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1.
王军  张阿方 《化学进展》2015,27(10):1413-1424
超分子螺旋聚合物结合了超分子聚合物制备方法简便、结构及性能可调控等优势,相比于人工合成的共价型螺旋聚合物更接近自然界螺旋生物大分子,因而在手性探针、不对称催化以及手性识别和分离等领域具有广泛的应用前景。结合多肽的手性优势、丰富的二次有序构象及其出色的自组装行为,以多肽作为结构基元经超分子组装制备具有螺旋构象的聚合物,不仅丰富了手性/螺旋聚合物的制备途径,同时为多肽材料的功能化应用提供新的广阔前景。本文综述了多肽基元之间经超分子作用诱导形成的超分子螺旋聚合物,总结了双亲性多肽以及多肽拓扑结构对超分子组装过程的影响及其对形成螺旋结构的控制,重点归纳了由多肽构筑的光、温度、pH、金属离子和酶等不同类型智能响应性的超分子螺旋聚合物。  相似文献   

2.
以Ln2O3(Ln=Nd和La),2,2′-联吡啶-3,3′-二羧酸(bpdc),4,4′-联吡啶(bpy)为原料,采用溶剂热法合成了2个具有二维骨架结构的无机-有机杂化材料[Nd2(bpdc)3(H2O)2]·bpy·4H2O(1)和[La2(bpdc)3(H2O)4]·4H2O(2),通过IR和X-射线单晶衍射分析等手段对其结构进行了表征。晶体1属于单斜晶系,C2/c空间群,晶胞参数a=3.3104(7)nm,b=0.74812(15)nm,c=1.9848(4)nm,β=104.75(3)°。晶体2属于单斜晶系,C2/c空间群,晶胞参数a=2.6749(5)nm,b=0.71165(14)nm,c=2.0542(4)nm,β=92.70(3)°。在这2个配位聚合物中,晶体中的结晶水沿着b轴呈现一维无限有序排列,将化合物中二维的金属有机骨架通过氢键相连进而形成了三维超分子结构。  相似文献   

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基于氢键的超分子液晶体系的研究是一个方兴未艾的充满活力的前沿研究领域,它在化学和生物体系中占据非常重要的位置。本文主要介绍了目前文献报道的基于二重以上氢键的超分子液晶体系的研究进展。  相似文献   

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药物共晶是一种新兴的药物晶型, 一个给定的活性药物分子通过形成共晶, 一方面可以大大丰富其结晶形式, 另一方面可以改善其物化性质及临床疗效. 本文从超分子化学的角度对药物共晶进行了综述, 列举了一系列通过氢键超分子合成子进行药物共晶设计和制备的研究实例, 旨在促进超分子化学和药学的交叉融合.  相似文献   

5.
氢键结合超分子水凝胶的形成与结构调控   总被引:2,自引:1,他引:1  
近年来,依靠单体单元间可逆和高度取向的非共价作用力形成超分子聚合物(supramolecularpolymer)得到广泛关注[1,2].在溶液中,超分子单体单元之间通过非共价键相互作用,形成三维网络结构并将有机溶剂或水包裹形成超分子凝胶[3,4].相对于聚合物凝胶,超分子凝胶具有以下优点.(1)生  相似文献   

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非共价键结合的超分子聚合物由于其特殊的结构及性能引起了广泛的关注.本文在介绍超分子化学、氢键及超分子聚合物的基础上,主要综述了以氢键为结合力的多重氢键作用、羧基(D)与吡啶基(A)作用以及氢键与其它非共价键协同作用形成的超分子聚合物体系,并对超分子聚合物的研究现状及前景进行了评述.  相似文献   

7.
基于氢键作用结合的超分子聚合物   总被引:5,自引:1,他引:4  
王毓江  唐黎明 《化学进展》2006,18(2):308-316
非共价键结合的超分子聚合物由于其特殊的结构及性能引起了广泛的关注。本文在介绍超分子化学、氢键及超分子聚合物的基础上,主要综述了以氢键为结合力的多重氢键作用、羧基(D)与吡啶基(A)作用以及氢键与其它非共价键协同作用形成的超分子聚合物体系,并对超分子聚合物的研究现状及前景进行了评述。  相似文献   

8.
基于氢键作用结合的超分子聚合物   总被引:1,自引:0,他引:1  
非共价键结合的超分子聚合物由于其特殊的结构及性能引起了广泛的关注。本文在介绍超分子化学、氢键及超分子聚合物的基础上,主要综述了以氢键为结合力的多重氢键作用、羧基(D)与吡啶基(A)作用以及氢键与其它非共价键协同作用形成的超分子聚合物体系,并对超分子聚合物的研究现状及前景进行了评述。  相似文献   

9.
分别以四苯甲烷和四苯基卟啉为中心,端位引入四氟碘代苯,合成了两类四齿卤键供体分子,并合成了3,3’,5,5’-四甲基-4,4’-联吡啶(TMBP)作为卤键受体分子.以四苯甲烷为中心的卤键供体分子和TMBP基于分子间I…N卤键和H…N氢键在固相中自组装,得到一类超分子网络结构.晶体结构显示,一个四面体卤键供体分子通过两组I…N卤键和两组H…N氢键结合四个TMBP分子,与之对应,一个TMBP分子通过一组I…N卤键和一组H…N氢键结合两个四面体分子,形成单层网络结构,网格为宽度2.37nm的正方形结构,层与层之间通过其它氢键和卤键进一步堆积.卟啉类四齿卤键供体分子的晶体数据显示,通过较为复杂的分子间C—I…π及H…F等弱相互作用,供体分子自身进行平面组装,层与层之间通过π-π堆积等作用进一步堆积.  相似文献   

10.
均苯四甲酸与对羟基吡啶超分子聚合物的制备   总被引:1,自引:0,他引:1  
超分子聚合物(supramolecular polymer)是指单体单元间依靠可逆和高度取向的非共价作用力结合的、在溶液或本体中表现出聚合物特性的一类特殊聚合物[1].其中,氢键结合超分子聚合物因氢键的高度取向性及丰富的结合形式而具有特殊结构与性能,已成为近期关注的热点[2~4].文献中报道的氢键结合超分子聚合物主要有多重氢键结合和基于羧基与吡啶基的氢键结合(其键能可达45kJ·mol-1[5])两类,它们均可表现出和传统聚合物诸多类似的性质,诸如高的溶液粘度、形成凝胶、具有弹性等,同时其结构和性能又随温度等环境条件的变化而发生可逆变化,使得这类…  相似文献   

11.
A series of mono- and bifunctional compounds 2-7, based on the ureido pyrimidinone quadruple hydrogen bonding unit, was prepared to study the mode of aggregation of these compounds in the bulk and in solution. Compounds 2-7 exhibit thermotropic liquid crystalline properties, as evidenced by differential scanning calorimetry and optical polarization microscopy. The presence of an ordered hexagonal discotic (D(ho)) phase of 2 a was confirmed by X-ray diffraction on an aligned sample. In chloroform, the bifunctional compounds form cyclic dimers at millimolar concentrations, and these dimers exist in equilibrium with linear species above a critical concentration, which may be from 6 mM to greater than 260 mM, depending on the structure of the spacer. Circular dichroism measurements in chloroform did not show a Cotton effect. Dodecane solutions of compounds 3, 4 b, and 7 b display a Cotton effect at the absorption band of the phenyl-pyrimidinone unit. Amplification of chirality was observed in mixtures of 7 a and 7 b, but not in mixtures of 4 a and 4 b, indicating that 7 a and 7 b form mixed polymeric aggregates with a helical architecture in dodecane solution, whereas 4 a and 4 b do not. The Cotton effect is lost upon increasing the temperature. Half of the helicity is lost at 25 degrees C for 3 and at 60 degrees C for 4 b, suggesting that 3, bearing the shorter spacer, forms less stable columns than 4 b. Compound 7 b loses half of its helicity at 45 degrees C. Compounds 2 b, 5, and 6 do not exhibit helical organization, as evidenced by the absence of Cotton effects.  相似文献   

12.
The supramolecular oligomerization of three water-soluble C(3)-symmetrical discotic molecules is reported. The compounds all possess benzene-1,3,5-tricarboxamide cores and peripheral Gd(III)-DTPA (diethylene triamine pentaacetic acid) moieties, but differ in their linker units and thus in their propensity to undergo secondary interactions in H(2)O. The self-assembly behavior of these molecules was studied in solution using circular dichroism, UV/Vis spectroscopy, nuclear magnetic resonance, and cryogenic transmission electron microscopy. The aggregation concentration of these molecules depends on the number of secondary interactions and on the solvophobic character of the polymerizing moieties. Hydrophobic shielding of the hydrogen-bonding motif in the core of the discotic is of paramount importance for yielding stable, helical aggregates that are designed to be restricted in size through anti-cooperative, electrostatic, repulsive interactions.  相似文献   

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A blue-green-emitting three-dimensional supramolecular compound (C10O2N2H8)(C9O7H6) (1) was synthesised under hydrothermal conditions and structurally characterised by elemental analysis, IR spectrum, 1H NMR and single-crystal X-ray diffraction. The crystal belongs to triclinic system with P 1¯ space group. The crystal structure is stabilised by O–H…O, O–H…N hydrogen bonds and π–π interactions (π–π stacking distance is 3.282 Å). Compound 1 exhibits intense green luminescence in solid state at 298 K (λem = 546 nm). In addition, absorption and fluorescence characteristics of compound 1 have been investigated in different solvents (DMSO, CH3CN and CH3OH). The results show that compound 1 exhibits a large red shift in both absorption and emission spectra as solvent polarity increases (polarity: DMSO>CH3CN>CH3OH), indicating a change in dipole moment of compound 1 upon excitation. Although the emission spectra of compound 1 in CH3OH are close to it in dimethyl sulfoxide (DMSO), it is revealed that the luminescence behaviour of compound 1 depends not only on the polarity of environment but also on the hydrogen bonding properties of the solvent. Meanwhile, temperature strongly affects the emission spectra of compound 1. Emission peaks of compound 1 were blue shift at 77 K than those at 298 K in both solid state (ca. 142 nm) and solution (ca. 6–23 nm), which was due to the non-radiative transition decreases at low temperature. Moreover, the quantum yield and fluorescence lifetime of compound 1 were also measured, which increased with increasing polarity of solvent, lifetime in DMSO at 298 K (τ1 = 0.92 μs, τ2 = 8.71 μs) was the longest one in solvents (298 K: τ1 = 0.87–0.92 μs, τ2 = 7.50–8.71 μs; 77 K: τ1 = 0.72–0.90 μs, τ2 = 6.88–7.45 μs), which was also shorter than that in solid state (298 K: τ1 = 1.13 μs, τ2 = 7.50 μs; 77 K: τ1 = 0.97 μs, τ2 = 8.97 μs). This was probably because of the weak polarity environment of compound 1 in solid state.  相似文献   

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Through hydrothermal synthesis, Cu(2-pac)2 (2-pac?=?2-pyrazinecarboxylic acid) reacting with 4,4′-bipyridine (abbreviated for 4,4′-bpy) in 1?:?1 molar ratio afforded a porous three dimensional supramolecule containing an infinite T4(2)8(2) water tape, showing the contribution of the water tape to the stability of the crystal host and the role of cooperative association between the water tape and the crystal host in the formation of the water tape.  相似文献   

20.
Networks of the hydrogen bonds and those consisting of lines connecting nearby molecules were constructed using configurations of water molecules obtained by the Monte-Carlo method. The concentrations of closed cycles of hydrogen bonds were established to be determined only by the probability of hydrogen bond formation. Characteristics of a model ideal water network were determined. Topological properties of the Polk model and those of the network of nearest neighbors substantially differ from the properties of the ideal network. The totality of the hydrogen bonds in pure water was proposed to be considered as a hierarchical system. Three topologically different structures of water associates were determined. Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 5, pp. 928–931, May, 1997.  相似文献   

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