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1.
卟啉是一类重要的大环化合物,广泛存在于自然界和生命体中,具有广泛的应用。由于自由卟啉化合物的化学稳定性差,天然卟啉通常在特定的天然大分子(多肽)环境中发挥其特性,因此,人们研究开发了多种担体,固载化卟啉和金属卟啉,大大拓展了其应用范围。本文综述了文献报道的卟啉及金属卟啉的常用固载载体、常用的固载方法、以及固载型卟啉化合物在催化和传感器等领域的最新应用进展,展望了卟啉的固载化和固载型卟啉的应用前景。  相似文献   

2.
金属卟啉催化烯烃环氧化及反应机理研究*   总被引:5,自引:0,他引:5  
李臻  夏春谷 《化学进展》2002,14(5):384-390
本文就铁卟啉及锰卟啉模拟酶体系近年来在催化烯烃环氧化反应机理方面的最新研究成果进行了详细阐述。均相催化剂固载化技术的应用,使金属卟啉配合物担载于无机载体上克服了卟啉的二聚、催化剂再生等难题,有力地推动了金属卟啉配合物应用研究的发展。  相似文献   

3.
卟啉与生命现象联系密切,广泛存在于自然界中,在仿生化学和光电化学中可以作为模拟叶绿素、血红素、维生素B12等天然产物的模型化合物母体[1]。迄今,金属卟啉化合物在医学上取得了突破性的进展,根据金属卟啉化合物卓越的荧光特性以及许多卟啉化合物对癌细胞特殊的亲合能力,人们  相似文献   

4.
聚类卟啉金属配合物   总被引:1,自引:0,他引:1  
王荣民  赵明  何玉凤  郝二霞  申国瑞 《化学进展》2007,19(11):1783-1790
为模拟天然卟啉所具有的特殊生理活性,结构与性能各异的多种金属卟啉被合成并应用于许多领域。实际上,天然金属卟啉是在特定天然高分子-蛋白质营造的空穴中才能发挥其独特的性质,因此,类卟啉金属配合物的高分子化逐渐受到关注,并在载氧、催化、导电等领域取得重要成果。基于结合方式不同,高分子类卟啉金属配合物可分为高分子担载类卟啉金属配合物与聚类卟啉金属配合物。其中,后者以稳定的类卟啉环作为高分子链,不但使高分子骨架稳定,而且活性中心与类卟啉金属配合物之间有效间隔,同时活性中心相对密集,使其表现出较高的稳定性与活性。线形与平面型聚金属卟啉与金属酞菁表现出良好的导电性与催化活性;手性Salen席夫碱易于聚合得到线形或网状聚Salen希夫碱金属配合物,其表现出较强的催化活性、高ee值和可循环性。异双核聚类卟啉金属配合物也表现出较强的催化活化分子氧性能。  相似文献   

5.
应用3-氯丙基三甲氧基硅烷和咪唑成功地对硅胶表面进行了修饰,并通过咪唑基纵轴配位方式固载了四苯基锰(Ⅲ)卟啉.在无任何外加溶剂及共还原剂的条件下,应用此高分子金属卟啉作为催化剂,选择性地催化空气氧化环己烷为环己酮和环己醇.研究结果表明,与未固载金属卟啉相比,固载金属卟啉具有更高的催化活性和催化选择性,反应具有更高的酮醇比,催化剂的稳定性有了较大的提高,便于回收和重复使用.另外还探讨了载体在此催化体系中对催化性能的影响.  相似文献   

6.
近年来,卟啉及金属卟啉的超分子化学迅速发展成为现代化学的一个重要分支。卟啉及金属卟啉组装体在光、电、纳米等新型功能材料中有广泛的应用,已引起了人们的极大兴趣。本文就卟啉及金属卟啉组装体的功能、性质及应用前景进行了综述。  相似文献   

7.
 将酰氯化的羧基金属卟啉 (MP) 与表面含羟基的苯乙烯-甲基丙烯酸羟基乙酯共聚物微球 (P(St-co-HEMA)) 进行酯化反应, 制备了共聚物微球固载的金属卟啉催化剂 (P(St-co-HEMA)MP). 采用扫描电镜、紫外-可见光谱、红外光谱和热重等手段对微球进行了表征, 并考察了它在“金属卟啉?抗坏血酸?分子氧”体系中催化环己烷羟化反应性能. 结果表明, 共聚物微球固载的金属卟啉比非固载的金属卟啉具有更高的催化活性, 催化剂重复使用 4 次, 仍保持较高催化活性. 各共聚物微球固载的金属卟啉催化活性顺序为 P(St-co-HEMA)FeP > P(St-co-HEMA)MnP > P(St-co-HEMA)CoP.  相似文献   

8.
用金属卟啉化合物来模拟血红素、细胞色素等天然卟啉化合物的生理过程一直是配位化学重要的研究课题。人们发现 ,血红蛋白中的血红素是通过铁与组氨酸残基的侧链咪唑配位于蛋白质上 ,因此 ,人们对金属卟啉与咪唑类配体的轴向配位反应研究产生了极大兴趣 [1] 。有关取代四苯基卟啉金属配合物的合成和轴配反应热力学研究已有很多报道 ,但人们的研究尚处在对称且苯环上连有较小取代基的四苯基卟啉锌、钴、铁等模拟化合物的合成、结构表征及光谱和配位反应热力学的研究阶段 [2 -4 ]。对于结构不对称且卟啉中苯环上连有氨基酸的四苯基卟啉配合物…  相似文献   

9.
以交联聚苯乙烯微球(CPS)为基质载体, 采用同步合成与固载的方法, 简捷地制得了固载化阳离子苯基卟啉, 继而通过与钴盐的配合反应, 制备了固载化阳离子钴卟啉. 在此基础上, 以Keggin 型杂多酸磷钨酸(HPW)及磷钼酸(HPMo)为试剂, 凭借阳离子钴卟啉(CoP)与杂多阴离子之间的静电相互作用, 制备与表征了固载化的由阳离子钴卟啉与杂多阴离子复合而成的固体催化剂CoPPW-CPS和CoPPMo-CPS. 将两种复合催化剂用于分子氧氧化乙苯的氧化反应, 考察研究了催化特性. 结果表明: 在分子氧氧化乙苯的氧化反应中, 复合催化剂具有很高的催化活性, 可使乙苯高选择性地转化为苯乙酮, 反应12 h, 苯乙酮的产率达30.1%; 复合催化剂的催化活性比单纯的固载化钴卟啉高75%; CoPPW-CPS的催化活性高于CoPPMo-CPS. 在复合催化剂结构组分中, 固载化的杂多阴离子并无催化活性, 起催化作用的组分是钴卟啉; 但是, 杂多阴离子可有效保护钴卟啉, 使其免于被氧化失活, 从而使其保持稳定的高催化活性. 复合催化剂具有最适宜的投加量, 过量催化剂的加入, 会抑制钴卟啉的催化活性. 复合催化剂还具有良好的循环使用性能.  相似文献   

10.
采用Alder法合成四羟基苯基卟啉,并用四种醋酸盐:醋酸锌,醋酸镍,醋酸铜,醋酸钴与原卟啉合成了相应4种金属卟啉(MTHPP).采用金属卟啉为敏化剂,并与蒸汽热法制备的纯锐钛矿型TiO2作用,得到相应的金属卟啉敏化TiO2复合光催化剂.利用红外、紫外、SEM、和XRD对所得金属卟啉以及金属卟啉-TiO2复合光催化剂进行了表征和分析.结果表明,所合成的金属卟啉均为目标化合物,金属卟啉负载于TiO2表面,未改变TiO2的晶型和形貌.金属卟啉与TiO2之间存在氢键的作用力.可见光降解亚甲基蓝(MB)实验结果表明,用锌卟啉(ZnTHPP)敏化的复合催化剂性能最好,复合催化剂性质稳定,可重复使用多次.  相似文献   

11.
研究了四苯基卟啉金属配合物 (MTPP ;M =Ag ,Cu ,Pd ,Mg)和游离碱 (H2 TPP)在氧化银和银胶体中的表面增强拉曼光谱 (SERS) .在Ag2 O胶体中MTPP和H2 TPP的SERS谱与其普通拉曼谱明显不同 ,可知吸附分子在Ag2 O胶粒表面发生反应所引起 ,况且产物于 4 6 0nm附近有一强烈吸收 ,可知它含有共扼双吡咯发色团 .在OH- 修饰的银胶上也观察到类似的光谱变化 .  相似文献   

12.
卟啉及金属卟啉在自然界中广泛存在,其光学、电化学等特性可通过分子结构中多个反应位点进行调控. 随着全球能源环境问题日益凸显,卟啉在太阳能电池、光催化制氢领域的研究成为热点. 本文简介了作者课题组近年来通过国内外合作开展的D-π-A结构卟啉分子结构改性及其对光电化学性质和器件光伏特性影响的进展,并对未来卟啉光电化学研究的发展进行了简要的探讨.  相似文献   

13.
采用Adler法合成了Meso-四(对羟基苯基)卟啉(THPP), 在均相体系中使聚甲基丙烯酸缩水甘油酯(PGMA)与THPP发生开环反应, 得到侧链键合有羟基苯基卟啉的线型PGMA(HPP-PGMA); 进一步使HPP-PGMA与锰离子发生配合作用, 得到侧链键合有锰卟啉(MnP)的线型PGMA(MnP-PGMA), 测定了HPP-PGMA的1H NMR谱, 表征了其化学结构; 测定了HPP-PGMA与MnP-PGMA的UV-Vis光谱及荧光发射光谱, 考察了其光物理行为. 实验结果表明, 通过THPP外环上羟基与PGMA侧基环氧键的开环成醚反应, 可以顺利地将羟基苯基卟啉及其锰配合物键合在PGMA的侧链上. HPP-PGMA具有THPP的特征电子吸收光谱与荧光发射光谱, 且随着THPP键合度的增加, 光谱的强度增强. MnP-PGMA具有小分子锰卟啉的特征电子吸收光谱与荧光特征, 其Soret吸收带发生显著红移(红移58 nm), Q吸收带的数量减为3个吸收峰; 实验发现, MnP-PGMA与小分子锰卟啉类似, 在Q发射带没有荧光发射.  相似文献   

14.

Enzymes are gradually increasingly preferred over chemical processes, but commercial enzyme applications remain limited due to their low stability and low product recovery, so the application of an immobilization technique is required for repeated use. The aims of this work were to produce stable enzyme complexes of cross-linked xylanase on magnetic chitosan, to describe some characteristics of these complexes, and to evaluate the thermal stability of the immobilized enzyme and its reusability. A xylanase was cross-linked to magnetite particles prepared by in situ co-precipitation of iron salts in a chitosan template. The effect of temperature, pH, kinetic parameters, and reusability on free and immobilized xylanase was evaluated. Magnetization, morphology, size, structural change, and thermal behavior of immobilized enzyme were described. 1.0?±?0.1 μg of xylanase was immobilized per milligram of superparamagnetic chitosan nanoparticles via covalent bonds formed with genipin. Immobilized xylanase showed thermal, pH, and catalytic velocity improvement compared to the free enzyme and can be reused three times. Heterogeneous aggregates of 254 nm were obtained after enzyme immobilization. The immobilization protocol used in this work was successful in retaining enzyme thermal stability and could be important in using natural compounds such as Fe3O4@Chitosan@Xylanase in the harsh temperature condition of relevant industries.

  相似文献   

15.
含萘酰亚胺基的树枝状化合物具有特殊的发光性能和电学性质,其中一个重要特征是它还具有优异的光诱导电子转移性能,从而引起了人们的广泛关注.近年来科学家们已经合成了多种新型的含萘酰亚胺基树枝状化合物,它们在众多领域具有潜在的应用价值.综述了近年来含萘酰亚胺基的树枝状化合物的研究进展,介绍了部分树枝状萘酰亚胺基化合物的合成及其应用,这些化合物由于其独特的结构特点而具有特殊的性能,在化学传感器、光捕获天线材料、有机电致发光器件、药物传输、环境污染检测等领域具有重要的应用价值.最后,展望了此类化合物良好的应用前景.  相似文献   

16.
高分子担载卟啉及其金属络合物研究进展   总被引:2,自引:0,他引:2  
本文介绍了高分子担载卟啉及其金属络合物在模拟细胞色素P-450,光学灭菌材料,阴离子载体及光敏化学材料等领域的最新研究进展。  相似文献   

17.
We report a new family of hierarchical hybrid catalysts comprised of horseradish peroxidase (HRP)–magnetic nanoparticles for advanced oxidation processes and demonstrate their utility in the removal of phenol from water. The immobilized HRP catalyzes the oxidation of phenols in the presence of H2O2, producing free radicals. The phenoxy radicals react with each other in a non‐enzymatic process to form polymers, which can be removed by precipitation with salts or condensation. The hybrid peroxidase catalysts exhibit three times higher activity than free HRP and are able to remove three times more phenol from water compared to free HRP under similar conditions. In addition, the hybrid catalysts reduce substrate inhibition and limit inactivation from reaction products, which are common problems with free or conventionally immobilized enzymes. Reusability is improved when the HRP–magnetic nanoparticle hybrids are supported on micron‐scale magnetic particles, and can be retained with a specially designed magnetically driven reactor. The performance of the hybrid catalysts makes them attractive for several industrial and environmental applications and their development might pave the way for practical applications by eliminating most of the limitations that have prevented the use of free or conventionally immobilized enzymes.  相似文献   

18.
Carbon nanotube (CNT), a well-known carbon-based nanomaterial has drawn much attention in many application fields including chemistry in the last few decades. Many researchers and scientists have shown huge interest to improve the extraction methodologies and adopt their applications in combination with chromatography technique. With respect to this, the exceptional applications of CNTs have been introduced as extraction sorbent due to their excellent inborn physical and chemical properties. In particular, CNTs have consistently been used as adsorbents in various techniques including solid-phase micro-extraction, solid-phase extraction, micro dispersive slid phase extraction, magnetic dispersive solid phase extraction, analytes enrichment, sample fractionation and clean-up as well as support for many derivatization reactions. Many research papers have discussed the successful use of CNTs to overcome the limitations of the extraction techniques due to their excellent sorbent capacity. In addition, considering the clear need to make chromatographic technique more successful, the applications of CNTs have been reported in the literatures in details as stationary and pseudo-stationary phases for the separation and extraction of challenging compounds. Because of the higher thermal and chemical stability, CNTs have been anticipated as stationary phase modifier for chromatographic applications to avoid bleeding of the columns and enable the analysis even at very high temperature (1200 °C). In liquid chromatography CNTs have primarily been used in combination with other packing materials (silica) and sometimes incorporated in a porous polymeric monolith. Therefore, the recent utilizations of CNTs as extraction materials and stationary phases have been illustrated in the current review and a table listing the details applications of CNTs in aforementioned field is provided as well. We believe that the review will help researcher to gain vast knowledge about application of carbon nanotubes in the field of separation chemistry.  相似文献   

19.
Three new porphyrin free bases have been synthesised and their interaction with the mitochondrial enzyme Ferrochelatase has been studied. The model compound for type IX porphyrins is the best substrate for Ferrochelatase so far studied, whereas the model compound for type I porphyrins is the only compound of this type to act as a substrate for this enzyme. The model compound for type III porphyrins is not a substrate, but does act as a competitive inhibitor.The 1H NMR spectra of the new compounds in their dimethyl diester form differ substantially from the spectra of their zinc(II)bis-pyrrolidine adducts, showing that aggregation is taking place. The results for the α-meso and γ-meso protons in particular are unusual and indicate that aggregation is taking place anomalously, with electronic effects dominating steric effects.  相似文献   

20.
卟啉超分子的组装合成及其应用新进展   总被引:3,自引:0,他引:3  
卟啉超分子已被广泛地用于光学、催化、仿生等方面的研究,部分研究成果已获得实际应用.本文综述了卟啉超分子在组装合成及应用方面的新进展,包括基于不同结构卟啉砌块的新型二维与三维超分子的构筑以及卟啉超分子在光学、催化和分子识别等方面的应用.  相似文献   

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