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1.
<正> 光敏氧化效率是由敏化剂分子吸收光量子数及其产生单重态氧的量子产率决定的,这要求敏化剂的吸收光谱同光源的发射光谱很好地匹配。本文报道竹红菌甲素匹配高压钠灯有效地产生单重态氧,高效光敏氧化一系列具有不同反应活性的底物,成为单重态氧化学中一个新的光敏氧化体系。  相似文献   

2.
用电子自旋共振(ESR)方法研究类卟啉稀土配合物([CO2H-APPC)Gd]Cl2)光敏产生单重态氧的II型机制。利用2,2, 6, 6-四甲基哌啶(TEMP)对单重态氧的捕捉, 测定所生成的氮氧自由基的ESR信号, 经加NaN3和CD3OD的实验, 证实了([CO2H-APPC)Gd]Cl2)光敏作用可有效地产生单重态氧, 并观察到在实验所用的浓度范围内, 随着光敏剂浓度加大, 生成的单重态氧也增加, 同时比较了几种不同稀土离子配合物产生单重态氧的差别。结合氧的消耗和氮氧自由基的ESR线宽变化对氧浓度的依赖性, 证明了类卟啉稀土配合物光敏化生成单态氧的II型反应在光动力光疗中起关键作用。  相似文献   

3.
用电子自旋共振(ESR)方法研究类卟啉稀土配合物([CO2H-APPC)Gd]Cl2)光敏产生单重态氧的II型机制。利用2,2, 6, 6-四甲基哌啶(TEMP)对单重态氧的捕捉, 测定所生成的氮氧自由基的ESR信号, 经加NaN3和CD3OD的实验, 证实了([CO2H-APPC)Gd]Cl2)光敏作用可有效地产生单重态氧, 并观察到在实验所用的浓度范围内, 随着光敏剂浓度加大, 生成的单重态氧也增加, 同时比较了几种不同稀土离子配合物产生单重态氧的差别。结合氧的消耗和氮氧自由基的ESR线宽变化对氧浓度的依赖性, 证明了类卟啉稀土配合物光敏化生成单态氧的II型反应在光动力光疗中起关键作用。  相似文献   

4.
本文合成了3种轴向配位的萘酞菁硅配合物(NcSiR2,R=Cl、OH、OCH3),研究了3种萘酞菁配合物激发态性质,研究结果表明,随着轴向取代基推电子能力的逐渐增强,激发单线态寿命和激发三线态寿命逐渐缩短,产生单线态氧的能力逐渐下降。  相似文献   

5.
单重态氧化学 V: 二烷基取代酚光敏氧化反应的研究   总被引:2,自引:0,他引:2  
本文研究了2,6-二甲基酚、2,4-二甲基酚及3,4-二甲基酚的光敏氧化反应, 应用竹红菌甲素作敏化剂匹配高压钠灯首次提供了二烷基取代酚同单重态氧发生化学反应的例证, 并测定了它们对单重态氧的反应速度常数, 其反应活性顺序为:BHT>2,4-DMP>3,4-DMP>DBP>2,6-DMP.二烷基取代酚同单重态氧可能通过1,4-环加成反应的机理, 再经重排生成最终产物.  相似文献   

6.
研究了13种钴(Ⅱ)-氨基酸配合物的可逆氧合性能和催化性能之间的关系,通过配合物活化分子氧(O2)氧化环己烯考察其催化性能.结果表明,13种钴(Ⅱ)-氨基酸配合物均具有不同程度的可逆氧合性能和催化活性.配合物完成一个可逆吸氧周期的用时越短,其可逆氧合性能越好,催化性能越差;相反,吸氧周期长及可逆氧合性能差的配合物其催化性能却更好.另外,在对配合物不同配比的研究中发现,Co(Ⅱ)与氨基酸的摩尔比为1∶3(或1∶2)饱和配位时,可逆吸氧性能较好,但其催化性能较差,环己烯转化率较低;在1∶1型配位不饱和时,吸氧的可逆性较差,但催化性能优良,环己烯的转化率可达82.5%.结合结构分析和理论计算的结果可知,不同钴(Ⅱ)-氨基酸配合物的氧合可逆性和催化性能的差异,主要归因于氨基酸配体的残基与Co(Ⅱ)的结合能力的不同.氨基酸配体的残基与Co(Ⅱ)的结合能力越好,越有利于配合物由高自旋态向低自旋态转化,并与O2可逆结合,不利于烯烃基的取代,配合物表现出较差的催化性能,反之亦然.  相似文献   

7.
研究了13种钴(Ⅱ)-氨基酸配合物的可逆氧合性能和催化性能之间的关系, 通过配合物活化分子氧(O2)氧化环己烯考察其催化性能. 结果表明, 13种钴(Ⅱ)-氨基酸配合物均具有不同程度的可逆氧合性能和催化活性. 配合物完成一个可逆吸氧周期的用时越短, 其可逆氧合性能越好, 催化性能越差; 相反, 吸氧周期长及可逆氧合性能差的配合物其催化性能却更好. 另外, 在对配合物不同配比的研究中发现, Co(Ⅱ)与氨基酸的摩尔比为1:3(或1:2)饱和配位时, 可逆吸氧性能较好, 但其催化性能较差, 环己烯转化率较低; 在1:1型配位不饱和时, 吸氧的可逆性较差, 但催化性能优良, 环己烯的转化率可达82.5%. 结合结构分析和理论计算的结果可知, 不同钴(Ⅱ)-氨基酸配合物的氧合可逆性和催化性能的差异, 主要归因于氨基酸配体的残基与Co(Ⅱ)的结合能力的不同. 氨基酸配体的残基与Co(Ⅱ)的结合能力越好, 越有利于配合物由高自旋态向低自旋态转化, 并与O2可逆结合, 不利于烯烃基的取代, 配合物表现出较差的催化性能, 反之亦然.  相似文献   

8.
本文研究了2,6-二甲基酚、2,4-二甲基酚及3,4-二甲基酚的光敏氧化反应, 应用竹红菌甲素作敏化剂匹配高压钠灯首次提供了二烷基取代酚同单重态氧发生化学反应的例证, 并测定了它们对单重态氧的反应速度常数, 其反应活性顺序为:BHT>2,4-DMP>3,4-DMP>DBP>2,6-DMP.二烷基取代酚同单重态氧可能通过1,4-环加成反应的机理, 再经重排生成最终产物.  相似文献   

9.
采用激光闪光光解技术测定了系列八烷氧基萘酞菁锌配合物ZnNc(OR)8(R=C4H9,C8H17,C12H25)激发三重态的寿命,研究了该系列化合物光敏化产生单重态氧的能力和对HL60癌细胞的光动力活性,并探讨了它们作为光敏剂在肿瘤光动力治疗中的光敏反应机制。  相似文献   

10.
镨竹红菌甲素配合物对光敏氧化反应的抑制作用   总被引:1,自引:0,他引:1  
在镨离子存在下,竹红菌甲素诱导的9,10-DPA光敏氧化被抑制的过程表明,甲素的瞬时荧光可被镨离子猝灭,其荧光寿命不随猝灭剂浓度的变化而改变,表现出静态猝灭的特征;甲素热活化的延迟荧光可被镨甲素配合物有效地猝灭,延迟荧光寿命由无猝灭剂下的1744±50ns缩减到有O_2存在下的700±50ns和有Pr~(3+)存在下的500±50ns,具有动态猝灭特征。比较单重态氧的氧化产物和反应底物的双倒数关系表明,错甲素配合物既可猝灭甲素激发三重态,也可猝灭单重态氧,从而有效地抑制光敏氧化反应。  相似文献   

11.
轴向为烷氧基配位的萘酞菁硅配合物的光谱及光稳定性   总被引:1,自引:0,他引:1  
轴向为烷氧基配位的萘酞菁硅配合物的光谱及光稳定性;萘酞菁硅;轴向烷氧基配位;光谱性质;光稳定性  相似文献   

12.
Abstract— The photoproperties of derivatized silicon naphthalocyanine have been investigated in order to assess its potential as a photosensitizer for photo-dynamic therapy. Absorption, fluorescence, phosphorescence and triplet absorption spectra have been measured. Oxygen quenching of the triplet state formed singlet oxygen in significant yields.  相似文献   

13.
在二氯硅酞菁轴向位置引入硝基芳基苄醚树枝配体是一种减少酞菁配合物聚集体形成,提高其光动力活性的有效方法。本文采用UV/Vis、稳态和瞬态荧光光谱法比较了1-3代硝基芳基苄醚树枝配体轴向取代硅(Ⅳ)酞菁的光物理性质。研究结果表明,随着轴向树枝配体代数的增加,Q带最大吸收峰强度增大,酞菁核荧光强度增强,荧光量子产率降低,荧光寿命增长。研究结果将为开发轴向取代硅(Ⅳ)酞菁配合物作为新型光敏剂提供重要的理论依据。  相似文献   

14.
The excited states of transition metal complexes with a wide range of photochemical and photophysical properties have attracted considerable attention recently. However, the luminescence property is affected by concentration quenching in practical applications. Aggregation-induced emission (AIE) is an effective strategy to solve this problem. In this work, a new imidazole-based N^C^N Pt(Ⅱ) metal complex, PtP2IM, with the AIE property was synthesized and characterized according to its single crystal structure. Under visible light, we found that the metal complex undergoes a photo-oxidation reaction with the generation of a new red-emitting, imidazole/benzoylimino-based N^C^N' Pt(Ⅱ) metal complex, PtPIMO, which was also confirmed by the crystal structure. Additional studies on the reaction process and conditions of this photo-oxidation reaction were conducted using different methods, such as NMR, UV-Vis spectroscopy, and so on. The experimental results showed that the change from PtP2IM to PtPIMO gradually occurred, and the new photochemical reaction was finally concluded as the C=C double bond in either one of the two imidazole rings of the PtP2IM complex was attacked by oxygen to generate a new complex, PtPIMO, under photoirradiation in air. Electron paramagnetic resonance (EPR) measurements demonstrated the production of singlet oxygen, which is an excited state of oxygen with a high energy. Through the density functional theory (DFT) calculations, the electronic transition was determined to be a metal to ligand charge transfer (MLCT) in which more energy could transfer from the triplet excited state of PtP2IM to the ground-state oxygen to generate singlet oxygen (1O2) with a high intersystem crossing (ISC) efficiency due to the spin-orbit coupling of Pt heavy atoms. When large amounts of the singlet capture agent, triethylenediamine (TEDA) were added, the previously observed UV-Vis spectra change that corresponded to the photo oxidation reaction was not detected, which means that the photo-oxidation reaction observed in the case of PtP2IM was because of the oxidation by singlet oxygen. When oxygen was removed, excellent photostability and an obvious aggregation-induced emission (AIE) were observed for PtP2IM with the luminescent quantum efficiency of PtP2IM in solution and as a film at ~3% and ~20%, respectively. Based on the packing structure in the crystal, we observed that there were no strong intermolecular interactions, such as π-π or Pt-Pt interactions. Additionally, many intermolecular CH―π bonds between the two adjacent PtP2IM molecules were observed, which could effectively limit the rotation of the peripheral phenyl group linked to the imidazole ring. Thus, the AIE property of PtP2IM was attributed to the restricted intramolecular rotation (RIR) effect of the peripheral flexible phenyl group that was linked to the imidazole ring in the solid state in which the vibration of multiple peripheral benzene rings was effectively suppressed. This decreased the non-radiative transition rate and induced the high luminescent quantum efficiency. In the aggregation state, PtP2IM still demonstrated the photo-oxidation reaction by singlet oxygen. Thus, we report a new Pt(Ⅱ) metal complex, PtP2IM, with the AIE property that can undergo an uncommon photo-oxidation reaction in the photo-excitation state. This work aimed to elucidate the basic photochemical and photophysics of transition metal complexes with the AIE property.  相似文献   

15.
Abstract— In order to elucidate the mechanism of the photo-oxidation of lysozyme sensitized by methylene blue this enzyme was oxidized by singlet oxygen generated by a high–frequency discharge in gaseous oxygen. The action of singlet oxygen on lysozyme gives products identical with those obtained upon dye-sensitized oxidation with respect to their affinity to chitin, their amino acid content, their UV spectra and their enzymic activity. It is concluded that photo-oxidation of lysozyme in the presence of methylene blue proceeds according to the singlet-oxygen mechanism.  相似文献   

16.
Photo-oxidation of proteins and its role in cataractogenesis.   总被引:8,自引:0,他引:8  
Proteins comprise approximately 68% of the dry weight of cells and tissues and are therefore potentially major targets for photo-oxidation. Two major types of processes can occur with proteins. The first of these involves direct photo-oxidation arising from the absorption of UV radiation by the protein, or bound chromophore groups, thereby generating excited states (singlet or triplets) or radicals via photo-ionisation. The second major process involves indirect oxidation of the protein via the formation and subsequent reactions of singlet oxygen generated by the transfer of energy to ground state (triplet) molecular oxygen by either protein-bound, or other, chromophores. The basic principles behind these mechanisms of photo-oxidation of amino acids, peptides and proteins and the potential selectivity of damage are discussed. Emphasis is placed primarily on the intermediates that are generated on amino acids and proteins, and the subsequent reactions of these species, and not the identity or chemistry of the sensitizer itself, unless the sensitizing group is itself intrinsic to the protein. A particular system is then discussed--the cataractous lens--where UV photo-oxidation may play a role in the aetiology of the disease, and tryptophan-derived metabolites act as UV filters.  相似文献   

17.
《化学:亚洲杂志》2017,12(18):2447-2456
Pristine BODIPY compounds have negligible efficiency to generate the excited triplet state and singlet oxygen. In this report, we show that attaching a good electron donor to the BODIPY core can lead to singlet oxygen formation with up to 58 % quantum efficiency. For this purpose, BODIPYs with meso ‐aryl groups (phenyl, naphthyl, anthryl, and pyrenyl) were synthesized and characterized. The fluorescence, excited triplet state, and singlet oxygen formation properties for these compounds were measured in various solvents by UV/Vis absorption, steady‐state and time‐resolved fluorescence methods, as well as laser flash photolysis technique. In particular, the presence of anthryl and pyrenyl showed substantial enhancement on the singlet oxygen formation ability of BODIPY with up to 58 % and 34 % quantum efficiency, respectively, owing to their stronger electron‐donating ability. Upon the increase in singlet oxygen formation, the fluorescence quantum yield and lifetime values of the aryl‐BODIPY showed a concomitant decrease. The increase in solvent polarity enhances the singlet oxygen generation but decreases the fluorescence quantum yield. The results are explained by the presence of intramolecular photoinduced electron transfer from the aryl moiety to BODIPY core. This method of promoting T1 formation is very different from the traditional heavy atom effect by I, Br, or transition metal atoms. This type of novel photosensitizers may find important applications in organic oxygenation reactions and photodynamic therapy of tumors.  相似文献   

18.
Abstract— –A study has been made of the effects of a series of nucleotides upon the electronic excited states of lumiflavin in order to determine the mechanism of their flavin-sensitized oxidation. A hydrogen-abstraction mechanism is ruled out, because if the nucleotide acts as a reducing agent for the excited dye molecules, it should increase the rate of reduction of the dye when the irradiation is carried out in the absence of oxygen. However, each of the nucleotides studied was found to reduce the rate of anaerobic photoreduction. While oxidation by an intermediate species such as the dye 'moloxide' or singlet oxygen is not entirely ruled out, our evidence suggests that the initial reaction is between the nucleotide and the flavin triplet. This results in a loss of the triplet excitation energy and is a very efficient reaction, guanosine monophosphate shewing 36 per cent of the triplet quenching efficiency of potassium iodide. The relative rates of reaction of the nucleotides with the flavin triplet exactly parallels their quantum yields of sensitized photo-oxidation. The formation of ground-state complexes between flavin and nucleotide and the participation of the singlet excited state of the flavin are not considered to be important.  相似文献   

19.
We design and synthesize a series of novel silicon(IV)phthalocyanines(SiPcs,1a,2a,1b,and 2b)axially conjugated with arginine or arginine-containing oligopeptides(Arg-Arg,Cys-Arg,Cys-Arg-Arg)through ester or ether linkers to demonstrate the effects of substituents and coupling ways on the spectral behaviors and photodynamic activities.The ester-linked SiPcs(1a and 2a)show slight red-shift,higher fluorescence emission and singlet oxygen generation compared to the ether-linked analogues(1b and 2b)due to the stronger electron-withdrawing ability of the ester group,suggesting that electronic effect of the linkers plays an important role in their spectral properties.The introduction of arginine could effectively reduce the aggregation of phthalocyanine in aqueous solutions.With higher cellular uptake and plasma membrane localization ability,1b and 2b exhibit significantly higher photocytotoxicity against both HepG2 and Hela cells.Moreover,the in vivo fluorescence imaging suggests that 2b is the most specific toward H22 tumor-bearing ICR mice,and it shows efficient tumor growth inhibition with the tumor inhibition rate up to 93%.Thus,this work would provide a new reference for the development of phthalocyanine-based photosensitizers.  相似文献   

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