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1.
选择N-正丁基咔唑作为电子给体,芴酮作为桥键,苯甲酸作为受体,通过桥键芴酮与给体和受体连接位置的改变,设计合成了两个咔唑染料4-(6-(N-正丁基咔唑-3-基)-9-氧-9H-芴-3-基)苯甲酸(HXL-3W)和4-(7-(N-正丁基咔唑-3-基)-9-氧-9H-芴-2-基)苯甲酸(HXL-4Z).对咔唑染料的光谱性能、电化学性能和光电转换性能进行了研究,并运用密度泛函理论(DFT)方法对其几何结构和紫外-可见光谱进行了优化计算.结果表明, HXL-4Z的吸收光谱呈现两个明显的ππ*跃迁吸收峰和一个较小的对应于分子内电荷转移的吸收峰,而HXL-3W的吸收光谱则仅呈现一个ππ*跃迁吸收峰,且摩尔吸光系数远小于HXL-4Z.可能是HXL-3W分子结构中给体和受体距离较近,张力较大,导致较差的分子平面性和分子内电荷转移.因而HXL-4Z的光吸收能力和电子注入效率较优,从而具有较好的光电转换效率(2.03%) (短路电流(JSC) = 3.88 mA·cm-2,开路电压(VOC) = 700 mV,填充因子(FF) = 0.75).  相似文献   

2.
为了选择性检测小分子生物硫醇,以具有优良荧光性能的喹啉酮为荧光团,依据依布硒啉中Se—N键易与硫醇分子反应的性质,将喹啉酮组块(E)-3-(5-巯基-1,3,4-恶二唑-2-基)-N-(4-甲基-2-氧代-1,2-二氢喹啉-7-基)丙烯酰胺(MQ5)与依布硒啉2-(4-溴苯基)苯并[d][1,2]硒唑-3(2H)-酮(SQ6)对接,设计合成了一种新型荧光探针(E)-N-(4-甲基-2-氧代-1,2-二氢喹啉-7-基)-3-(5-((4-(3-氧代苯并[d][1,2]硒烯唑-2 (3H)-基)苯基)硫基)-1,3,4-噁二唑-2-基)丙烯酰胺(MNQ)。 通过傅里叶变换红外光谱(FT-IR)、核磁共振波谱仪(NMR)和高分辨质谱(HRMS)和荧光光谱等测试手段对其进行了结构表征,探究了其荧光性能。 结果表明,MNQ对谷胱甘肽(GSH)有明显的荧光猝灭,在其他氨基酸等干扰时,探针具有良好的抗干扰能力,可作为识别检测GSH的荧光猝灭型探针。 检测限为2.99×10-8 mol/L,响应时间在35 s可完成,有望作为检测谷胱甘肽的荧光探针。  相似文献   

3.
江峰  王志祥  史益强  瞿金清 《合成化学》2011,19(4):465-468,479
分别以咔唑和2-羟基咔唑为原料,通过Sonagashira偶联反应和N-烷基化反应合成了6个新型的咔唑取代乙炔化合物:2-乙炔基-9-苄基咔唑,2-乙炔基-9-正丁基咔唑,2-乙炔基-9-正己基咔唑,3-乙炔基-9-苄基咔唑,3-乙炔基-9-正丁基咔唑和3-乙炔基-9-{4·[4·(硝基)苯基偶氮苯]氧}亚丁基咔唑,其...  相似文献   

4.
合成了一类自主体蓝绿色磷光铱(Ⅲ)配合物(CzPhBI)2Ir(tfmptz), (CzPhBI)2Ir(tfmpptz)和(CzPhBI)2Ir(fpptz)[其中CzPhBI, tfmptz, tfmpptz和fpptz分别为9-[6-(2-苯基-1-苯并咪唑基)己基]-9-咔唑、 2-(5-三氟甲基-1,2,4-三唑基)吡啶、 2-(5-[4-(三氟甲基)苯基]-1,2,3-三唑)吡啶和2-[5-(4-氟苯基)-1,2,3-三唑]吡啶]. 通过核磁共振氢谱和氟谱及元素分析确定其分子结构, 并对其光物理性能进行了研究. 利用该类配合物作为单发光层制备了器件结构为氧化铟锡(ITO)│N,N'-二苯基-N,N'-二(1-萘基)-1,1'-联苯-4,4'-二胺(NPB)(30 nm)│4,4'-N,N'-二咔唑基联苯(CBP)(15 nm)│Ir配合物(30 nm)│1,3,5-三(1-苯基-1H-苯并咪唑-2-基)苯(TBPI)(30 nm)│LiF(1 nm)│Al(100 nm)的电致发光器件, 其最大亮度为6913 cd/m2, 最大发光效率达13.9 cd/A.  相似文献   

5.
以噻二唑-2-氨甲基酚(1)为原料, 与异硫氰酸苯酯反应, 以中等到良好的产率得到噻二唑基N-苯基取代硫脲类化合物(3a~3i); 而化合物1与活性较高的N,N-二甲胺基硫代甲酰氯反应, 则可以得到—NH和—OH同时反应的含有N,N-二甲基硫脲和N,N-二甲基硫代氨基甲酸芳酯官能团的产物. 利用核磁共振、 红外光谱以及高分辨质谱等手段对产物结构进行了表征.  相似文献   

6.
含咔唑和偶氮苯的乙炔衍生物的合成   总被引:1,自引:0,他引:1  
采用Sonagashira偶联反应和N-烷基化反应合成了含有咔唑和偶氮苯的乙炔衍生物:3-乙炔基-9-(4-[4-(硝基)苯基偶氮苯]氧)亚丁基咔唑3.其结构通过IR,1H NMR,13C NMR,元素分析和X-射线单晶衍射法测定.标题化合物属单斜晶系,P21/c空间群;a=9.238(3),b=28.240(8),c...  相似文献   

7.
张会丽  崔红艳  黄文龙  胡国强 《应用化学》2020,37(12):1426-1431
为进一步发现提高氟喹诺酮抗肿瘤活性的有效结构修饰策略,基于片段药物设计原理,通过喹啉-4(1H)-酮与芳香醛缩合反应合成了(S)-6-氟-7-(4-甲基-哌嗪-基)-8,1-(1,3-氧丙基)-3-芳苄叉基-2,3-二氢-喹啉-4(1H)-酮(3a-3l)目标化合物。 体外抗肿瘤活性结果表明,所合成的12个新化合物的活性均强于母体左氧氟沙星,其中F、Cl、Br取代的卤苯基化合物对人肝癌细胞株(SMMC-7721)和人胰腺癌细胞株(Capan-1)的半数抑制浓度(IC50)低于其它取代基化合物,尤其是氯苯基化合物(3k)与对照抗肿瘤药阿霉素活性相当。 为此,芳苄叉基替代C-3羧基构建的3-芳苄叉基-喹啉-4-酮化合物有助于提高氟喹诺酮的抗肿瘤活性,提示α,β-不饱和酮片段作为一个有发展前景的氟喹诺酮的候选修饰基团值得进一步发展。  相似文献   

8.
在溶剂热反应条件下, 用预先合成的乳酸衍生物(R)-H2CBA和(S)-H2CBA分别与含氮辅助配体(E)-1,2-二(4-吡啶基)乙烯(DPEE)和1,4-二(1H-咪唑-1-基)苯(1,4-DIB)组合, 制备出2对不同结构的单一手性配位聚合物[Cd2((R)-CBA)2(DPEE)(H2O)2]n(1-D), [Cd2((S)- CBA)2(DPEE)(H2O)2]n(1-L), [Cd((R)-CBA)(1,4-DIB)]·H2O(2-D)和[Cd((S)-CBA)(1,4-DIB)]·H2O(2-L). 其中1-D和1-L是由梯形Cd-CBA链和DPEE配体连接成的二维框架结构; 而2-D和2-L是三维超分子框架结构, 包含3种不同类型的对映手性螺旋链. 对上述化合物进行了粉末X射线衍射、 热重分析和圆二色谱分析, 并对其荧光性质进行了讨论.  相似文献   

9.
喻艳华  付成 《化学研究》2014,(5):482-487
研制了一种用于灵敏、快速地检测溶液中的氟离子的基于苯并噻二唑衍生物的荧光传感器.4,7-二溴-2,1,3-苯并噻二唑与三甲基硅基乙炔通过Sonogashira偶联反应得到二取代的三甲基硅基乙炔苯并噻二唑;将该化合物用于检测氟离子,分析了检测灵敏度和选择性.结果表明,在乙腈和水(V/V=9∶1)混合溶液中,合成的苯并噻二唑衍生物的最大发射波长峰值为455nm(激发波长为376nm);就所测试的F-,Cl-,Br-,I-,ClO4-,AcO-,NO3-,H2PO3-,CN-和HSO4-等阴离子而言,仅F-可以脱除三甲基硅保护基使得该化合物荧光最大发射波长蓝移至435nm,荧光强度降低60%,且最低检测限可达4.5×10-8 mol/L.因此,二取代的三甲基硅基乙炔苯并噻二唑应用于氟离子检测具有很好的灵敏度和选择性.  相似文献   

10.
采用非线性透过率法测定了多枝[1,3,4]-噁二唑衍生物的双光子吸收性质. 测定了化合物的单光子荧光光谱和双光子荧光光谱, 在800 nm波长的激光激发下, 9-乙基-3,6-双{5-(4-叔丁基苯基)-[1,3,4] 噁二唑-2-苯乙烯基}-咔唑(3)和三-{5-(4-叔丁基苯基)-[1,3,4] 噁二唑-2-苯乙烯基-4-苯基}-胺(4)能够发出很强的蓝色和黄绿色双光子上转换荧光, 荧光峰分别位于485和547 nm. 这些多枝结构化合物的双光子吸收截面较大(数值超过104 GM), 并具有很强的光限幅效应. 多枝分子中重复单元的推拉电子结构和协同效应有效地增强了分子的双光子吸收性质.  相似文献   

11.
通过Suzuki反应合成得到了一种可溶液加工的蒽醌/芴类双极性荧光材料2-蒽醌基-9, 9'-二异辛基芴(FAA),利用紫外吸收光谱和荧光发射光谱对其光物理性质进行了初步研究,并采用密度泛函理论计算方法分析了分子光物理性质的本质。通过单载流子器件的性能测试,证实了FAA具有较好的双极性传输特性。进而研究了该材料的电致发光性能,将其掺杂于主体材料1, 3-双(9-咔唑基)苯(mCP)中,利用旋涂法制备了结构为ITO(氧化铟锡)/PEDOT:PSS(聚3, 4-乙撑二氧噻吩:聚苯乙烯磺酸盐)/mCP:FAA/TmPyPb(1, 3, 5-三[(3-吡啶基)-3-苯基]苯)/LiF/Al的有机发光二极管。器件的启亮电压约为7.4 V,最大亮度为1719 cd·m-2,最大电流效率和最大功率效率分别为1.66 cd·A-1和0.56 lm·W-1;同时,结合器件各功能层的能级结构图,探讨了其电致发光机制。  相似文献   

12.
Here, 9,9,9'-tris(4-butoxyphenyl)-9H-9'H-2,2'-difluorene(DF) was synthesized as a reference for compa-rison, and diphenyl sulfone and triphenylphosphine oxygen were introduced to the 9-position of fluorene through a C-H coupling reaction to produce two fluorene-based oligomers 9',9'-[sulfonylbis(4,1-phenylene)]bis[9,9,9'-tris-(4-butoxyphenyl)-9H,9'H-2,2'-bifluorene](DF)2SO2 and phenylbis(4-{9,9',9'-tris(4-butoxyphenyl)-9H,9'H-[2,2'-bif-luorene]-9-yl}phenyl)phosphine oxide[(DF)2PO]. Solid powders of all the three compounds exhibit excellent thermal stability with thermal temperature at 5% mass loss of 375, 429 and 383℃ for (DF)2SO2, (DF)2PO and DF. In addition, owing to the distorted molecular structure and weak electron-absorbing ability of the acceptor, (DF)2SO2 and (DF)2PO do not have obvious intramolecular charge transfer characteristics, and exhibit stable localized 394 nm/375 nm fluorescence emission peaks in different polar solvents. The absolute luminescence quantum efficiencies of (DF)2SO2, (DF)2PO and DF solid powders are 20.83%, 10.03% and 59.46%. Compound DF has the highest quantum yield as an electron donor. The chromaticity coordinates of the blue OLED devices based on DF and DF2SO2 fabricated by solution spin coating were (0.19, 0.10) and (0.19, 0.11), which were closest to the deep blue region, and the corresponding maximum external quantum efficiencies are 1.45% and 0.87%, respectively, which are higher than that of (DF)2PO(0.25%) and consistent with the difference in the solid-state quantum efficiency between them.  相似文献   

13.
彭俊彪 《高分子科学》2011,29(5):609-614
Efficient deep-red organic light-emitting diodes(OLEDs) were investigated based on the blend of poly[2- methoxy-5-(2’-ethyl-hexyloxy)-l,4-phenylene vinylene](MEH-PPV) with 4,7-bis(5-(7-(9H-carbazol-9-yl)-9,9-dioctyl-9H-fluoren -2-yl)thiophen-2-yl)benzo[c][1,2,5]thiadiazole(compound 1).By optimizing the blend ratio,the turn-on voltage of the devices was significantly reduced from 4.9 V to 2.4 V.A highest external quantum efficiency of 2.56%was achieved at a blend ratio of 95:5(wt) for compound 1:MEH-PPV.The CIE coordinate was measured to be(0.70,0.30),with the luminescence peak at around 680 nm.Based on experimental observations the improvement mechanism is described.  相似文献   

14.
设计并合成了两种基于5,6-二氟苯并噻二唑和双噻吩丙烯腈单元的D-A型共轭聚合物,聚[(5,6-二氟-苯[c][1,2,5]噻二唑-4,7-基)-交替-((E)-2,3-双(3'-(2-辛基十二烷基)-(2,2'-双噻吩)-5,5'-基)丙烯腈)](DFBT812)和聚[(5,6-二氟-苯[c][1,2,5]噻二唑-4,7-基)-交替-((E)-2,3-双(3'-(2-癸基十四烷基)-(2,2'-双噻吩)-5,5'-基)丙烯腈)](DFBT1014)作为聚合物太阳电池的给体材料。通过侧链工程,引入了2-辛基十二烷基和2-癸基十四烷基侧链实现对聚合物的溶解性,结晶性以及共混膜形貌的调节。研究结果表明,共轭聚合物DFBT812与PC_(61)BM的共混膜表现出更好的相分离尺度,能够促进载流子的传输和抽取。基于共轭聚合物DFBT812的太阳电池器件取得了0.87 V的开路电压和6.25%的能量转换效率。除此之外,基于DFBT812的聚合物太阳电池器件在活性层厚度为220 nm时仍然表现出6%的能量转换效率。  相似文献   

15.
According to the DFT calculations, [1,2,5]thiadiazolo[3,4-c][1,2,5]thiadiazole (4), [1,2,5]selenadiazolo[3,4-c][1,2,5]thiadiazole (5), 3,4-dicyano-1,2,5-thiadiazole (6), and 3,4-dicyano-1,2,5-selenadiazole (7) have nearly the same positive electron affinity (EA). Under the CV conditions they readily produce long-lived π-delocalized radical anions (π-RAs) characterized by EPR. Whereas 4 and 5 were chemically reduced into the π-RAs with thiophenolate (PhS(-)), 6 did not react and 7 formed a product of hypercoordination at the Se center (9) isolated in the form of the thermally stable salt [K(18-crown-6)][9] (10). The latter type of reactivity has never been observed previously for any 1,2,5-chalcogenadiazole derivatives. The X-ray structure of salt 10 revealed that the Se-S distance in the anion 9 (2.722 ?) is ca. 0.5 ? longer than the sum of the covalent radii of these atoms but ca. 1 ? shorter than the sum of their van der Waals radii. According to the QTAIM and NBO analysis, the Se-S bond in 9 can be considered a donor-acceptor bond whose formation leads to transfer of ca. 40% of negative charge from PhS(-) onto the heterocycle. For various PhS(-)/1,2,5-chalcogenadiazole reaction systems, thermodynamics and kinetics were theoretically studied to rationalize the interchalcogen hypercoordination vs reduction to π-RA dichotomy. It is predicted that interaction between PhS(-) and 3,4-dicyano-1,2,5-telluradiazole (12), whose EA slightly exceeds that of 6 and 7, will lead to hypercoordinate anion (17) with the interchalcogen Te-S bond being stronger than the Se-S bond observed in anion 9.  相似文献   

16.
研究了3种发光材料聚芴(PF)、5,5'-双(9,9-二辛基芴)-2,2'-联噻吩(F-T-T-F) 和4,7-双(5-(9,9-二丙基芴)噻吩)苯并噻二唑(3FT-BTD) 的固态化学发光。 将这3种材料吸附于滤纸上得到了相应的检测试纸,研究了其与草酰氯蒸气的相互作用。 与溶液体系相比,基于试纸的固态化学发光时间可以延长至8~10 min。 该方法对草酰氯蒸气的检测限较低,分别为0.013 mg/m3(PF)、0.27 mg/m3(F-T-T-F)和1.8 mg/m3(3FT-BTD)。 制备的检测试纸可以反复暴露于草酰氯蒸气中引发化学发光,发光强度没有明显的降低,说明试纸有很好的重复使用性。 由于该试纸对草酰氯有选择性的作用,因此可以对毒性草酰氯气体进行简便的可视化检测。  相似文献   

17.
Bromination of naphtho[1,2-c][1,2,5]thiadiazole ( I ) gives either an addition product, 4,5-dibromo-4,5-dihydronaphtho[1,2-c][1,2,5]thiadiazole ( II ), or a substitution product, 5,6-dibromonaphtho[1,2-c][1,2,5]thiadiazole ( III ), depending on the reaction conditions. Dehydrobromination of II gives 5-bromonaphtho[12-c][1,2,5]thiadiazole ( IV ). Chlorination of I gives the corresponding addition product V or 5-chloronaphtho[1,2-c][1,2,5]thiadiazole ( VI ). Compound VI can also be obtained by dehydrochlorination of V. The nitration of I produces a mixture of isomeric substitution products, 9-nitro VIII and 6-nitronaphtho[1,2-c][1,2,5]thiadiazoles ( VII ).  相似文献   

18.
Two new unusual natural pigments were first isolated from the whole herbs of Selaginella tamariscina. The structure of selaginellin A (1) was established as (R,S)-4-[(4'-hydroxy-3-((4-hydroxyphenyl)ethynyl)biphenyl-2-yl)(4-hydroxyphenyl)methylene]-2,5-cyclohexadien-1-one and selaginellin B (2) as (R,S)-4-[(4'-methoxy-4-(methyl)-3-((4-methoxyphenyl)ethynyl)biphenyl-2-yl)(4-methoxyphenyl)methylene]-2,5-cyclohexadien-1-one, along with four known biflavonoids, amentoflavone (3), hinokiflavone (4), heveaflavone (5), and 7'-O-methylamentoflavone (6). Their chemical structures were elucidated by spectral analysis of electrospray ionization mass spectroscopy (ESI-MS), one-dimensional nuclear magnetic resonance spectroscopy (1D-NMR) and two-dimensional-nuclear magnetic resonance spectroscopy (2D-NMR) including (1)H-NMR, (13)C-NMR, distortionless enhancement by polarization transfer (DEPT) and heteronuclear multiple bond coherence (HMBC), and single-crystal X-ray diffraction techniques.  相似文献   

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