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1.
马培静 《广州化学》2011,36(1):59-66
文章介绍了有关隐身技术的基础知识,以及导电高分子材料在隐身技术中的应用.根据导电机理的不同,导电高分子隐身材料可分为结构型和复合型,两者在实际应用过程中各有优缺点,文章分别对其作了简单的介绍和讨论.并且针对近几年来复合材料领域的研究热点--碳纳米管纳米复合材料在隐身技术中的应用作了详细介绍.  相似文献   

2.
为了选择合适的吸附剂来脱除盐酸溶液中的氯仿,本文测定了几种聚合物吸附剂在298.15 K温度下对水溶液和20%盐酸溶液中氯仿的吸附等温线,考察了其吸附能力,并将其吸附能力与活性炭和固体石蜡进行了比较。所研究的吸附剂包括粉末状氯化橡胶,聚丙烯,氯化聚丙烯,聚氯乙烯,活性炭和固体石蜡。结果表明,这些吸附剂的吸附行为服从Langmuir 方程,其吸附能力的次序为活性炭>聚氯乙烯>氯化橡胶>聚丙烯 >氯化聚丙烯 >固体石蜡。该次序基本上与从聚氯乙烯到固体石蜡吸附剂中氯含量逐渐降低的次序相一致。聚氯乙烯与氯化橡胶的吸附能力与活性炭相当,其饱和吸附量大约为1.4g-CHCl3/g-吸附剂。所有吸附剂对氯仿的吸附能力均随着溶液中盐酸浓度的增加而降低。结果表明,工业级的粉状聚氯乙烯或氯化橡胶可以作为一种有效的吸附剂脱除水溶液中的氯仿,且具有成本低,吸附性好和易于通过热再生循环利用的特点。  相似文献   

3.
皮肤受损后需要立即使用外敷材料,从而加速止血、保护创面、防止细菌感染,并促进创面愈合。本文在介绍伤口的分类和敷料的选择的基础上,就典型的敷料制备、干燥和成型技术,以及目前常见的外敷材料药物负载方法进行了概述。其次,重点阐述了天然高分子和合成高分子外敷材料的最新研究进展。其中天然高分子因其生物相容性好、生物可降解等特点,常用于治疗烧伤、创伤引起的皮肤和组织缺损。而合成高分子优点为:具有很长的保质期、较强的机械性能和较低的炎症反应,几乎没有携带病菌并传播的风险。目前,改性天然高分子、合成高分子及其复合材料已经在生物医药、材料学领域受到越来越多的关注。纳米技术和药物控释技术的发展,将会大大推动外敷材料的研究开发并拓宽其应用领域。  相似文献   

4.
Summary: A novel quantitative method using isothermal titration calorimeter (ITC) for the estimation of the distribution of carboxyl groups within polymer particles has been proposed. The method has been employed to clarify the difference in the distribution between the particles prepared by batch emulsion copolymerization of styrene and methacrylic acid under inefficient and efficient stirring conditions. At inefficient stirring, monomer was floating as a layer on the aqueous medium, whereas at efficient stirring, the monomer phase was dispersed as droplets. Under inefficient stirring, methacrylic acid (MAA) polymerized faster than styrene (S) due to a slower diffusion rate of S than MAA into the aqueous medium, while under efficient stirring, S and MAA copolymerized at similar rates. ITC measurement showed that under inefficient stirring, the carboxyl groups were distributed mainly in the center of the particles, and their number decreased toward the surface. On the other hand, under efficient stirring, carboxyl groups were distributed homogeneously inside the particle.  相似文献   

5.
Photocatalytic hydrogen evolution is viewed as a promising green strategy to utilize the inexhaustible solar energy and provide clean hydrogen fuels with zero‐emission characteristic. The nature of semiconductor‐based photocatalysts is the key point to achieve efficient photocatalytic hydrogen evolution. Conjugated materials have been recently emerging as a novel class of photocatalysts for hydrogen evolution and photocatalytic reactions due to their electronic properties can be well controlled via tailor‐made chemical structures. Hydrophilic conjugated materials, a subgroup of conjugated materials, possess multiple advantages for photocatalytic applications, thus spurring remarkable progress on both material realm and photocatalytic applications. This minireview aims to provide a brief review of the recent developments of hydrophilic conjugated polymers/small molecules for photocatalytic applications, and special concern on the rational molecular design and their impact on photocatalytic performance will be reviewed. Perspectives on the hydrophilic conjugated materials and challenges to their applications in the photocatalytic field are also presented.  相似文献   

6.
有机磁性材料是最近二十多年发展起来的新型的功能材料 ,因为其结构的多样性 ,可用化学方法合成 ,可得到磁性能与机械、光、电等方面结合的综合性能等特点 ,在超高频装置、高密度存贮材料、吸波材料、微电子工业和宇航等需要轻质磁性材料的领域有很大的应用前景。本文综述了有机磁性化合物的发展和研究近况。  相似文献   

7.
二氧化硅胶体晶体及其为模板的多孔材料   总被引:7,自引:0,他引:7  
用Stober法合成了粒径在35~750nm范围内的单分散的SiO2粒子,考察了投料比对粒径的影响.研究了所制备的SiO2胶体晶体的结构和反射光谱.利用两种不同粒径的SiO2粒子作为模板和模板填充物,分别制备了SiO2和重氮树脂的多孔材料.  相似文献   

8.
基于天然高分子的聚氨酯材料   总被引:7,自引:0,他引:7  
综述了近年来天然高分子低聚糖、纤维素、淀粉、木素及液化木材部分或全部代替聚醚多元醇制备聚氨酯材料的研究进展  相似文献   

9.
中国海大陆架沉积物超细标准物质系列研制   总被引:8,自引:0,他引:8  
5个中国海大陆架沉积物标准物质的原样分别取自东海和南海,样品风干后,先经球磨制备成200目的均匀粉体,再用气流磨进一步加工成超细粒度的均匀样品.采用激光粒度仪检测了样品的粒度分布,5个样品的平均粒度均小于4 μm(约800目).采用高精度的XRF检验了样品的均匀性并以高灵敏度的ICP-AES、ICP-MS相配合确定了其最小取样量(5 mg).有12个实验室参加了合作定值研究,定值组分均为60个,其中MSCS-1,2分别有50和51个组分定为标准值,MSCS-3,4,5有52个组分定为标准值.全组分百分总和分别为99.9%, 99.9%, 100.4%, 100.1%和99.7%.  相似文献   

10.
The superfine BaCO3 particles were synthesized by high gravity technology with BaCl2·2H2O and Na2CO3 as the raw materials. The changes of particle size and morphology were studied by adding different amount of EDTA, and rod-like, near-spherical and cylindrical shape BaCO3 were prepared. The BaCO3 particles were analyzed and characterized by TG/SDAT, SEM, XRD and FT-IR. The results indicated that the crystal transformation temperature and decomposition temperature of BaCO3 had increased because of EDTA addition. With the increase of EDTA amount, the shape of BaCO3 changed from irregular rod-like to near-spherical then to cylindrical shape. All different shape BaCO3 adopts orthorhombic crystal systems.  相似文献   

11.
曹艳霞  李光吉强伟 《化学进展》2008,20(11):1810-1815
光盘是一种以非接触方式记录/再现信息的信息记录介质,主要由基板、记录层和保护层组成。其中,基板材料所用的光学塑料是光盘生产的主要原材料,对光盘的性能和成本构成至关重要。本文综述了聚合物光盘基板材料的研究现状及其发展趋势。光盘基板材料主要包括传统的聚碳酸酯(PC),聚甲基丙烯酸甲酯(PMMA)、环氧树脂以及近年发展起来的非晶环烯烃聚合物。研制具有较低的双折射、吸湿性、固化成型收缩率以及较高的存储密度和存储寿命的光盘基板材料是聚合物光盘基板材料的一个重要研究领域。  相似文献   

12.
Hiroyuki Ohshima 《Electrophoresis》2021,42(21-22):2182-2188
Approximate analytic expressions are derived for the electrophoretic mobility of a weakly charged spherical soft particle consisting of the particle core covered with a surface layer of polymers in an electrolyte solution. The particle core and the surface polymer layer may be charged or uncharged. The obtained electrophoretic mobility expressions, which involve neither numerical integration nor exponential integrals, are found to be in excellent agreement with the exact numerical results. It is also found that the obtained mobility expressions reproduce all the previously derived limiting expressions and approximate analytic expressions for the electrophoretic mobility of a weakly charged spherical soft particle.  相似文献   

13.
利用分子烙印技术分离中草药活性组分   总被引:37,自引:0,他引:37  
用非共价法,在极性溶剂中,以丙烯酰胺作功能单体,以强极性化合物槲皮素为模板 ,制备了分子烙印聚合物(MIP). 液相色谱实验表明, MIP 对槲皮素具有特异的亲合性.将此 MIP直接分离银杏叶提取物水解液, 得到主要含模板槲皮素及与槲皮素结构相似化合物山奈 酚两种黄酮的组分.研究证实了MIP技术用于直接分离、提取中草药中具有特定药效化合物的 可行性.  相似文献   

14.
In a world with ever decreasing natural reserves, researchers are striving to find sustainable methods of producing components for technology. Bioinspired, biokleptic and biomimetic materials can be used to form a wide range of technologically relevant materials under environmentally friendly conditions. Here we investigate a range of biotemplated and bioinspired materials that can be used to develop components for devices, such as optics, photonics, photovoltaics, circuits and data storage.  相似文献   

15.
In the past few decades, enormous efforts have been made to synthesize covalent polymer nano/microstructured materials with specific morphologies, due to the relationship between their structures and functions. Up to now, the formation of most of these structures often requires either templates or preorganization in order to construct a specific structure before, and then the subsequent removal of previous templates to form a desired structure, on account of the lack of “self-error-correcting” properties of reversible interactions in polymers. The above processes are time-consuming and tedious. A template-free, self-assembled strategy as a “bottom-up” route to fabricate well-defined nano/microstructures remains a challenge. Herein, we introduce the recent progress in template-free, self-assembled nano/microstructures formed by covalent two-dimensional (2D) polymers, such as polymer capsules, polymer films, polymer tubes and polymer rings.  相似文献   

16.
An approximate analytic expression is derived for the electrophoretic mobility of a charged spherical colloidal particle covered with an ion-penetrable uncharged polymer layer in an electrolyte solution by taking into account the relaxation effects. This expression is applicable for all values of zeta potentials at large a(aca. 30), where is the Debye–Huckel parameter and a is the radius of the particle core. A simple expression for the ratio of the electrophoretic mobility of a polymer-coated particle to that of a bare particle without a polymer layer is also given.  相似文献   

17.
陈润锋  郑超  范曲立  黄维 《化学进展》2010,22(4):696-705
高分子发光二极管(PLED)因其巨大的科学和商业价值而得到了广泛关注,近年来各种新材料的不断开发和深入研究使PLED器件日益走向实用化。高分子电致发光材料的结构设计是新材料开发的灵魂,本文结合我们的工作概述了高分子发光材料结构设计的基本原理和设计要点,详细介绍了单分子结构设计方法及其相关的基本思路和理论,分析了聚集态结构对材料及其器件性能的影响,概括了聚集态结构设计的一些基本方法。最后提出了高分子发光材料结构设计的一般性思路,并展望了其研究和发展方向。  相似文献   

18.
高功率密度、高充放电效率以及超长使用寿命等特点是聚合物薄膜电容器能够广泛应用于电动汽车、智能电网等各类电子电气领域中的重要原因。其中,介电高分子材料因其质轻、击穿强度高、易大规模加工等优点赋予了薄膜电容器更多的可能性。但同时,介电高分子的介电常数普遍较低,导致所制备的电容器能量密度偏低因而不能更好地适应设备小型化轻型化的要求。本文概述了电介质以及薄膜电容器的基本原理以及性能参数,着重介绍了以储能为主要研究方向的介电高分子材料,主要包括聚合物基纳米复合介电高分子、偶极玻璃聚合物、交联型介电高分子以及多组分全有机介电高分子。最后对介电高分子在制备性能优异的储能电容器过程中面临的多重挑战和潜在机遇进行了总结。  相似文献   

19.
The basic feature of polymers is their multi-order structure. Structure change at each level offers a possibility tomodify polymer properties and to develop new polymer materials. Therefore,novel polymer materials can be developed by tailoring their chain structure through chemical bonding among atoms, i.e., via the traditional molecular chemistry methods, e.g., polymerization of new monomer, controlling chain length (molecular weight and molecular weight distribution) and stereoregularity, copolymerization of different kinds of monomers, controlling sequence distribution,block of graft length of copolymer, etc., which have been the focus of polymer chemistry for several decades, as well as by tailoring specific supramolecular architecture using molecules as building block through intermolecular interactions, i.e., via supramolecular science methods, e.g., molecular self-assembly, intermacromolecular complexation, etc., which is a modern and fast-developing academic research field.This paper reports novel polymer materials prepared through intermacromolecular complexation,e.g., a new polymer solid electrolyte poly(metyl methacrylate-methacrylic acid)[P(MMA-MAA)]/poly(ethylene oxide) (PEO)/A2-LiClO4 developed by intermacromolecular complexation through hydrogen bonding, which has enhanced ambient ionic conductivity and fairly good mechanical and film-forming properties, a new polymer microcomposite poly(acrylonitrile-acrylamide-acrylic acid) [P(AN-AM-AA)]/poly(vinyl alcohol) (PVA) reinforced by the twin molecular chain microfibrils formed through intermacromolecular complexation of P(AN-AM-AA) with PVA through hydrogen bonding, which exhibits much better mechanical properties than its constituents and could be used to manufacture PVA based complexed fibers with higher modulus and better dyeability, a new polymer flooding agent poly(acrylamide-acrylic acid)[P(AM-AA)]/poly(acrylamide- dimethyldiallylammonium chloride) [P(AM-DMDAAC)] developed by intermacromolecular complexation of the oppositely charged polyions through Coulomb forces,which shows much higher viscosity and better resistance to temperature, shear rate and salt than its constituents, and has potential application in enhanced oil recovery.  相似文献   

20.
Side chains play a considerable role not only in improving the solubility of polymers for solution‐processed device fabrication, but also in affecting the molecular packing, electron affinity and thus the device performance. In particular, electron‐donating side chains show unique properties when employed to tune the electronic character of conjugated polymers in many cases. Therefore, rational electron‐donating side chain engineering can improve the photovoltaic properties of the resulting polymer donors to some extent. Here, a survey of some representative examples which use electron‐donating alkylthio and alkoxy side chains in conjugated organic polymers for polymer solar cell applications will be presented. It is envisioned that an analysis of the effect of such electron‐donating side chains in polymer donors would contribute to a better understanding of this kind of side chain behavior in solution‐processed conjugated organic polymers for polymer solar cells.

  相似文献   


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