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1.
线形-树状体杂化嵌段共聚物是由树枝状高分子嵌段(D)与线形高分子链(L)通过化学键连接而成的一类特殊拓扑结构的共聚物.本文综述了LD两嵌段和DLD三嵌段杂化共聚物的分子设计合成、超分子组装及应用方面近年来的最新研究进展.  相似文献   

2.
卟啉是一类由4个吡咯环通过次甲基相连而形成的共轭大环化合物.卟啉及其衍生物广泛存在于生物体内,参与催化、氧的输运和能量转移等重要生理过程.因其独特的生理功能和物理化学特性,卟啉衍生物及其高分子材料的制备和合成引起了广泛关注.本文介绍了卟啉及其衍生物在生命系统中的功能及其合成方法,回顾了含卟啉的高分子材料和超分子组装体的设计和制备方法,总结了近年来基于卟啉的高分子和超分子功能材料的研究动态.  相似文献   

3.
秦金贵 《有机化学》2001,21(11):1081-1089
介绍本研究组得到国家自然科学基金资助的四个方面工作的进展。研究了金属有机化合物的结构与非线性光学性质的关系,总结了从分子几何构型着手,根据不同用途,对金属有机非线性光学材料进行分子设计的经验规律;提出了利用“组合式共轭桥”进行有机非线性光学发色团分子设计的新思路,所合成的几个有机化合物既有很大的光学非线性,又有紫移的最大吸收峰;通过化学键将有机发色团分子张到各种高分子的侧链上,合成和表征了潜在的电光高分子和光折变高分子材料;采用无机-有机夹层复合的思路对兼有导电性和强磁性的分子材料进行了探索,将一些有机小分子和导电高分子分别插入了层状无机物MPS3的层间,得到了8个新的分子磁体,而另一夹层化合物则表现了较高的电导率。  相似文献   

4.
综述了"超分子构筑调控的逐步偶联/聚合法",该方法将高分子化学与超分子化学相结合,利用多种类型的超分子弱键协同作用首先构筑预期的梯形超分子结构,再经聚合得到共价键梯形高分子.利用该方法合成了一系列结构规整的氧桥基和有机桥基梯形聚硅氧烷以及碳基梯形聚酯,并利用侧基间π-π叠加作用实现了对聚合物立体构型控制.扼要介绍了梯形聚合物在先进材料方面的应用,例如梯形聚硅氧烷液晶光致取向膜;由梯形聚硅氧烷合成的管状聚硅氧烷在高室温储存期微电子环氧塑封料方面的应用;以及基于梯形聚硅氧烷的拟筛板聚合物在二阶非线性光学材料方面的应用等.  相似文献   

5.
选取合适的金属团簇(超原子)作为结构基元,进而组装形成新的团簇或晶体材料是团簇科学中一个有趣且充满挑战的课题,受到了实验和理论研究者的广泛关注.通过超原子组装这种"自下而上"的组装方式,可以获得具有特定物理化学性质的新材料.但是,长久以来针对如何进行超原子组装并无清晰、统一的理论认识,超原子组装基本等同于超原子的任意堆砌或拼接.那么,超原子能否像原子那样通过特定化学键形成分子或晶体?超原子间如何成键?超原子组装是否有一定模式可循?为了回答这些问题,我们提出了一个唯象理论:超原子分子理论.该理论的核心是构建超原子间的成键规则,将涉及超原子的"超级化学键"概括为3种类型,即超级共价键、超级杂化键和超级非键.超原子可以通过超级化学键结合形成超原子分子或超原子晶体.同时,超原子分子理论指出,超原子具有几何结构不同但电子结构相似的异构体,这些异构体称为"等同超原子".等同超原子同样可以作为组装基元,通过超级化学键进行结合.另外,针对包含复杂成键类型的团簇体系,超原子分子理论概括出了两种超原子组装模式,分别称为超原子网络和杂化超原子网络.综上所述,超原子分子理论包含了对超原子间成键规则的理解,对超原子组装基元的思考以及对超原子组装模式的认识.超原子分子理论的相关内容不仅可以为超原子组装提供系统的理论依据,而且可以对特殊团簇结构的稳定性给出合理解释,还可以为新型团簇的结构设计以及实验合成提供理论指导.  相似文献   

6.
超分子拓扑高分子结合了非共价键的动态可逆特性和共价型拓扑高分子的结构特点,是一种具有广泛应用前景的高分子物种.本文从超分子拓扑高分子的合成、组装及功能等三个方面综述了该领域的最新研究进展.首先重点强调了利用直接或间接方法来构筑超支化、树枝状、星形、刷形、交联型和环形等超分子拓扑高分子的策略,其次从内部结构参数和外部环境响应两方面介绍了调控超分子自组装行为的主要方法,然后对其在生物医用材料、光电活性材料以及自修复材料等领域的潜在应用进行了较为全面的总结,最后指出了超分子拓扑高分子研究领域目前存在的关键问题和重要挑战.  相似文献   

7.
苯并菲液晶材料能够自组装成柱状相,被广泛应用在光电材料方面、功能分子膜、信息储存等方面。苯并菲衍生物合成方法简单,并且具有非常良好的光电性质,引起了研究者的广泛关注。苯并菲液晶高分子可以分为不同的类型,其合成方法也不相同。本文在简单介绍苯并菲液晶高分子合成方法的同时,对苯并菲液晶高分子的应用也做简要的概括。  相似文献   

8.
苯并菲液晶材料能够自组装成柱状相,被广泛应用在光电材料方面、功能分子膜、信息储存等方面。苯并菲衍生物合成方法简单,并且具有非常良好的光电性质,引起了研究者的广泛关注。苯并菲液晶高分子可以分为不同的类型,其合成方法也不相同。本文在简单介绍苯并菲液晶高分子合成方法的同时,对苯并菲液晶高分子的应用也做简要的概括。  相似文献   

9.
通过分子复合超分子方法制备高性能高分子材料   总被引:1,自引:0,他引:1  
分子复合可调控聚合物超分子结构和聚集态结构,提高其性能,是高分子材料制备和高性能化的超分子方法.本文介绍了我们研究组近几年来通过分子复合超分子方法制备新型高分子材料的一些研究工作,如实现PVA的热塑加工,制备高性能熔纺纤维、吹塑薄膜、中空瓶、注塑制品等;制备新型聚合物无卤阻燃剂MCA,大大简化其合成工艺,并具有更高阻燃...  相似文献   

10.
嵌段共聚物是由几个不同的高分子链段通过化学键相连所构成的 .在合成方法上一般是通过几类不同的活性聚合 ,调控单体的加料次序或者通过不同的大分子链段末端的反应活性点偶联而成[1~ 3 ] .所形成的化学键将嵌段共聚物中不相溶的几段相连 ,于是在特定的条件下就产生了微相分离的现象 ,继而可以在 1 0~ 1 0 0nm尺度范围内形成各种各样的微区结构[4,5] .在过去的几十年里 ,研究的重点是认定嵌段共聚物的微区结构和研究微相分离的动力学 ,已发表了大量重要的结果 ,至今仍然是高分子科学中的热门课题 .非常重要的一点是 ,正是由于不同的高分…  相似文献   

11.
用巯基乙酸做稳定剂制备了水溶性CdSe纳米颗粒, 用十六烷基三甲基溴化铵(HTAB)、发光性(4-甲氧基均二苯乙烯基)二甲基乙基溴化铵 (MODAB)及末端含有双键的(4-甲基丙烯酰氧基均二苯乙烯基)二甲基乙基溴化铵(MSDAB)对该CdSe纳米颗粒进行了混合组装.通过改变三种有机分子的比例可以调控所得组装体的溶解性、聚合性及其发光性质.实验结果表明,当HTAB:MODAB:MSDAB=1:5.98~5.90:0.02~0.10(摩尔比)时,所得组装体具有较好的聚合性、溶解性和荧光性质.  相似文献   

12.
《先进技术聚合物》2018,29(1):226-233
Macroscopic supramolecular assembly plays a key role to bridge the fundamental researches on molecular recognition to the potential applications as supramolecular materials. However, the challenge remains to promote the research from soft hydrogel system to semirigid objects or building blocks. Herein, the concept of flexible spacing coating was employed to modify the model polydimethylsiloxane building blocks, and reversible macroscopic assembly was successfully realized through introducing highly directional, dynamic, and reversible coordinate interactions as driving forces. The driving force for the macroscopic assembly was confirmed by introducing highly competitive ethylene diamine tetra acetic acid solution as an orthodox system to disassemble the assembled blocks. Moreover, the coordinate interaction was further understood through unique in situ measurements of binding forces between building blocks during assembly process. This work of macroscopic supramolecular assembly provides an in situ visible platform, which is significant to clarify the highly fascinating and facile coordinate interactions on the macroscopic assembly behavior.  相似文献   

13.
Synthesis, crystal structural determination and photophysical properties of a series of heteroleptic cationic cyclometalated iridium(III) derivatives of general formula [(ppy)(2)Ir(en)]X (X = ClO(4)(-) (1), PF(6)(-) (2), Cl(-) (3), BPh(4)(-) (4)), are described. The assembly of the common molecular building block allows to get highly luminescent crystalline materials or to assemble poorly luminescent supramolecular channelled architectures, for which the additional contribution of oxygen quenching effects has been observed. Moreover, the high reproducibility of the preparations of the crystalline materials in their specific crystalline phases, makes the control of the supramolecular organization of photo-active iridium(III) complexes within the crystalline structures a useful synthetic procedure for the construction of highly luminescent materials.  相似文献   

14.
The unique optical and electronic properties of living systems are impressive. Peptide-based supramolecular self-assembly systems attempt to mimic these properties by preparation optical/electronic function materials with specific structure through simple building blocks, rational molecular design, and specific kinetic stimulation. From the perspective of building blocks and assembly strategies, the unique optical and electronic properties of peptide-based nanostructures, including peptides self-assembly and peptides regulate the assembly of external function subunits, are systematically reviewed. Additionally, their applications in biomedicine, sensing, and energy storage are also highlighted. This bioinspired peptide-based function material is one of the hot candidates for the new generation of green intellect materials, with many advantages such as biocompatibility, environmental friendliness, and adjustable morphology.  相似文献   

15.
DNA molecules are useful building blocks and nanotemplates for controllable fabrication of various bioinorganic nanostructures due to their unique physical-chemical properties and recognition capabilities and the synthetic availability of desired nucleotide sequences and length. We have synthesized novel DNA complexes with positively charged, highly luminescent CdSe nanorods that can be self-organized into filamentary, netlike, or spheroidal nanostructures. DNA-CdSe-nanorod filaments possess strongly linearly polarized photoluminescence due to the unidirectional orientation of nanorods along the filaments.  相似文献   

16.
Employing nanocrystals (NCs) as building blocks of porous aerogel network structures allows the conversion of NC materials into macroscopic solid structures while conserving their unique nanoscopic properties. Understanding the interplay of the network formation and its influence on these properties like size-dependent emission is a key to apply techniques for the fabrication of novel nanocrystal aerogels. In this work, CdSe/CdS dot/rod NCs possessing two different CdSe core sizes were synthesized and converted into porous aerogel network structures. Temperature-dependent steady-state and time-resolved photoluminescence measurements were performed to expand the understanding of the optical and electronic properties of these network structures generated from these two different building blocks and correlate their optical with the structural properties. These investigations reveal the influence of network formation and aerogel production on the network-forming nanocrystals. Based on the two investigated NC building blocks and their aerogel networks, mixed network structures with various ratios of the two building blocks were produced and likewise optically characterized. Since the different building blocks show diverse optical response, this technique presents a straightforward way to color-tune the resulting networks simply by choosing the building block ratio in connection with their quantum yield.  相似文献   

17.
Supramolecular materials, dynamic materials by nature, are defined as materials whose components are bridged via reversible connections and undergo spontaneous and continuous assembly/disassembly processes under specific conditions. On account of the dynamic and reversible nature of noncovalent interactions, supramolecular polymers have the ability to adapt to their environment and possess a wide range of intriguing properties, such as degradability, shape-memory, and self-healing, making them unique candidates for supramolecular materials. In this critical review, we address recent developments in supramolecular polymeric materials, which can respond to appropriate external stimuli at the fundamental level due to the existence of noncovalent interactions of the building blocks.  相似文献   

18.
The enhanced lanthanide white-emission in solid by cucurbituril-based supramolecular assembly may provide a new strategy for smart light-emitting materials.  相似文献   

19.
以苝酰亚胺为构筑单元的氢键型超分子聚合物具有动态可逆的特征和独特的聚集体结构,呈现出许多新颖的光电功能特性,在有机太阳能电池,场效应晶体管和光收集材料等高新技术领域有着广阔的应用前景。本文在介绍苝酰亚胺衍生物的化学结构及其氢键组装特点的基础上,主要综述了近年来以苝酰亚胺为构筑单元,采用三重氢键,多重氢键以及其他形式氢键引导构筑的超分子聚合物的研究动态,这类超分子聚合物展示了丰富的组装体形貌结构,独特的性质功能以及在光电功能器件上的广阔的应用前景。最后,对其发展前景作了展望。  相似文献   

20.
Block copolymers are key building blocks for a variety of applications ranging from electronic devices to drug delivery. The material properties of block copolymers can be tuned and potentially improved by introducing noncovalent interactions in place of covalent linkages between polymeric blocks resulting in the formation of supramolecular block copolymers. Such materials combine the microphase separation behavior inherent to block copolymers with the responsiveness of supramolecular materials thereby affording dynamic and reversible materials. This tutorial review covers recent advances in main-chain supramolecular block copolymers and describes the design principles, synthetic approaches, advantages, and potential applications.  相似文献   

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