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1.
芴酮与2-萘酚在硫酸和3-巯基丙酸的作用下反应得到化合物螺[二苯并[a,j]氧杂蒽-14,9’-芴]. 采用核磁共振、质谱、红外光谱和元素分析等对该化合物进行了表征,并通过X射线衍射法测得了其晶体结构,确定该化合物是通过二苯并[a,j]氧杂蒽中的含氧六元杂环和芴中的五元环共用一个碳原子形成一个螺环. 利用荧光光谱和热分析等手段对该化合物的性质进行了研究,结果表明其最大荧光发射峰为366 nm,熔点为297 ℃,热分解温度为329 ℃,具有较高的热稳定性.  相似文献   

2.
芴酮与2-萘酚在硫酸和3-巯基丙酸的作用下反应得到化合物螺[二苯并[a,j]氧杂蒽-14,9'-芴]. 采用核磁共振、 质谱、 红外光谱和元素分析等对该化合物进行了表征, 并通过X射线衍射法测得了其晶体结构, 确定该化合物是通过二苯并[a,j]氧杂蒽中的含氧六元杂环和芴中的五元环共用一个碳原子形成一个螺环. 利用荧光光谱和热分析等手段对该化合物的性质进行了研究, 结果表明其最大荧光发射峰为366 nm, 熔点为297 ℃, 热分解温度为329 ℃, 具有较高的热稳定性.  相似文献   

3.
采用钯催化的碳碳偶合反应合成了9-戊基咔唑-3,6-双-(炔苯基-4-甲酸乙酯)(I).进一步研究了化合物I在四氢呋喃和40%四氢呋喃水溶液中的光物理性质,结果显示,化合物I在40%四氢呋喃水溶液中的紫外吸收峰位置与其四氢呋喃溶液相比没有发生明显移动,它在40%四氢呋喃水溶液中的单光子荧光发射峰出现在453 nm,较其在四氢呋喃溶液的发射有42 nm红移,其荧光量子效率为0.44.用波长为660 nm飞秒激光激发时,化合物I在40%四氢呋喃水溶液中的双光子荧光发射最大峰红移至489 nm,其双光子吸收截面值为251GM,比其在四氢呋喃溶液中的截面(151 GM)增强了60%.  相似文献   

4.
为了打破传统荧光材料的聚集荧光淬灭(ACQ)的应用限制,通过共价键连接聚集诱导发光(AIE)分子与平面ACQ分子,可以构建在溶液中和固态下都具有荧光发射特性的化合物。分别通过多步反应合成了带有烷基硫醚的萘酰亚胺衍生物3和连接炔吡啶的四苯乙烯衍生物7。化合物3和化合物7通过酰胺缩合,合成了一种四苯乙烯-萘酰亚胺二联体化合物8,化合物8兼具ACQ和AIE分子的特性。结果表明:溶液状态下化合物8具有蓝色荧光发射,其最大发射峰位于452 nm,固态下为黄绿色荧光,最大发射峰位于487 nm。利用三氟乙酸对其荧光进行调控能够实现CIE色坐标为(0.33, 0.32)的单分子白光发射。  相似文献   

5.
通过Ullmann偶联、Suzuki偶联等反应合成了三种咔唑或二苯胺封端的芴类有机小分子CPhF、CPh_2F和DAF,并通过核磁共振谱~1H NMR和~(13)C NMR对其进行了表征。化合物CPhF和CPh_2F的CH_2Cl_2稀溶液的最大吸收峰位于345nm,发射峰分别位于393和405nm,属于蓝紫色荧光;化合物DAF的CH_2Cl_2稀溶液的最大吸收峰位于364nm,发射峰位于428nm,属于蓝色荧光;化合物CPhF和CPh_2F的玻璃化温度分别为97和111℃,分解温度分别为368和416℃,均具有良好的热稳定性。  相似文献   

6.
水溶性荧光探针2-(4-二羟基硼烷)苯基喹啉-4-羧酸(PBAQA)能实现儿茶酚的选择性识别,但发射波长较短.PBAQA及衍生物通常在285 nm进行荧光发射.本文报道以PBAQA为building block,通过化学合成制备一个新的二硼酸荧光探针.该化合物具有更长的发射波长,发射波长为364 nm.初步荧光活性测试结果表明,该化合物对多巴胺具有一定结合选择性.对寻找具有较长发射波长的硼酸荧光探针,实现探针分子在嗜铬细胞瘤等细胞组织进行荧光成像具有重要意义.  相似文献   

7.
薛云娜  柴生勇  别国军  刘波  甘宁 《化学学报》2008,66(13):1577-1582
合成并全面表征了一种新的蒽烯类化合物9,10-双[2-(1-甲基-1H-吡咯-2-基)乙烯基]蒽(MPVAn). 该化合物具有显著的聚集诱导发光特性. 它在溶液态时几乎不发光, 但在固态时的光致发光强度达到溶液态的数百倍. 为了确定标题化合物的聚集诱导发光机制, 研究了它在不同溶液粘度及温度下的光致发光行为, 结果表明聚集态发光增强是由于分子内转动受阻所致. 它的粉末在420 nm光的激发下发射纯的黄光, 峰值为562 nm, 半峰宽为66 nm. 采用紫外-可见吸收光谱及循环伏安法研究了化合物的电子性能, 其HOMO和LUMO能级分别为-4.78和-2.28 eV.  相似文献   

8.
王彬彬  钱鹰 《有机化学》2014,(1):210-214
一种推拉型A-D-A蒽衍生物9,10-二{4-{2-N,N-二{4-{4-[5-(4-叔丁基苯基)-1,3,4-噁二唑-2]苯乙烯基}苯基}胺基}苯乙烯基}蒽(An-BPOAS)由四碘代芳香化合物9,10-二{4-[N,N-二(4-碘苯基)氨基]苯乙烯基}蒽(An-BIPAS)与芳基乙烯通过钯催化Heck偶联反应制备.用飞秒Ti:sapphire激光测定了9,10-二芳基蒽树形分子An-BPOAS的多光子吸收系数和多光子诱导荧光光谱.在1300 nm飞秒激光激发下,An-BIPAS和An-BPOAS的三光子荧光峰分别位于553和539 nm.1300 nm飞秒激光激发下采用非线性透过率法测得An-BIPAS和An-BPOAS的三光子吸收系数分别为0.3×10-5和1.5×10-5 cm3/GW2.测定了树形分子An-BPOAS的线性吸收和荧光性质.实验测定了不同pH值化合物An-BPOAS在DMF/H2O混合溶液中的荧光光谱.化合物An-BPOAS具有良好的荧光性能,可作为性能良好的双光子及三光子吸收及荧光材料.  相似文献   

9.
合成了大黄素类蒽醌衍生物1,4-二甲基-6,8-二甲氧基-9,10-蒽醌(1)并应用紫外光谱、荧光光谱、圆二色谱等方法研究了其与牛血清白蛋白(BSA)和小牛胸腺DNA(ct-DNA)的相互作用.荧光光谱结果表明,化合物1与BSA的相互作用主要以静态猝灭方式使BSA的内源性荧光发生猝灭;圆二色谱表明,化合物1通过疏水作用及形成氢键破坏了α-螺旋结构,导致BSA分子中的α-螺旋含量下降.在pH 7.4时固定DNA的浓度,加入化合物1后,紫外光谱的最大吸收峰发生红移且吸光度加大.荧光光谱表明,化合物1与DNA-4S green NC的结合为竞争性抑制,并可使溶液体系荧光猝灭;圆二色谱表明,随着化合物1的加入,DNA碱基间作用能迅速减弱,表明化合物1与DNA之间为嵌插作用.此外,MTT方法的结果表明,化合物1对结肠癌细胞株HCT116增殖有明显的抑制作用.  相似文献   

10.
管成飞  钱鹰 《有机化学》2014,(3):537-545
通过Heck反应合成了2个以吡啶为端基的9,10-双芳基蒽共轭分子9,10-二{4-{4-[N,N-二(4-吡啶乙烯基)苯基]氨基}苯乙烯基}蒽(4Py-PAA)和9,10-二{4-{4-[N,N-二(2-吡啶乙烯基)苯基]氨基}苯乙烯基}蒽(2Py-PAA),化合物结构经过1H NMR,13C NMR,HRMS-MALDI-TOF确证.测定了化合物在不同极性溶剂中的紫外吸收光谱、荧光光谱、荧光寿命及量子产率,测算了4Py-PAA和2Py-PAA的偶极矩.通过循环伏安法研究了它们的前线轨道能级.测定了4Py-PAA和2Py-PAA的固体荧光光谱、固体荧光量子产率及在不同含水量的水/THF混合溶液中的荧光光谱.实验发现4Py-PAA在THF溶液中发出蓝绿色荧光,固体时发出红色荧光,在含水量为70%的水/THF混合溶剂中发出黄色荧光,荧光强度是纯四氢呋喃(THF)的3倍,呈现聚集荧光增强性质.在800 nm飞秒激光下采用双光子诱导荧光参比法测定了4Py-PAA和2Py-PAA在THF溶液中的双光子吸收截面分别为193和101 GM.实验结果表明含有2位和4位吡啶端基9,10-双芳基蒽共轭分子具有良好的荧光发射性能及双光子吸收性质.  相似文献   

11.
报道了应用于溶液法制备器件的小分子蓝光主体材料2-叔丁基-9,10-二(9,9-二正丙基芴基)蒽(TBPFA), 合成路线如Scheme 1所示, 该化合物具有较高的荧光量子效率,以它作为主体材料, 采用旋涂法制备了掺杂与非掺杂型单层器件, 并对器件性能进行了初步研究.  相似文献   

12.
Two compounds, 9,10‐bis[2‐(quinolyl)vinyl]anthracene (BQVA) and 9,10‐bis[2‐(naphthalen‐2‐yl)vinyl]anthracene (BNVA), have been synthesised and investigated. Both of them have aggregation‐induced enhanced emission (AIEE) properties. Heteroatom‐assisted BQVA shows solvatochromism, reversible chromism properties and self‐assembly effects. When increasing the solvent polarities, the green solution of BQVA turns to orange with a redshift of the fluorescence emission wavelengths from λ=527 to 565 nm. Notably, BQVA exhibits reversible chromism properties, including mechano‐ and thermochromism. The as‐prepared BQVA powders show green fluorescence (λem=525 nm) and the colour can turn into orange (λem=573 nm) after grinding. Interestingly, the orange colour can return at high temperature. Based on these reversible chromism properties, a simple and convenient erasable board has been designed. Different from BQVA, non‐heteroatom‐assisted BNVA has no clear chromic processes. The results obtained from XRD, differential scanning calorimetry, single‐crystal analysis and theoretical calculations indicate that the chromic processes depend on the heteroatoms in BQVA. Additionally, BQVA also exhibits excellent self‐assembly effects in different solvents. Homogeneous nanospheres are formed in mixtures of tetrahydrofuran and water, which are then doped into silica nanoparticles and treated with 3‐aminopropyltriethoxysilane to give amino‐functionalised nanoparticles (BQVA?AFNPs). The BQVA?AFNPs could be used to stain protein markers in polyacrylamide gel electrophoresis.  相似文献   

13.
LI  Xin-Wei HE  Dao-Hang 《结构化学》2012,31(3):367-372
A novel compound,2-(anthracen-9-yl)-5-p-tolyl-1,3,4-oxadiazole(C23H16N2O),has been synthesized by the condensation of 4-methylbenzohydrazide and anthracene-9-carbaldehyde in an ethanol solution with chloramine-T.The compound was characterized by 1H-NMR,13C-NMR,MS and single-crystal X-ray diffraction.The crystal belongs to the triclinic system,space group P with a = 7.7817(4),b = 8.8544(5),c = 12.4726(8) ,β = 92.8520(10)°,Z = 2,V = 826.58(8) 3,Dc = 1.352 g/cm3,Mr = 336.38,λ(MoKα) = 0.71073 ,μ = 0.084 mm-1,F(000) = 352,R = 0.0381 and wR = 0.1099.The dihedral angle between anthracene skeleton and phenyl ring is 64.19°.A total of 6354 unique reflections were collected,of which 3172 with I > 2σ(I) were observed.X-ray analysis indicated an offset face-to-face π-π stacking interaction between anthracene skeletons and an offset face-to-face π-π stacking interaction between phenyl ring planes.The novel compound molecules are connected through the offset face-to-face π-π stacking interactions to generate a three-dimensional network.The preliminary bioassay results showed that the novel compound exhibited significant insect growth inhibitory activity against Spodoptera litura Fabricius larvae.  相似文献   

14.
Abstract— Dianthracene is efficiently photodissociated, forming anthracene with a quantum yield of about 0.63. Like anthracene, tetracene undergoes a reversible photochemical reaction, the product of which appears to be di-tetracene. In dilute, deoxygenated solutions the of quantum yeild for the formation of di-tetracene is directly proportional to the concentration of the monomer ødim = 2.2 (). The quantum yield for the reverse reaction is approximately 0.74
When dilute deaerated solutions of anthracene are irradiated with the unfiltered radiation from a quartz-mercury arc, a degradation product is formed. Unlike the dimer, this product cannot be converted into anthracene either by heating it to 200C or by irradiating it in solution with light of 254 nm. This degradation product appears to be the compound or compounds which Birks et al. believed to be dianthracene. Irradiation of deaerated solutions of anthracene (or tetracene) with light of wavelenghts longer than 300 nm produces only the dimer, which has an absorption spectrum similar to that reported by Coulson et al.  相似文献   

15.
建立一种利用高效液相色谱结合荧光检测器准确测定2-噁唑烷酮含量的方法。样品中的2-噁唑烷酮和占吨氢醇在60℃的条件下衍生70 min后,直接进样分析。采用月旭XB-C18色谱柱,流动相为0.02 mol/L乙酸钠水溶液和乙腈,检测器波长为λex=213 nm,λem=308 nm,流速1.0 mL/min,柱温35℃的条件下。2-噁唑烷酮浓度在0.5~50.0mg/mL时,线性关系良好(R2=0.9995),检测限和定量限分别为0.005 mg/L、0.016 mg/L。该方法准确、灵敏、快速,适用于2-噁唑烷酮含量的检测。  相似文献   

16.
The compound 3,3'-(anthracene-9,10-diyl)bis(1-phenylpropan-1-one)(C32H26O2,Mr=442.55) has been synthesized by the reaction of 2,2'-(anthracene-9,10-diylbis(methy-lene))bis(1,3-diphenylpropane-1,3-dione) with CsCO3,and its structure was characterized by 1H NMR and single-crystal X-ray diffraction.The crystal of the title compound belongs to monoclinic,space group P21/c with a=9.154(3),b=5.2777(16),c=24.897(7) nm,β=107.337(10)°,Z=2 and V=1.1482 nm3.X-ray analysis indicates that an intermolecular hydrogen bond C(8)-H(8A)…O(1),weak C-H···π between H(9A) and the centre of anthracene rings and weak π-π interactions between two anthracene ring planes are observed.  相似文献   

17.
A spectral-luminescent study of the hydrogel formed by the crosslinking of chitosan succinate and hyaluronic acid dialdehyde (HAD) macromolecules, which is a dosage form of the Lucentis drug (active ingredient, ranibizumab), has been conducted. The individual fluorescence (FL) spectra of Lucentis (λmax = 336 nm), HAD (λmax = 328 and 438 nm), and the hydrogel (λmax = 396 nm) have been obtained. An analysis of these spectra suggests the participation of carbonyl groups and proteins contained in HAD in its gelation with chitosan succinate. The diffusion of Lucentis from the hydrogel into a physiological solution was studied by a FL method to demonstrate the high prolonged-release properties of the new dosage form.  相似文献   

18.
The reaction of 16α-hydroxyestrone with hexacyanoferrate(III) and arginine in alkaline solution at 95°C produces a fluorescent compound that is measured at 490 nm (λ(ex) = 395 nm). Most other steroids do not interfere. The calibration is linear for 0.5–50 μg of analyte.  相似文献   

19.
A hyperbranched poly(aryleneethynylene) containing anthracene chromophore was synthesized by palladiumcatalyzed cross-coupling reaction of 2,4,6-triiodophenyl 9-anthracenylcarboxylate with 9,9-bis[4-(2-propynyloxy)phenyl]- 9H-fluorene. The structure and properties of the polymer are characterized and evaluated by NMR, IR, UV, PL and TGA analyses. The polymer is soluble in common organic solvents, possesses high thermal stability (Td 〉 330℃), and emits a strong blue light of 465 nm in both solution and solid states.  相似文献   

20.
Photoreactive and thermoresponsive N‐isopropylacrylamide (NIPAM)–surfmer copolymer hydrogels containing 4,4′‐di(6‐sulfato‐hexyloxy)azobenzene (DSHA) dianions are described. The functional hydrogels are obtained in a two steps. First a micellar aqueous solution of (11‐(acryloyloxy)undecyl)trimethylammonium bromide (AUTMAB) and NIPAM is exposed to 60Co‐gamma irradiation, and a thermoresponsive copolymer gel is obtained. Second, DSHA is included by shrinking the gel at 50 °C and subsequent reswelling in an aqueous solution of DSHA disodium salt at 20 °C. Reswelling is accompanied by electrostatic adsorption of DSHA dianions at the positively charged AUTMAB headgroups replacing the bromide ions. Gels containing trans‐DSHA are transparent yellow at room temperature (λmax = 370 nm), while gels containing cis‐rich DSHA are orange (λmax = 460 and 330 nm). Energy dispersive X‐ray measurements indicate that 41% of the bromide ions are exchanged if trans‐DSHA is used for adsorption, and only 7.5% if cis‐DSHA is used. The incorporation of DSHA lowers the lower critical solution temperature (LCST) from 34 to 32 °C. Below the LCST, DSHA can be switched from the trans‐ to the cis‐rich state and vice versa upon irradiation with UV (λ = 366 nm) or visible light (λ ≥ 450 nm). Above the LCST no photoreaction takes place.  相似文献   

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