measurements were performed to reveal the phase segregation. In contrast to those polymers with similar compositions and structures in previous reports, these amphiphilic copolymers exhibited unusual liquid-crystalline properties over a wide temperature range, being stable even at room temperature. These copolymers showed photoresponsive isomerization under the irradiation of UV–vis light both in THF solutions and in solid films. © 2007 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 45: 2225–2234, 2007  相似文献   

15.
An asymmetric difunctional initiator 2‐phenyl‐2‐[(2,2,6,6 tetramethylpiperidino)oxy] ethyl 2‐bromo propanoate ( 1 ) was used for the synthesis of ABC‐type methyl methacrylate (MMA)‐tert‐butylacrylate (tBA)‐styrene (St) triblock copolymers via a combination of atom transfer radical polymerization (ATRP) and stable free‐radical polymerization (SFRP). The ATRP‐ATRP‐SFRP or SFRP‐ATRP‐ATRP route led to ABC‐type triblock copolymers with controlled molecular weight and moderate polydispersity (Mw/Mn < 1.35). The block copolymers were characterized by gel permeation chromatography and 1H NMR. The retaining chain‐end functionality and the applying halide exchange afforded high blocking efficiency as well as maintained control over entire routes. © 2002 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 40: 2025–2032, 2002  相似文献   

16.
We have designed and synthesized rod–coil–rod triblock copolymers of controlled molecular weight by two‐step nitroxide‐mediated radical polymerization, where the rod part consists of “mesogen‐jacketed liquid crystalline polymer” (MJLCP). The MJLCP segment examined in our studies is poly{2,5‐bis[(4‐methoxyphenyl)oxycarbonyl]styrene} (MPCS) while the coil part is polyisoprene (PI). Characterization of the triblock copolymers by GPC, 1H and 13C NMR spectroscopies, TGA, DSC confirmed that the triblock copolymers were comprised of microphase‐separated low Tg amorphous PI and high Tg PMPCS blocks. Analysis of POM and 1D, 2D‐WAXD demonstrated that the triblock copolymers formed nematic liquid crystal phase. Morphological studies using TEM indicated the sample formed lamellar structure. © 2007 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 45: 5949–5956, 2007  相似文献   

17.
Novel renewable thermoplastic elastomers were synthesized by sequential polymerization of lysine‐ and itaconic acid‐derived monomers. Ring‐opening polymerization of lysine‐based O‐carboxyanhydride monomer using diethylene glycol as an initiator gave well‐defined α,ω‐dihydroxy functionalized lysine‐derived polyesters. The M n of these polyesters increased with the monomer conversion while retaining relatively narrow molecular weight distributions. Based on the successful controlled polymerization and esterification of α,ω‐dihydroxy with 2‐bromoisobutyryl bromide, the resultant Br‐PL‐Br macroinitiator was used for the atom transfer radical polymerization of N‐phenylitaconimide (PhII). Three poly(N‐phenylitaconimide)‐b‐polyester‐b‐poly(N‐phenylitaconimide) triblock copolymers were prepared containing 12 ? 25 mol% PPhII, as determined by 1H NMR spectroscopy. The properties of the obtained triblock copolymer are evaluated as high‐performance and renewable thermoplastic elastomer materials. © 2016 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2017 , 55 , 349–355  相似文献   

18.
The syntheses of triblock copolymers by the atom transfer radical polymerization of tert‐butyl and iso‐butyl acrylates as inner blocks with cyclohexyl methacrylate as outer blocks are reported. The living behavior and blocking efficiency of these polymerizations were investigated in each case. The use of difunctional macroinitiators led to ABA triblock copolymers with narrow polydispersities and controlled number‐average molecular weights. These copolymers were prepared from bromo‐terminated macroinitiators of poly(tert‐butyl acrylate) and poly(iso‐butyl acrylate), with copper chloride/N,N,N′,N″,N″‐pentamethyldiethylenetriamine as the catalytic system, at 40 °C in 50% (v/v) toluene solutions. The block copolymers were characterized with size exclusion chromatography and 1H NMR spectroscopy. Differential scanning calorimetry measurements were performed to reveal the phase segregation. The glass transition of the inner block was not clearly detected, with the exception of the copolymer synthesized with the longest poly(iso‐butyl acrylate) macroinitiator length. © 2005 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 43: 4828–4837, 2005  相似文献   

19.
Novel thermo‐responsive poly(N‐isopropylacrylamide)‐block‐poly(l ‐lactide)‐block‐poly(N‐isopropylacylamide) (PNIPAAm‐b‐PLLA‐b‐PNIPAAm) triblock copolymers were successfully prepared by atom transfer radical polymerization of NIPAAm with Br‐PLLA‐Br macroinitiator, using a CuCl/tris(2‐dimethylaminoethyl) amine (Me6TREN) complex as catalyst at 25 °C in a N,N‐dimethylformamide/water mixture. The molecular weight of the copolymers ranges from 18,000 to 38,000 g mol?1, and the dispersity from 1.10 to 1.28. Micelles are formed by self‐assembly of copolymers in aqueous medium at room temperature, as evidenced by 1H NMR, dynamic light scattering (DLS) and transmission electron microscopy (TEM). The critical micelle concentration determined by fluorescence spectroscopy ranges from 0.0077 to 0.016 mg mL?1. 1H NMR analysis in selective solvents confirmed the core‐shell structure of micelles. The copolymers exhibit a lower critical solution temperature (LCST) between 32.1 and 32.8 °C. The micelles are spherical in shape with a mean diameter between 31.4 and 83.3 nm, as determined by TEM and DLS. When the temperature is raised above the LCST, micelle size increases at high copolymer concentrations due to aggregation. In contrast, at low copolymer concentrations, decrease of micelle size is observed due to collapse of PNIPAAm chains. © 2013 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2013, 51, 3274–3283  相似文献   

20.
The synthesis of multi‐arm poly([R]‐3‐hydroxybutyrate) (PHB)‐based triblock copolymers (poly([R]‐3‐hydroxybutyrate)‐b‐poly(N‐isopropylacrylamide)‐b‐[[poly(methyl ether methacrylate)‐g‐poly(ethylene glycol)]‐co‐[poly(methacrylate)‐g‐poly(propylene glycol)]], PHB‐b‐PNIPAAM‐b‐(PPEGMEMA‐co‐PPPGMA), and their subsequent self‐assembly into thermo‐responsive hydrogels is described. Atom transfer radical polymerization (ATRP) of N‐isopropylacrylamide (NIPAAM) followed by poly(ethylene glycol) methyl ether methacrylate (PEGMEMA) and poly(propylene glycol) methacrylate (PPGMA) was achieved from bromoesterified multi‐arm PHB macroinitiators. The composition of the resulting copolymers was investigated by 1H and 13C J‐MOD NMR spectroscopy as well as size‐exclusion chromatography (SEC), thermogravimetric analysis (TGA), and differential scanning calorimetry (DSC). The copolymers featuring different architectures and distinct hydrophilic/hydrophobic contents were found to self‐assemble into thermo‐responsive gels in aqueous solution. Rheological studies indicated that the linear one‐arm PHB‐based copolymer tend to form a micellar solution, whereas the two‐ and four‐arm PHB‐based copolymers afforded gels with enhanced mechanical properties and solid‐like behavior. These investigations are the first to correlate the gelation properties to the arm number of a PHB‐based copolymer. All copolymers revealed a double thermo‐responsive behavior due to the NIPAAM and PPGMA blocks, thus allowing first the copolymer self‐assembly at room temperature, and then the delivery of a drug at body temperature (37 °C). The non‐significant toxic response of the gels, as assessed by the cell viability of the CCD‐112CoN human fibroblast cell line with different concentrations of the triblock copolymers ranging from 0.03 to 1 mg mL?1, suggest that these PHB‐based thermo‐responsive gels are promising candidate biomaterials for drug‐delivery applications.  相似文献   

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