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1.
通过1-(3-氨基丙基)-2,8,9-三氧杂-5-氮杂-1-硅杂双环[3,3,3]十一烷与酸反应或1-(3-氯丙基)-2,8,9-三氧杂-5-氮杂-1-硅杂双环[3,3,3]十一烷与胺反应,合成了14种1-(3-氨基丙基)-2,8,9-三氧杂-5-氮杂-1-硅杂双环[3,3,3]十一烷衍生物.体外细胞培养试验结果表明,某些1-(3-氨基丙基)-2,8,9-三氧杂-5-氮杂-1-硅杂双环[3,3,3]十一烷衍生物对艾氏腹水癌细胞具有较好的杀伤活性.  相似文献   

2.
利用微波促进氮杂糖硝酮(2)与丙烯酸类衍生物(3)发生1,3-偶极环加成反应,立体选择性地得到了一系列新的含异噁唑烷的氮杂糖衍生物(4),反应效率显著提高,反应时间由95h缩短为5~15min,收率由67%提高到78%~88%.利用NMR和HRMS等方法结合化合物(4d-1)的单晶结构确定了产物的结构和相对构型.  相似文献   

3.
1972年,Kameda Y等人[1]从脱氮假单胞菌Pseudomonas denitrificans的降解产物中分离得到井冈霉烯胺(valienamine),其半椅式构象能模拟酶催化糖苷键水解的氧碳鎓正离子中间体(见图1),是a-葡萄糖苷酶抑制剂阿卡波糖、伏格列波糖的药效必需结构团.  相似文献   

4.
多硝基氮杂环丁烷及其衍生物因其四元杂环所具有很高的环张力能,赋予这类化合物优良的爆轰性能,从而成为一类重要的高能量密度材料,其中1,3,3-三硝基氮杂环丁烷(TNAZ)成为最具有应用前景的含能材料之一。N-乙酰基-3,3-二硝基氮杂环丁烷(ADNAZ),为白色或无色晶体,可溶于丙酮,二氯甲烷等有机溶剂。  相似文献   

5.
源于D-核糖的苯并咪唑并氮杂糖1和2具有良好的β-葡萄糖糖苷酶抑制活性,对其苯环部位结构修饰,通过Mitsunobu反应合成了30个新型苯环不同位置上含单取代基的苯并咪唑并氮杂糖稠合三环衍生物11a~11g, 12a~12g,13a~13h和14a~14h.测试了新合成化合物对β-葡萄糖糖苷酶(杏仁)的抑制活性.结果显示,化合物13e和13f与14f的混合物对β-葡萄糖糖苷酶(杏仁)表现出优越的酶抑制活性, IC50值分别为0.49和0.25μmol/L,活性高于阳性对照米格列醇的酶抑制活性.构效分析表明,稠合三环氮杂糖中的六元氮杂糖环形式有利于此类苯并咪唑并氮杂糖三环衍生物的β-葡萄糖苷酶抑制活性.苯环上3'或4'位连有给电基团,如甲基、甲氧基等,将极大地促进化合物的酶抑制活性.  相似文献   

6.
水合茚三酮与芳甲基酮、水合肼缩合环化制得2-芳基-3,4-二氮杂芴酮(2); 2经还原得2-芳基-3,4-二氮杂芴(3).2与2-溴联苯格氏试剂反应得到中间体叔醇(4); 4在酸性条件下关环合成了2-芳基-3,4-二氮杂螺二芴,其结构经1H NMR,13C NMR和元素分析表征.  相似文献   

7.
三氮烯试剂是测定镉、汞、锌、镍、铜等金属离子的高灵敏显色试剂[1~3],其中含氮杂环的三氮烯试剂的显色效果更佳[4~6]。为改善试剂的分析性能,提高此类试剂的灵敏度和选择性,合成了未见报道的1-(4-硝基苯基)-3-(5-溴-吡啶)-三氮烯(NPBPDT),并对其与镍的显色反应进行了研究。结  相似文献   

8.
278.15-313.15 K下糖-水二元体系的介电常数   总被引:1,自引:0,他引:1  
测定了D-(-)-果糖、D-(+)-葡萄糖、D-(+)-半乳糖、D-(+)-木糖和D-(-)-核糖五种糖的水溶液在不同质量摩尔浓度和不同温度下的介电常数(D). 结果表明, 在一定温度下, 这些糖的水溶液介电常数对数值都随糖浓度的增大而减小; 在一定糖浓度时, 介电常数值随温度升高而减小. 果糖、葡萄糖、半乳糖和木糖水溶液的介电常数(D)随温度的变化均满足关系式: lgD=A1-B1(T-298.15), 而核糖水溶液则符合: lgD=A2-B2(T-298.15)+C2(T-298.15)2. 此外, 这五种糖的水溶液的介电常数与摩尔分数(x)满足关系式: lg(D/D0)=-B3x. 在相同温度和浓度时, 介电常数的大小顺序通常为: 水>半乳糖-水>果糖-水>葡萄糖-水≥木糖-水(而核糖较特殊).  相似文献   

9.
以1,3-二氟苯为起始原料,依次经傅-克酰基化,1H-三氮唑取代,环氧化,胺解,4H-三氮唑环化,磷酸酯化和钯碳加氢反应等7步反应合成了福司氟康唑的主要杂质--2-(2,4-二氟苯基-1-(1H-1,2,4-三氮唑-1-基)-3-(4H-1,2,4-三氮唑-4-基)-2-丙基磷酸二氢酯,纯度98%,总收率7.8%,其结构经1H NMR确证。  相似文献   

10.
合成了一种新的杂环三氮烯显色剂1 (5 硝基2 吡啶) 3 (偶氮苯4 磺酸) 三氮烯(NPABST),在Na2B4O7 NaOH缓冲介质中,NPABST在非离子表面活型剂Tween 80存在下与Cd(Ⅱ)形成1∶3的稳定配合物,其表观摩尔系数为1.8×105L·mol-1·cm-1,镉量在0~0 32μg/mL范围里遵守比尔定律。  相似文献   

11.
The reaction of ZnI2 and pyrimidine in acetonitrile results in the formation of the 1:2 compound ZnI2(pyrimidine)2 (1), which consists of discrete tetrahedral building blocks. Slow heating of 1 at 1 degrees C/min leads to its transformation into the ligand-deficient intermediate 1:1 compound ZnI2(pyrimidine) (3), which upon further heating decomposes into the most ligand-deficient 2:1 compound (ZnI2)2(pyrimidine) (4). In contrast, the 2:3 compound (ZnI2)2(pyrimidine)3 (2) is formed as an intermediate by decomposing 1 using a faster heating rate of 8 degrees C/min. Compound 2 consists of oligomeric units in which each ZnI2 unit is coordinated by two iodine atoms and one bridging and one terminal pyrimidine ligand. The crystal structure of compound 3 is built up of ZnI2 units, which are connected by the ligands into chains. For the thermal transformation of 1 into 3 via 2 as the intermediate, a smooth reaction pathway is found in the crystal structure, for which only small translational and rotational changes are needed. The metastable solvated compound (ZnI2)(pyrimidine)(acetonitrile)0.25 (5) consisting of (ZnI2)4(pyrimidine)4 rings is obtained by quenching the reaction of ZnI2 and pyrimidine in acetonitrile using an antisolvent. On heating, 5 decomposes into a new polymorphic 1:1 compound 6, which consists of (ZnI2)(pyrimidine) chains. On further heating, 6 transforms into a third polymorphic 1:1 compound 7, which consists of (ZnI2)3(pyrimidine)3 rings, and finally into the 1:1 compound 3. Solvent-mediated conversion experiments reveal that compounds 1-4 are thermodynamically stable, whereas compounds 5-7 are metastable. Time-dependent crystallization experiments unambiguously show that compound 7 is formed by kinetic control and transforms within minutes into compound 6, which finally transforms into 3. Compound 3 represents the thermodynamically most stable 1:1 modification, whereas compounds 6 and 7 are metastable. The different compounds obtained by thermal decomposition and by crystallization from solution represent a snapshot of the species in solution and thus provide insight into the formation of coordination compounds.  相似文献   

12.
The scaffold protein IQGAP1 shows elevated levels in several cancer types, but its expression in hepatocellular carcinoma is unknown. We found that 58% of human hepatocellular carcinoma tissue samples had increased IQGAP1 expression compared to adjacent normal tissue. Overexpressing IQGAP1 raised the in vivo tumorigenicity of hepatocellular carcinoma cells, and forced overexpression of IQGAP1 in vitro stimulated cell proliferation. Cell growth was reduced by knockdown or mutation of IQGAP1, or by treatment of cells with a phosphotidylinositol 3-kinase inhibitor. To determine the mechanism by which IQGAP1 overexpression affected hepatocellular carcinoma cells, we confirmed its interaction in these cells with mammalian target of rapamycin (mTOR), a serine/threonine kinase that integrates signals about nutrient and energy status with downstream effectors that influence cell division. In addition, we discovered a new interaction involving IQGAP1, mTOR and Akt, which is a downstream target of mTOR. Akt phosphorylation on Ser-473, which is catalyzed by mTOR and required for Akt activation, increased with increasing amounts of IQGAP1, and decreased with IQGAP1 mutation. We hypothesize that IQGAP1 is a scaffold that facilitates mTOR and Akt interaction.  相似文献   

13.
In the present work, the wavelength-dependent mechanistic photochemistry of glyoxal in the gas phase has been explored by ab initio calculations of potential-energy surfaces, surface crossing points, and adiabatic and nonadiabatic rates. The CHOCHO molecules in S1 by photoexcitation at 393-440 nm mainly decay to the ground state via internal conversion, which is followed by molecular eliminations to form CO, H2CO,H2, and HCOH. Upon photodissociation of CHOCHO at 350-390 nm, intersystem crossing to T1 followed by the C-C bond cleavage is the dominant process in this wavelength range, which is responsible for the formation of the CHO radicals. The C-C and C-H bond cleavages along the S1 pathway are energetically accessible upon photodissociation of CHOCHO at 290-310 nm, which can compete with the S1-->T1 intersystem crossing process. The present study predicts that the C-H bond cleavage on the S1 surface is probably a new photolysis pathway at high excitation energy, which has not been observed experimentally. In addition, the trans-cis isomerization is predicted to occur more easily in the ground state than in the excited states.  相似文献   

14.
The absolute O2 (1Δ)concentration measurement performed for a singlet oxygen generator(SOG)by using the infrared radiation-calorimetry method is reported with a detailed discussion of its principle and related technique. The influence of O2 (1Δ)gas temperature variation is considered and the corresponding correction has been made,which is neglected by the previous researchers and may cause a significant error in the case of measurement for the large O2 (1Δ)flowrate. Furthermore,an automatically balanced Wheatstone bridge circuit,which is necessary for O2 (1Δ)detection on the SOG of short operation period,is designed and tested by measuring the heat capacity of oxygen. The final error analyses give out a total relative error of ±16% for the O2 (1Δ)concentration,which mainly arises from the measurements of infrared radiation,pressure and temperature at the optical cell.  相似文献   

15.
Tris (1-benzyl-5-indolinyl)phosphine oxide, the structure of which was confirmed by alternative synthesis, is formed as a side product along with the previously described dimethyl-1-benzylindoline-5-phosphonate in the reaction of 1-benzyl-5-lithioindoline with dimethyl chlorophosphate. Dimethyl l-benzylindole-5-phosphonate was obtained by the dehydrogenation of dimethyl 1-benzylindoline-5-phosphonate with chloranil. The catalytic dehydrogenation of this same indollne is accompanied by debenzylation, which leads to dimethyl indole-5-phosphonate, and by splitting of the p-C bond.See [1] for communication LXXV.Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 4, pp. 498–501, April, 1972.  相似文献   

16.
The N-H[ellipsis (horizontal)]π hydrogen-bonded (H-bonded) structures of pyrrole (Py) and N-methylpyrrole (NMPy) binary clusters have been studied by IR cavity ringdown spectroscopy and density functional theory calculations. The Py(1)-NMPy(1) cluster has an "L-shape" structure, which is formed by an ordinary H-bond between a N-H donor of Py and a π-electron cloud acceptor of NMPy. The Py(2)-NMPy(1) cluster has a "Cyclic" structure, which is also formed by ordinary N-H[ellipsis (horizontal)]π H-bonds as well as the weak C-H[ellipsis (horizontal)]π H-bond between the methyl CH group and the π cloud acceptor of Py. On the other hand, the Py(1)-NMPy(2) cluster shows an extraordinary structure, in which the single donor NH group is surrounded by a three-dimensional H-bond acceptor formed by two aromatic π electron clouds. We call the Py(1)-NMPy(2) cluster as the "Fish-Bite" structure. The Py(1)-NMPy(2) cluster exhibits a redshifted NH stretch by 157 cm(-1) from the Py monomer, which is larger than 94 cm(-1) of the Py(1)-NMPy(1) cluster. However, both Py(1)-NMPy(1) and Py(1)-NMPy(2) clusters have calculated IR intensities of 169 and 163 km∕mol, respectively. This result indicates that not only the N-H[ellipsis (horizontal)]π H-bonds but also the dipole-dipole interaction between Py and NMPy contributes to the Fish-Bite Py(1)-NMPy(2) cluster formation.  相似文献   

17.
A new precursor of a formal 1-hydroxy allyl anion is represented by 3-bromo-1-acetoxy-1-propene, which is synthesized by the ZnCl(2)-catalyzed addition of acetyl bromide to propenal. 3-Bromo-1-acetoxy-1-propene reacts with indium powder in THF to give the corresponding 3-acetoxylated ally indium complex, which regioselectively adds to aldehydes, affording monoprotected 1-en-3,4-diols. Diastereoselectivity mainly depends on the nature of the aldehyde; saturated aldehydes afford anti adducts, whereas the alpha,beta-unsaturated aldehydes preferentially lead to the syn isomers. Reaction: see text.  相似文献   

18.
Four azulene dyads have been synthesized and studied by spectroscopic and electrochemical methods. A triarylamine, a boron-dipyrromethene (BDP or BODIPY), a porphyrin, and an isoalloxazine moiety have been linked to an extended π electron system at the 2-position of azulene, leading to the dyads 1-4, respectively. For the synthesis of 1-4, first 2-(4-ethynyl-phenyl)azulene (EPA) was prepared, which was further reacted with the halogenated chromophores by Pd-catalyzed cross-coupling reactions. The dyads 1-4 exhibit strong absorption bands in the visible range, which are dominated by the absorption spectra of the individual subchromophores. Fluorometric studies of 2-4 revealed that after excitation of the subchromophoric unit attached to the parent azulene moiety, quenching mainly through energy transfer to azulene is effective, whereas possible charge-transfer interactions play only a minor role. Potentiodynamic oxidation of the dyads 1-4 leads to the formation of polymer films, which are deposited at the electrode. The polymer film derived from 1 was further characterized by spectroelectrochemistry. During positive doping of poly-1, a strong absorption band appears at 13,200 cm(-1), which is typical for triarylamine radical cations. This band is overlapping with a broad absorption band in the low-energy region that might be caused by charge-transfer interactions within the polymer.  相似文献   

19.
1, 1-Diphenylethylene is not capable of being homopolymerized, neither by radical nor by anionic mechanism. This is due to both electronical and sterical reasons. 1, 1-Diphenylethylene, however, is eligible to electron transfer reactions to yield the radical anion which subsequently upon combination reaction forms the dimeric dianion. On the other hand, 1, 1-diphenylethylene may be subjected to the nucleophilic addition of strong nucleophiles such as carbanions, e.g., butyllithium or polystyryllithium. Upon this reaction, a carbanion is formed the nucleophilicity of which is significantly reduced as compared with that of the starting carbanion. Molecules containing the characteristic group of 1, 1-diphenylethylene twice, in analogous reactions, may be subjected to polycombination reactions upon electron transfer. The polymers exhibit cyclic or linear structure depending on the molecular structure of the starting divinylidene compound. Upon reaction with carbanionic species, biscarbanions are formed which may be used as initiators for the anionic polymerization of suitable monomers. A variety of divinylidene compounds and their specific features are presented.  相似文献   

20.
根据轨道对称守恒原理(PCOS),推断出决定Diels-Alder反应的区域选择性的轨道相互作用是双烯体与亲双烯体各自最稳定的价轨道之间的相互作用,这种相互作用形成的是反应产物的两根新σ键中能量更低的σ键,即σ1键。在过渡态中具有更稳定的σ1键的那个区域异构体将是反应的优势产物,本文将这个规则称为σ1规则。本文的量子化学计算结果既证实了σ1规则预测Diels-Alder反应区域选择性主产物的正确性,也证实了σ1键的确来自于双烯体与亲双烯体各自最稳定的价轨道之间的相互作用。  相似文献   

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