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1.
王辉  张峰 《化学研究》2012,23(5):12-15
分别以无水氯化锌、对甲苯磺酸为催化剂,采用微波辐射法,在无溶剂条件下由4-氯间苯二酚与三氟乙酰乙酸乙酯缩合制备标题化合物;优化了反应条件.结果表明,在微波辐射下,无水氯化锌对该反应有较好的催化活性,相应的4-三氟甲基-7-羟基-6-氯香豆素的产率可达73.0%.优化的反应条件为:4-氯间苯二酚、三氟乙酰乙酸乙酯和无水ZnCl2的摩尔比为1∶1.1∶0.9,微波辐射功率800W,辐射时间20min,反应温度85℃.  相似文献   

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微波辐射下2-[4-二-(4-氟苯)甲基]哌嗪乙酰腙化合物的合成   总被引:3,自引:0,他引:3  
李清寒  赵志刚 《有机化学》2009,29(1):119-122
微波辐射条件下, 以丙酮作溶剂, 1-[二-(4-氟苯)甲基]哌嗪与氯乙酸乙酯反应得到2-[二-(4-氟苯)甲基]哌嗪乙酸乙酯(1), 1与水合肼在微波辐射条件下反应得到2-[二-(4-氟苯)甲基]哌嗪乙酰肼(2), 进一步在微波辐射条件下由2-[二- (4-氟苯)甲基]哌嗪乙酰肼(2)与取代芳香醛反应制得目标化合物3a~3f. 合成的6个目标化合物通过熔点测定和质谱、红外光谱、核磁共振氢谱分析、元素分析对其结构进行确证.  相似文献   

3.
4-(4-氯苯氧基)-2-氯苯乙酮的催化合成及微波促进作用   总被引:5,自引:0,他引:5  
二芳醚;微波辐射;定位选择性;4-(4-氯苯氧基)-2-氯苯乙酮的催化合成及微波促进作用  相似文献   

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微波辐射下,二氨基硫脲与乙酸反应制得3-甲基-4-氨基-1,2,4-三氮唑-5-硫酮(1),在无水乙醇中以三乙胺作为反应的缚酸剂,1与[二-(4-氟苯基)]甲基氯经微波辐射制得中间体3-甲基-4-氨基-5-[二-(4-氟苯基)]甲硫基-1,2,4-三氮唑(2),然后中间体2与芳香醛经缩合反应制得了10个Schiff碱3a~3j.合成的10个目标化合物通过熔点测定和质谱、红外光谱、核磁共振氢谱分析、元素分析对其结构进行确证.  相似文献   

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分别采用微波辐射法和加热回流的常规方法,将1-氨基-2-(2-甲基/三氟甲基-苯并咪唑-1-亚甲基)-5-巯基-1,3,4-三唑与α-溴代芳基乙酮3a~3e反应,合成了一系列未见文献报道的1,2,4-三唑[3,4-b]-1',3',4'-噻二嗪类化合物4a~4e和5a~5e.微波辐射法具有反应时间短、产率高、副反应少等优点.标题化合物经元素分析,IR,1HNMR,MS确证结构.  相似文献   

6.
研究了N-(3,5-二氯苯基)吡啶并[2,3-d]嘧啶-4-胺的合成新方法.在微波辐射条件下,以2-氨基-3-氰基吡啶为原料,依次通过缩合、环化和Dimroth重排两步反应,得到目标产物N-(3,5-二氯苯基)吡啶并[2,3-d]嘧啶-4-胺,总收率90%.并应用该方法,合成了20个吡啶并[2,3-d]嘧啶-4-胺类化合物.同时,比较了微波辐射和传统油浴加热条件下的反应结果.结果表明,微波辐射条件下,反应时间短,产率高.此方法有望成为一种高效、温和、对环境友好的合成吡啶并[2,3-d]嘧啶-4-胺的方法.  相似文献   

7.
以芳香醛、4-溴茚酮、丙二腈和醋酸铵为原料,分别用微波辐射和传统加热法,一步法合成7种未见文献报道的2-氨基-6-溴基-4-芳基-5H-茚并[1,2-b]吡啶-3-腈衍生物.对比两种方法,在常压下微波具有反应时间短、产率较高等特点.所有化合物均经IR,1HNMR和元素分析确定.  相似文献   

8.
微波辐射下一步合成2-芳基-4,5-二苯基咪唑衍生物   总被引:2,自引:0,他引:2  
微波辐射下一步合成2-芳基-4;5-二苯基咪唑衍生物;芳基咪唑; 二苯基二(甲)酮; 芳醛; 微波辐射; 合成  相似文献   

9.
微波辐射;二氢吡啶酮;芳醛;麦氏酸;利用微波技术合成4-芳基-5-甲氧羰基-6-甲基3;4-二氢吡啶-2-酮  相似文献   

10.
利用微波辐射, 以碳酸钾为催化剂, 快速于水相中合成了一系列3,5-双亚苄基哌啶-4-酮衍生物, 所合成化合物的结构经红外光谱、核磁共振光谱和高分辨率质谱予以确证.  相似文献   

11.
The crystal structure of LaIr4B4 has been refined from single crystal counter data. LaIr4B4 is tetragonal,P42/n,Z=2, isotypic with NdCo4B4, |F|/|F o|=0.039 for 312 independent reflections [|F o|>2 (F o)]. ThIr4B4 and ThOs4B4 also belong to the NdCo4B4-type structure. URu4B4 and UOs4B4 were found to crystallize with LuRu4B4-type structure. The crystal chemistry of (RE)T 4B4-phases is discussed and simple geometric relations are shown to exist between them.Dedicated to Prof.B. T. Matthias in celebration of his 60th birthday.  相似文献   

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Vibrational Spectra of As4S4 and As4Se4 The vibrational spectra of solid α- and β-As4S4 and the Raman spectrum of molten As4S4 have been recorded. The assignments of the frequencies are proposed mainly based on polarization data. The Raman melt spectra suggest that As4S4 molecules (symmetry D2d) are retained in the molten state. A partial decomposition of the melt by prolonged laser irradiation was observed. The Raman spectrum of solid As4Se4 is presented and the frequencies are tentatively assigned to an As4Se4 molecule of the cradle type, possessing D2d symmetry.  相似文献   

15.
Ab initio calculations have been performed on B4H4, B4Cl4 and B4F4 in order to aid our understanding of the bonding in these compounds, which is presumably based on a tetrahedral boron cage. This cage has only 8 electrons and so is less than that expected on the basis of the usual framework electron counting rules. Basis sets with polarisation functions were used at the SCF, CI and CPF levels of theory to confirm that the T d structures are indeed more stable than the D 4h ones. Davidson-Roby population analyses were able to show that many factors, including 3-centre 2-electron bonding and backbonding from the ligand to the boron cage, are of importance in determining the relative stability of the three compounds, of which B4Cl4 is the only one that has yet been observed experimentally.  相似文献   

16.
Die erstmals dargestellten isotypen Verbindungen Ba4SiAs4, Ba4GeAs4, Sr4SiAs4 und Sr4GeAs4 kristallisieren kubisch, Raumgruppe P4 3n, mit 8 Formeleinheiten in der Elementarzelle: In den Strukturen liegen isolierte, d.h. nur von Ba-Ionen umgebene SiAs - bzw. GeAs -Tetraeder vor. Die Verbindungen sind die bisher eindrucksvollsten Beispiele für Zintlphasen mit komplexen Anionen. Zintl Phases with Isolated SiAs4 or GeAs4 Anions: Preparation and Structure of Ba4SiAs4, Ba4GeAs4, Sr4SiAs4, and Sr4GeAs4 The new compounds Ba4SiAs4, Ba4GeAs4, Sr4SiAs4, and Sr4GeAs4 have been prepared and their structures determined. They crystallize in the cubic system, P4 3n, with axes: data see “Inhaltsübersicht”. There are isolated SiAs or GeAs tetrahedra in the structures. The compounds can be interpreted as Zintl phases with complex anions.  相似文献   

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On K4PbO4 and Rb4PbO4 For the first time single crystals of K4[PbO4] have been prepared by heating K4PbO3 in O2. The structure has been refined [K4[PbO4]: 3029 I0(hkl), four circle diffractometer PW 1100, ω-scan, MoKα, R = 6.73%, Rw = 6.64%, P1 ; a = 658.62(15), b = 658.41(12), c = 986.64(21) pm, α = 79.74(2)°, β = 108.45(2)°, γ = 112.49(2)°, dx = 3.79 g · cm?3, dpyk = 3.78 g · cm?3, Z = 2; Rb4[PbO4]: a = 686.94(18), b = 684.43(18), c = 1020.73(21) pm, α = 79.28(2)°, β = 108.40(2)°, γ = 113.02(2)°, dx = 4.87 g · cm?3, dpyk = 4.85 g · cm?3, Z = 2, (from Rb2PbO3 and Rb2O)]. Both compounds are isotypic with K4SnO4. The Effective Coordination Numbers, ECoN, these via Mean Fictive Ionic Radii, MEFIR, are calculated.  相似文献   

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