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合成了水溶性很好的5,3′,5′-三磺酸基-2,3,4,4′-四羟基脱氧安息香三钠盐(TTDB),采用IR、UV、1HNMR和元素分析对其结构进行了表征,并利用X射线单晶衍射仪测定了该化合物的晶体结构.使用荧光光谱法检测了化合物对羟基自由基的清除作用.用循环伏安法探讨了化合物的电化学性质.实验结果表明,5,3′,5′-三磺酸基-2,3,4,4′-四羟基脱氧安息香三钠盐[C14H17Na3O18S3]属于单斜晶系,空间群C2/c,a=1·4223(4)nm,b=2·4327(8)nm,c=1·3596(4)nm,α=90°,β=113·044(5)°,γ=90°,Z=8,V=4·329(2)nm3,Dc=1·925Mg/m3,F(000)=2568,Mr=627·43,R1=0·0950,wR2=0·2648.TTDB的抗羟基自由基的氧化作用优于其相应的脱氧安息香THDB,前者清除羟基自由基的半数有效浓度(EC50)为47·3μmol/L,而后者的EC50则为53·1μmol/L.电化学研究结果表明,THDB和TTDB的氧化还原过程有所差异,前者负扫时在-1·016和-1·228V处出现两个还原峰,正扫时在0·219V处出现一个氧化峰,但后者负扫时仅在-0·999V出现一个还原峰,正扫时在0·193V出现一个氧化峰. 相似文献
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合成了未见文献报道的水溶性很好的2,4,4'-三羟基脱氧安息香-3'-磺酸钴,采用IR,UV,1HNMR和元素分析对其进行了表征,并利用X射线单晶衍射仪测定了该化合物的晶体结构.使用荧光光谱法检测了化合物对羟基自由基的清除作用,紫外光谱法检测其对超氧自由基的清除作用.实验结果表明,2,4,4'-三羟基脱氧安息香-3'-磺酸钴[C28H46CoO26S2]属于单斜晶系,空间群C2/c,a=3.3937(3)nm,b=0.85180(7)nm,c=1.37455(11)nm,α=90°,β=97.8200(10)°,γ=90°,Z=4,V=3.9365(5)nm3,Dc=1.555g/cm3,F(000)=1924,R1=0.0329,wR2=0.0852,具有较好的清除羟基自由基和超氧自由基的作用. 相似文献
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2,3,4,4'-四羟基脱氧安息香的合成、晶体结构表征及性质研究 总被引:5,自引:1,他引:5
合成了2,3,4,4'-四羟基脱氧安息香(THDB), 采用IR, UV, 1H NMR, MS和元素分析对其结构进行了表征, 并采用X射线单晶衍射仪测定了该化合物的晶体结构, 利用荧光法检测了化合物对羟基自由基的清除作用. 实验结果表明, 晶体[C14H12O5•2H2O]属于单斜晶系, 空间群C2/c, a=1.4346(5) nm, b=1.3378(5) nm, c=1.5709(5) nm, α=90°, β=110.823(6)°, γ=90°, V=2.8181(16) nm3, Z=8, Dc=1.397 g/cm3, μ=0.113 mm-1, F(000)=1248, R=0.0528, wR=0.1307; THDB具有较好的清除羟基自由基的作用. 相似文献
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合成了未见文献报道的水溶性很好的2,4,4'-三羟基脱氧安息香-3'-磺酸钴, 采用IR, UV, 1H NMR和元素分析对其进行了表征, 并利用X射线单晶衍射仪测定了该化合物的晶体结构. 使用荧光光谱法检测了化合物对羟基自由基的清除作用, 紫外光谱法检测其对超氧自由基的清除作用. 实验结果表明, 2,4,4'-三羟基脱氧安息香-3'-磺酸钴[C28H46CoO26S2]属于单斜晶系, 空间群C2/c, a=3.3937(3) nm, b=0.85180(7) nm, c=1.37455(11) nm, α=90°, β=97.8200(10)°, γ=90°, Z=4, V=3.9365(5) nm3, Dc=1.555 g/cm3, F(000)=1924, R1=0.0329, wR2=0.0852, 具有较好的清除羟基自由基和超氧自由基的作用. 相似文献
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在水热条件下利用H2btpa配体合成了2个镧系金属配合物{[Ln(btpa)(H2O)(OH)]·bpy}n(Ln=Tb(1),Pr(2),H2btpa=5-(3',4'-二(四唑-5'-基)苯氧基)间苯二甲酸,bpy=4,4'-联吡啶),并用元素分析、红外光谱、X射线粉末衍射、X射线单晶衍射对其进行了表征。配合物1和2中,双核镧系金属单元通过btpa2-配体以μ4:η1,η2,η1,η2的配位模式连接,形成二维网状结构,客体分子4,4'-联吡啶通过分子间的氢键作用存在于结构中。相邻的二维网通过氢键的识别作用以锁链形式拓展为三维超分子结构。室温下配合物1呈现出TbⅢ的特征荧光发射峰。 相似文献
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合成了2,7'-(乙烯基)-二-8-羟基喹啉(C20H14N2O2),利用IR,UV,HNMR,MS和元素分析确认其结构;利用X射1线单晶衍射仪测定了该化合物的晶体结构;测定了目标产物的荧光光谱.实验结果表明,晶体(C20H14N2O2)属于三斜晶系,空间群P-1,a=0.7473(10)nm,b=0.8323(11)nm,c=1.3124(17)nm,α=102.054(2)°,β=95.030(2)°,γ=109.753(2)°,V=0.7401(17)nm3,Z=2,Dc=1.410Mg/m3,μ=0.093mm-1,F(000)=328,R1=0.0427,wR2=0.1122. 相似文献
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铋(Ⅲ)-8-羟基喹啉-5-磺酸的吸附伏安法研究 总被引:1,自引:0,他引:1
探讨了8-羟基喹啉-5-磺酸(HQSA)和络合物Bi(Ⅲ)-HQSA的电化学性质,特别是它们在汞电极上的吸附性。在pH=7.0的磷酸盐底液中,Bi(Ⅲ)-HQSA有一灵敏还原峰,为反应物弱吸附,Epc=-0.44V(vs.饱和Ag/AgCl)。据此建立了吸附伏安法测定铋的新方法,检测限为2.0×10-9mol/L,线性范围5.0×10-9~1.0×10-6mol/L。 相似文献
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稀土离子具有独特的电子结构和成键特征,配位数高且多变,因而稀土配合物能表现出独特的光、电、磁性质。目前,设计和合成含有稀土离子的功能配合物作为发光分子器件和荧光探针是配位化学和超分子化学等研究领域的热点课题[1 ̄6]。研究表明,稀土配合物的发光性能和稳定性可通过改变其配体的组成和结构加以调控。因此,设计、合成具有新颖结构、良好配位能力及高效能量吸收和传递性能的有机配体是研究和开发新型稀土配合物发光材料的关键课题之一。多足配体在与金属离子配位时,能够表现出特有的选择性配位能力、类球形配位空穴和新颖的配位结构… 相似文献
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Xi Yan Fuli Wu Yun Liu Jiamian Li Zebao Zheng Huiquing Yan Shufeng Si 《Frontiers of Chemistry in China》2006,1(3):315-319
A new water soluble compound trisodium 5,3′,5′-trisulfonate-2,3,4,4′-tetrahydroxy-deoxybenzoin (TTDB) was synthesized and
characterized by IR, UV, 1H NMR, and elemental analysis. The single crystal of TTDB was determined by X-ray single crystal diffraction. The scavenging
effect of compounds on hydroxy radicals was detected by fluorescent spectrophotometry. The electrochemical behavior of compounds
in nonaqueous solution DMF was carried out by means of cyclic voltammetry. The experimental result shows that the crystal
[C14H17Na3O18S3] belongs to monoclinic, space group C2/c with unit cell constants a = 1.4223(4) nm, b = 2.4327(8) nm, c = 1.3596(4) nm, α = 90°, β = 113.044(5)°, γ = 90°, Z = 8, V = 4.329(2) nm3, D
c = 1.925 mg/m3, F(000) = 2568, F
w = 638.43, R
1 = 0.0950, wR
2 = 0.2648. The half effective concentration EC50 of scavenging hydroxy radicals of compound THDB is 53.1 μmol/L, while that of scavenging hydroxy radicals of compound TTDB
is 47.3μmol/L. The electrochemistry redox processes of THDB and TTDB are different from each other.
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Translated from Chemical Journal of Chinese Universities, 2005, 26(9) (in Chinese) 相似文献
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Kailash M. Mogare Wilhelm Klein Helmut Schilder Heiko Lueken Martin Jansen 《无机化学与普通化学杂志》2006,632(15):2389-2394
Na3OsO5 has been synthesized by solid state reaction of Na2O2 and osmium powder under a flow of oxygen. Na3OsO5 crystallizes trigonal in space group P3121 with a = 5.5529(2) Å, c = 13.4726(8) Å, V = 359.77(3) Å3, Z = 3, 958 independent reflections, R1 = 1,97 %, wR2 = 4.27 %. The crystal structure consists of OsO5 trigonal bipyramids separated by sodium cations, and is isostructural to Na3ReO5. The osmium atoms adopt a packing analogous to ccp, where Na occupies the octahedral and tetrahedral vacancies, so the cation structure is derived from the Li3Bi structure type. Features of the synthesis of Na3OsO5 and related osmates are discussed. Na3OsO5 shows paramagnetic behaviour down to 25 K where it orders antiferromagnetically. Below 7 K a weak ferromagnetic contribution is detected. The paramagnetic region of the 5d1 system has been successfully described in the temperature range 50 – 330 K accounting for strong spin‐orbit coupling, ligand‐field potential of D3h symmetry (corresponding to the trigonal bipyramidal unit), and cooperative magnetic effects (molecular field parameter λMF). 相似文献
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The silver iodate(VII), Ag5IO6, was obtained by reacting a stoichiometric mixture of Ag2O and KIO3, at elevated oxygen pressure, adding a small portion of distilled water. The synthesis was done at 673 K and 270 MPa of oxygen pressure. The crystal structure was solved by direct methods based on single crystal diffraction data ( , Z = 6, a = 5.9366(1), c = 32.1471(6) Å, 323 independent reflections, R1 = 2.31 %). According to conductivity measurements, Ag5IO6 is semiconducting with a specific resistance of 0.08 Ωcm at 300 K. The activation energy was determined as 7.4(1) meV in the temperature range of 220 – 300 K, and 4.3(1) meV in the temperature range of 90 – 180 K. The optical band gap for Ag5IO6 is 1.4 eV. Ag5IO6 is diamagnetic with a magnetic susceptibility of ?4.4×10?4 emu/mol. 相似文献
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A novel ligand N-ethyl-1,10-phenanthroline-2-methanamine and its Ni(Ⅱ) complex have been synthesized. The crystal structure of the complex has been determined by X-ray diffraction method. The Ni(Ⅱ) is five-coordinated by three nitrogen atoms from the ligand and two Cl- anions in a distorted trigonal bipyramidal environment: the N(2), Cl(1) and Cl(2) in equatorial plane; the N(1) and N(3) in axial positions. The UV-spectra and IR-spectra of the ligand and its Ni(Ⅱ) complex were recorded and discussed. The thermodynamic properties of the ligand with various bivalent metals were studied by potentiometric titrations and the order of the stability constants is in agreement with the Irving-Williams order in coordination chemistry. CCDC: 221750. 相似文献
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RbMnO2 was prepared via the azide/nitrate route. Stoichiometric mixtures of the precursers (Mn2O3, RbN3 and RbNO3) were heated in a special regime up to 600 °C and annealed at this temperature for 30 h in specially designed silver crucibles. Single crystals have been grown by annealing a 1:1 mixture of Rb2O and MnOx at 585 °C for 1200 h. According to the crystal structure determination Mn3+ is in a square‐pyramidal coordination by oxygen. These [MnO5] units form double chains extending along the crystallographic c‐axis. RbMnO2 shows Curie‐Weiss behaviour down to ~ 100 K. A fit of the susceptibility data yields an average value of the magnetic moment (per manganese atom) of μeff = 5.33 μB, and θp = –820 K. At 50 K and low field strength onset of ferromagnetic order due to spin canting has been observed. 相似文献
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用三苯基氯化锡与硫代苯甲酸在三乙胺存在下反应,合成了三苯基锡硫代苯甲 酸酯,并进行了红外光谱及核磁共振氢谱表征。X射线单晶衍射表明,化合物属正 交晶系,空间群P2_12_12_1,晶胞参数:a = 0.8306(3) nm, b = 1.6906(5) nm, c = 3.1459(10)) nm, V = 4.417(2) nm~3, Z = 8, D_c = 1.465 g/cm~3, R_1 = 0.0472, wR_2 = 0.1012。该化合物的晶体是由孤立的分子所组成,四配位的锡 原子呈畸变的四面体构型,配体羧基上的氧原子和锡原子之间存在弱的配位作用。 相似文献
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1 INTRODUCTION The 10-benzylidene anthrones which are important intermediate for organic syntheses[1~3] usually possess thermochromism[4] and photo- chromism[5], and have been found recently to have evident anti-cancer activity[6]. We found that the substituents in the phenyl ring will affect the bioactivity of those compounds. For more deeply investigating the structure-activity relationships (SAR) and understanding interactions between the three dimensional structure of the compound … 相似文献