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1.
刘磊  张萍  李媛  董玉环 《结构化学》2002,21(5):545-548
合成了标题化合物并测定了其晶体结构。该化合物的化学式为C26H25NO2S, Mr = 415.53。晶体为三斜晶系,P 空间群,晶胞参数为:a = 9.299(3), b = 10.134(3), c = 12.455(4) ? a = 98.457(5), b = 106.143(5), g = 103.843(5), V = 1065.7(6) 3, Z = 2, Dc = 1.295 g/cm3, F(000) = 440, m = 0.175 mm-1, R = 0.0406, wR = 0.1064。晶体结构显示,化合物中七员环呈类椅式构象,b-内酰胺环近似梯形。  相似文献   

2.
本文报道2-p-硝基苯基-4-甲基-2,3,4,5-四氢-(1,5)-苯并硫氮杂(艹卓)的两个顺反式异构体的晶体结构.顺式异构体属正交晶系,空间群为 D_(2h)~(10)—Pbnb,晶胞参数:a=8.326(1),b=14.865(5),c=24.533(4)(?);d_c=1.31g/cm~3;Z=8;F(000)=1264;μ_(MoKα)=2.2cm~(-1).反式异构体属单斜晶系,空间群为 C_(2h)~6-C2/c,晶胞参数:a=22.366(3),b=12.488(2),c=12.483(2)(?);β=121.01(1)°;d_o=1.34g/cm~3;Z=8;F(000)=1264;μ(MoKα)=2.2cm~(-1).晶体结构由 SHELXTL 直接法程序解出,用块矩阵最小二乘法修正,最后的偏离因子:顺式异构体 R=0.0661,R_w=0.0661;反式异构体,R=0.0705,R_w=0.0571.结构分析表明:顺式异构体为类椅式构象,反式异构体为类扭船式构象.这为进一步归纳这类化合物的结构特征和立体化学规律提供了条件.  相似文献   

3.
标题化合物与N,N-二甲基甲酰胺(DMF)形成的1:1混合结晶物C20H23FN2OC3H7NO由对氟苯甲醛、丙二腈、-萘酚在六氢吡啶存在下合成并经DMF与水的混合溶剂重结晶而得, 其结构通过元素分析、IR 和1H NMR对化合物进行了表征,用X-射线单晶衍射法测定了该化合物的晶体结构。结果表明,晶体属于单斜晶系,P21/n空间群,a = 6.365(1), b = 10.620(2), c = 29.122(6) ? b = 92.00(1), V = 1967.3(6) ?, Mr = 389.42, Z = 4, Dc = 1.315 g/cm3, m (MoKa) = 0.092 mm-1, F(000) = 816。晶体结构用直接法解出,经全矩阵最小二乘法修正,最终偏离因子R = 0.047, wR = 0.1053。化合物分子中,原子C(1), C(2), C(3), C(4), C(5) 和O(1)形成1个六员环,该六员环中C(1)C(2)键长为1.346(3) 牛砻魑肆被肺焦瓜蟆?  相似文献   

4.
用X射线晶体结构分析法测定了氯代羟基六氢茚二酮(1)和环氧十氢萘二酮(2)的晶体结构和分子构型。化合物1属正交晶系,空间群为Pbca,晶胞参数a=10.439(1),b=19.950(2),c=9.455(1)A,Z=8;化合物2属单斜晶系,空间群为P2~1/c,晶胞参数a=8.355(2),b=9.221(2),c=25.801(4)A,β=94.19(1)`,Z=8。在RASA-IIS型四圆衍射仪上收集了这两个化合物的衍射数据,用直接法解晶体结构,经块对角矩阵最小二乘修正,对化合物1的1810个独立的可观察反射,R=0.043;对化合物2的1804个独立的可观察反射,R=0.064。化合物1带有a-Cl,β-CH~3和β-OH。由此推断环氧六氢茚二酮(3)的分子构型带有β-CH~3和β-环氧。化合物2中的甲基和环氧基均为β构型,与3相似,因此Danishefsky等由核磁共振所推断的关于2的分子构型中的α环氧应校正为β环氧。  相似文献   

5.
标题化合物C11H10O4的晶体结构用X-射线单晶衍射法测定。晶体属单斜晶系, P21/c空间群, 晶胞参数a = 12.136(1), b = 5.559(1), c = 14.615(2) ? b = 96.758(3), V = 979.1(3) ?, Z = 4, Mr = 206.19, Dc = 1.399 g/cm3, F(000) = 432, m(MoKa) = 0.107 mm-1。晶体结构用直接法解出, 经全矩阵最小二乘法对原子参数进行修正, 最终的偏离因子为R = 0.0453, wR = 0.0990。标题化合物形成了1个大的共轭体系, 含有1个稳定的烯醇结构。结构测定表明还存在着1个分子内氢键的结构, 它使烯醇结构更加稳定。  相似文献   

6.
用X射线晶体结构分析法测定了氯代羟基六氢茚二酮(1)和环氧十氢萘二酮(2)的晶体结构和分子构型.化合物1属正交晶系,空间群为Pbca,晶胞参数α=10.439(1),b=19.950(2),c=9.455(1)A,Z=8;化合物2属单斜晶系,空间群为P2_1/c,晶胞参数α=8.355(2),b=9.221(2),c=25.801(4)A,β=294.19(1)°,Z=8.在RASA-IIS型四圆衍射仪上收集了这两个化合物的衍射数据,用直接法解晶体结构,经块对角矩阵最小二乘修正,对化合物1的1810个独立的可观察反射,R=0.043;对化合物2的1804个独立的可观察反射,R=0.064.化合物l带有α-Cl,β-CH_3和β-OH.由此推断环氧六氢茚二酮(3)的分子构型带有β-CH_3和β-环氧.化合物2中的甲基和环氧基均为β构型,与3相似.因此Danishefsky等由核磁共振所推断的关于2的分子构型中的α环氧应校正为β环氧.  相似文献   

7.
取代苯氧乙酰肼(1a~1c)与异硫氰酸芳基酯(2a~2d)反应得到酰基硫脲类化合物(3a~3l),经碱合环得到4-苯基-5-苯氧甲基-1,2,4-三唑-3-硫酮(4a~4l),然后再与N-(5-对氯苯氧甲基-1,3,4-噻二唑-2-基)氯乙酰胺(6)反应合成了化合物N-(5-对氯苯氧甲基-1,3,4-噻二唑-2-基)-S-(4-苯基-5-苯氧甲基-1,2,4-三唑-3-基)乙酰胺(7a~7l)。所有化合物结构经元素分析、IR、1HNMR和MS确证。测定了化合物4e的晶体结构,其属于三斜晶系,P-1空间群,晶胞参数a=7.123(4),b=9.786(5),c=11.543(6),α=70.846(7)°,β=80.089(9)°,γ=89.922(11)°,V=747.5(7)3,Dc=1.345g/cm3,Z=2,F(000)=310,μ=0.218mm-1,R=0.0913,wR=0.2622  相似文献   

8.
合成了标题化合物C6H4(CO2CH3)CH2SO2NHCONHC4N2H2CH3(C15H16N4O5S,Mr=364.38),用X-射线晶体衍射法测定了其晶体结构.它属单斜晶系,空间群为P21/c,a=10.220(1),b=9.938(1),c=17.246(2)A,β=106.26(2)°,V=1681.6(3)A3,Z=4,Dc=1.439Mg/m3,μ=0.227mm-1,F(000)=760.结构由直接法解出,全矩阵最小二乘法修正,最终偏离因子R=0.0498,wR=0.1327(I>2σ(I)),独立可观测点数为3448.分子中的嘧啶磺酰脲、苯环及酯基分别形成3个独立的平面共轭体系.  相似文献   

9.
《结构化学》2004,23(4):441-444
经对N?(4,6-二甲基嘧啶-2-基)苯甲酰硫脲进行初步生物活性测定结果表明,该化合物具有除草活性,现经除草活性复筛测试发现,它主要抑制阔叶杂草的生长,对禾本科作物较安全。为了进一步了解该类化合物除草活性与结构的关系,也为设计新的除草剂分子提供帮助,对标题化合物进行了X射线单晶衍射,它的晶体结构数据为分子简式C14H14N4OS,分子量为286.35,三斜晶系,空间点群为P,a=8.216(1),b=9.503(1),C=9.942(11)?a=74.995(2),b=76.774(2),g=70.305,V=697.2(2)3,Z=2,DC=1.364g/cm3,F(000)=300,m(MoKa)=0.233mm-1,R=0.0457,wR=0.0965。  相似文献   

10.
经对N?(4,6-二甲基嘧啶-2-基)苯甲酰硫脲进行初步生物活性测定结果表明,该化合物具有除草活性,现经除草活性复筛测试发现,它主要抑制阔叶杂草的生长,对禾本科作物较安全。为了进一步了解该类化合物除草活性与结构的关系,也为设计新的除草剂分子提供帮助,对标题化合物进行了X射线单晶衍射,它的晶体结构数据为分子简式C14H14N4OS,分子量为286.35,三斜晶系,空间点群为P,a=8.216(1),b=9.503(1),C=9.942(11)?a=74.995(2),b=76.774(2),g=70.305,V=697.2(2)3,Z=2,DC=1.364g/cm3,F(000)=300,m(MoKa)=0.233mm-1,R=0.0457,wR=0.0965。  相似文献   

11.
1 INTRODUCTION Recently, compounds containing pyrazole, imida- zole, triazole (including benzotriazole), pyridine, tetrazole and indole have attracted much interest because of their fungicidal activity, plant-growth regulating activity and antibacterial activity[1~3]. Schiff bases also constitute a good type of biolo- gically active substructures[4~7]. Studies of pyri- dine Schiff base-type fungicides have been repor- ted[8]. However, some structures of pyridine com- pounds containing h…  相似文献   

12.
A new quinazolinone compound 2,3-dihydro-2-(2-hydroxyphenyl)-3-phenylquinazolin-4(IH)-one 3 ([C2oH16O2N2]-C2H5OH, Mr = 362.42) and compound 2-(2-hydroxybenzylidene-amino)-N-phenyl-benzamide 2 (C2oH16O2N2, Mr = 316.34) were prepared from a precursor of 2-amino-N-phenyl-benzamide 1 (C13H12ON2, Mr = 212.25). Compound 3 was characterized by single-crystal X-ray diffraction analysis. The crystal belongs to orthorhombic,space group Pbca with a = 1.2889(11), b = 1.6170(14), c = 1.7729(15) nm, V= 3.695(6) nm^3, Z= 8, F(000) = 1536, Mr = 362.42, Dc = 1.303 g/cm^3, μ(MoKa) = 0.087 mm^-1, R = 0.0447 and wR= 0.0879. The crystal structure analysis indicates that the title compound has a two-dimensional network structure formed by hydrogen bonds and electrostatic interactions.  相似文献   

13.
The title compound (C4N2H12)2Zr(C2O4)4·H2O 1 was synthesized by the reaction of ZrOCl2·8H2O, H2C2O4·2H2O and piperazinium in aqueous solution. Single-crystal X-ray analysis has revealed that compound 1 (C16H26N4O17Zr, Mr = 637.63) crystallizes in the monoclinic system, space group P21/c with a = 9.0425(3), b = 13.3844(3), c = 19.1191(5)A, β = 98.365(1)o, V = 2289.34(11) A3, Z = 4, Dc = 1.850 g/cm3, F(000) = 1304, μ = 0.577 mm-1, the final R = 0.0240 and wR = 0.0628 for 4386 observed reflections with I > 2σ(I). X-ray crystal-structure analysis suggests that compound 1 consists of [Zr(C2O4)4]4- anion and two protonated piperazinium cations. The anions are linked through hydrogen bonds of piperazinium. FT-IR and Raman spectra clearly show the existence of oxalate groups in the crystal lattice.  相似文献   

14.
The title compound (C6N3H18)2Ti4O4(C2O4)7(4H2O 1 (C13H22N3O18Ti2, Mr = 604.14) was synthesized by the reaction of Ti(SO4)2, H2C2O4(2H2O and N-(2-ammonioethyl)- piperazinium (AEPP) in aqueous solution. The single-crystal X-ray analysis has revealed that 1 crystallizes in the triclinic system, space group Pī with a = 9.1437(6), b = 11.4991(10), c = 11.6975(8)A, α = 96.2915(18), β = 107.998(3), γ = 104.276(4)°, V = 1110.35(14)A3, Z = 2, Dc = 1.807 g/cm3, F(000) = 618, μ = 0.815 mm-1, the final R = 0.0463 and wR = 0.1264 for 3718 observed reflections with I > 2σ(I). X-ray crystal-structure analysis suggests that compound 1 consists of [Ti4O4(C2O4)7]6- anion and two protonated N-(2-ammonioethyl)piperazinium cations. The anions are linked into an infinite chain through Ti4O4(C2O4)8 by sharing the oxalates as bridging ligands.  相似文献   

15.
ZHAO  Pei-Liang ZHOU  Zhong-Zhen 《结构化学》2010,29(8):1280-1283
The crystal structure of the title compound 2-ethoxycarbonylmethyl-8-chloro-3a,4-dihydro-3a-methyl-chromeno[4,3-c]pyrazol-3(2H)-one(C15H15ClN2O4,Mr = 322.74) has been prepared and determined by single-crystal X-ray diffraction.The crystal is of orthorhombic,space group Pccn with a = 16.7246(10),b = 19.6626(12),c = 9.3013(6) ,V = 3058.7(3) 3,Z = 8,Dc = 1.402 g/cm3,μ = 0.269 mm-1,F(000) = 1344,the final R = 0.0506 and wR = 0.1464 for 2568 reflections with I 2σ(I).In addition,disordered C(14) and C(15) atoms exist in the crystal structure.  相似文献   

16.
5-苯基-3,5-二乙氧基-2(5H)-呋喃酮的晶体结构   总被引:1,自引:0,他引:1  
标题化合物C14H16O4的晶体结构用X-射线单晶衍射法测定。晶体属三斜晶系,P空间群,晶胞参数a =8.696(2), b=8.943(2) , c=9.379(2) ?, ( = 69.28(3), ( =76.67(3), ( =80.28(3)o, V=660.8(3) ? 3, Z=2, Mr=248.28, Dx=1.248 g/cm3, F(000)=264, μ(MoK()=0.0851 mm—1。晶体结构用直接法解出,经全矩阵最小二乘法对原子参数进行修正,最终的偏离因子为R=0.061, wR=0.089。标题化合物有2个环:呋喃酮环和苯环。由C(1),C(2),C(3),C(4),O(4)构成的五元呋喃酮环的5个原子较好地处于1个平面上,平均偏差为0.0078?。O(2),O(3) 两个原子与呋喃酮环共平面。呋喃酮环和苯环之间的两面角为79.39o。  相似文献   

17.
The crystal structure of the title compound (C18H24N4O7S, Mr = 440.47) was prepared by the condensation of 2,3,4-tri-O-acetyl-β-D-xylopyranosyl isothiocyanate with 4,6-dimethylpyrimidin-2-amine and structurally determined by single-crystal X-ray diffraction. The crystal belongs to the monochnic system, space group P2 1 with a = 7.5500(17), b = 10.498(2), c = 14.208(3) A, β = 99.929(4)°, V = 1109.2(4) A^3, Z = 2, Dc = 1.319 g/cm^3,μ = 0.191, F(000) = 464, Flack = 0.00(15), R = 0.0684 and wR = 0.1103. In the crystal structure, the xylose ring adopts a ^4C1 chair conformation. Due to the hydrogen bonding interaction between N(4)-H(4A) and N(1), the pyrimidine ring is well positioned.  相似文献   

18.
The title compound N-tert-butyl-N-(4-methyl-1,2,3-thiadiazole)-5-yl-N'-(4-me-thyl-1,2,3-thiadiazole)-5-formyl-N'-3,5-dichloropyrid-2-yl-diacylhydrazines (C18H17Cl2N7O3S2, Mr = 514.41) has been synthesized by the reaction of N-tert-butyl-N'-3,6-dichloropyridine-2-formyl hydrazine with 4-methyl-1,2,3-thiadiazole-5-carbonyl chloride and triethylamine, and its structure was characterized by 1H NMR, HR MS, and single-crystal X-ray diffraction. The crystal of the title compound belongs to monoclinic, space group C2/c with a = 27.726(8), b = 11.045(3), c = 14.507(4), β = 96.758(4)°, Z = 8, V = 4412(2) 3, Dc = 1.549 g/cm3, μ = 0.521 mm-1, F(000) = 2112, R = 0.0405 and wR = 0.1153. X-ray analysis indicates that all rings are non-planar in this molecule. The bioassay results indicate that both the title compound and the positive control RH-5992 have weak fungicide activities, while the title compound has good insecticidal activity against Plutella xylostella L. and no insecticidal activity against Culex pipiens pallens.  相似文献   

19.
1 INTRODUCTION3methyl4hydroxybenzofuranisanintermediateusedforthesynthesisofnatureproducts[1].Ithasbeensynthesizedfrom1,3dihydroxybenzene[2-3].Tosynthesizeabietanequinonediterpenoidswithit[4,5],weintendedtoprotectthehydroxyattachedtoitwithMe2SO4.Finally,twocompou…  相似文献   

20.
1 INTRODUCTION The design and synthesis of polynuclear com- plexes have attracted chemists?attention in the contemporary chemistry, since their clusters maybe lead to novel materials with magnetic, optical, electronic and catalytic properties of the constituent metals[1~3]. It is also prevalently interesting to synthesize high-nuclearity metal complexes for their nanoscopic dimensions[3, 4]. Spectroscopic properties of the lanthanides are widely used in the study of biological systems. …  相似文献   

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