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1.
通过2-(4-吡啶)-咪唑[4,5-f]-1,10-邻菲啰啉(L1)与[Ru(η6-cymene)(μ-Cl)Cl]2反应合成了3种新型芳基钌配合物, 并利用新配体2-(4-咪唑基苯基)咪唑[4,5-f]-1,10-邻菲啰啉(L2)与RuCl3反应合成了配合物4. 利用核磁共振波谱、 质谱等对配合物进行了表征. 通过紫外光谱和圆二色谱研究了配合物在缓冲溶液中的稳定性及与CT-DNA的相互作用, 利用荧光光谱研究了配合物与牛血清蛋白的作用, 用乌氏黏度计测试了配合物对DNA黏度的影响, 并通过荧光光谱、 凝胶电泳研究了配合物4在不同pH条件下的荧光响应及与pBR322 DNA的作用. 结果表明, 配合物通过嵌入的方式与DNA作用, 并对DNA的二级结构产生影响; 配合物1~4均可与牛血清蛋白的一个位点发生相互作用并使其发生静态荧光猝灭. 配合物4在光照条件下有活性氧生成, 可以使pBR322 DNA断裂并在酸性溶液中荧光增强.  相似文献   

2.
电化学诱导咪唑铜配合物断裂DNA的研究   总被引:2,自引:0,他引:2  
二价咪唑铜配合物可以在电极表面发生氧化还原反应,该过程对应于单电子准可逆过程.荧光光谱电化学结果表明,还原产物一价咪唑铜配合物可以被空气中的O2氧化为二价.在中性的Tris-HCl缓冲溶液中,配合物与DNA之间存在弱相互作用,其键合常数仅为2.7×102L/mol.荧光光谱及电化学结果表明为嵌入式作用.据此建立了一种电化学诱导咪唑铜配合物对DNA断裂的新方法,并采用差示扫描量热(DSC)法检验了断裂结果.  相似文献   

3.
合成了5,10,15-三(4-羧基-苯基)咔咯铁配合物(FeTCPC), 采用紫外-可见光谱、 荧光光谱、 圆二色光谱和黏度法研究了FeTCPC与小牛胸腺DNA(ct-DNA)的相互作用, 并用琼脂糖凝胶电泳研究了氧化剂参与下FeTCPC对pBR22 DNA的氧化断裂能力. 结果表明, FeTCPC与DNA的作用方式为外部结合模式, 其结合常数Kb=1.96×105 L/mol. 在过氧化氢(H2O2)或叔丁基过氧化氢(TBHP)为氧化剂条件下, FeTCPC展现出良好的DNA氧化断裂能力, 且TBHP的氧化断裂效率比H2O2好. 用H2O2和TBHP为氧化剂时, FeTCPC可能是通过活性Fe-oxo机制对DNA氧化断裂.  相似文献   

4.
任春醒  李晓霞  郭力 《物理化学学报》2018,34(10):1151-1162
为探究固相CL-20热分解反应机理,本文采用反应分子动力学ReaxFF MD模拟研究了含有128个CL-20分子的超胞模型在800–3000 K温度下的热分解过程。借助作者所在课题组研发的反应分析及可视化工具VARxMD得到了热分解过程中多种反应中间物和较为全面的反应路径。氮氧化物是CL-20初始分解的主要中间产物,其中NO2是数量最多的初始分解产物,观察到的中间物NO3的生成量仅次于NO2。统计CL-20初始分解的所有反应后发现,在所有考察温度下CL-20初始分解路径主要是N―NO2断裂反应和C―N键断裂引起开环的单分子反应路径。N―NO2断裂反应数量在高温下显著增多,而C―N键断裂引起的开环反应数量随温度升高变化不大。在低温热分解模拟中还观察到CL-20初始分解阶段生成的NO2会发生双分子反应—从CL-20分子中夺氧生成NO3。对CL-20热分解过程中环结构演化进行分析后发现,CL-20分解的早期反应中间物主要为具有3元或2元稠环结构的吡嗪衍生物,随后它们会分解形成单环吡嗪。吡嗪六元环结构在热分解过程中非常稳定,这一模拟结果支持Py-GC/MS实验中提出吡嗪存在的结论。CL-20中的咪唑五元环结构相对不稳定,在热分解过程中会发生开环分解而较早消失。由ReaxFF MD模拟得到的3000 K高温热分解产物N2,H2O,CO2和H2的数量与爆轰实验的测量结果定量吻合。本文获得的对CL-20热分解机理的认识表明ReaxFF MD结合VARxMD有可能为深入了解热刺激下含能材料复杂化学过程提供一种有前景的方法。  相似文献   

5.
研究了四对甲氧基苯基金属卟啉配合物对SOCl2还原反应的电催化行为.实验结果表明,金属卟啉配合物对SOCl2还原反应有较好的电催化活性,不同中心离子配合物的活性顺序是Fe2+≈Co2+>Ni2+.这类配合物能阻止反应产物LiCl在电极表面沉积,增大电池放电容量.  相似文献   

6.
严龙  庞欢  黄耀兵  傅尧 《化学学报》2014,(9):1005-1011
结合氢转移方法,研究了木质素模型物2-(2'-甲氧基苯氧基)-1-苯乙醇(1a)分子在无外加氢源的条件下利用金属钯催化剂催化发生C—O键断裂反应.合成并表征了一系列Pd负载型催化剂,通过优化发现反应体系在环己烷溶剂和弱碱添加剂Na2HPO4条件下显示出较好的催化效率.结合反应特点将催化剂进行改进,使用MgO作为载体的催化剂Pd/MgO高效完成了木质素模型物的分子自供氢降解.反应过程可能分为两步进行:首先,模型物在钯表面先进行脱氢过程,含羟基的木质素模型物二聚体1a脱去氢后生成酮式中间体2-(2'-甲氧基苯氧基)-1-苯乙酮(1b),被脱去的氢原子吸附于钯表面.随后,脱氢中间体1b在Pd催化下与其表面吸附的H作用,发生催化C—O键断键过程.  相似文献   

7.
大取代茂锆配合物合成及分子内消除反应研究   总被引:1,自引:0,他引:1  
许胜  黄吉玲 《化学学报》2005,63(14):1318-1322
通过6,6-二烷基富烯与2-MeOArLi进行加成反应, 得到含芳氧取代的环戊二烯基锂盐, 再与取代茂三氯化锆反应, 合成了不对称大位阻取代茂锆配合物RCpCpoZrCl2 [Cpo=2-MeOArCR1R2Cp, R1, R2=CH3, C2H5, (CH2)5, etc.], 所得的配合物均通过1H NMR, IR, MS和EA鉴定. 在此过程中发现该类配合物能进行分子内消除反应, 脱去苯甲醚得到烯基取代的二氯二茂锆配合物, 该反应为未见文献报道的新反应, 对该反应进行了研究.  相似文献   

8.
以NitrosulfophenolS作为非氨基偶氮染料致癌性研究的化学模型,用可见吸收光谱法、毛细管区带电泳法和电分析化学法等研究了模型物在酶催化系统模型-HRP/H2O2体系的作用下发生氧化断裂反应的过程,确定了反应的主要产物为吕的重氮萘离子,并与DNA有效的结合。  相似文献   

9.
利用循环伏安法和红外漫反射光谱法研究化学镀镍过程中丙酸的作用机理. 不同丙酸浓度下的循环伏安曲线表明,丙酸能同时促进Ni2+的还原和H2PO-2的氧化.根据丙酸分别与NaH2PO2和NiSO4共存时镍基体上吸附物的红外漫反射光谱变化,推断丙酸是通过与NaH2PO2和Ni2+形成表面络合物来促进化学沉积的. 丙酸能与NaH2PO2形成分子间氢键,促使P-H键断裂并生成·PHO-2中间物,从而提高H2PO-2的氧化速度; 同时,丙酸以其-OCO-官能团与Ni2+生成桥式配合物,有利于加速Ni2+的沉积. H2PO-2氧化速度的提高有助于磷的沉积,从而增大了化学镀层中的磷含量.  相似文献   

10.
分别使用具有相似羧基含量的海藻纤维、 丙烯酸接枝改性聚四氟乙烯纤维和聚丙烯纤维(PAA-g-PP 和PAA-g-PTFE)3种含羧酸纤维与Fe3+进行配位反应, 研究和比较了反应的动力学特性及影响因素. 将3种含羧酸纤维铁配合物分别作为非均相Fenton反应催化剂应用于染料降解反应中, 分析和评价了其配位结构和表面性能对催化活性的影响. 结果表明, 在所涉及的温度和浓度范围内, 3种含羧酸纤维与Fe3+的反应均很好地符合Langmuir等温吸附模型和Lagergren准二级动力学方程. Fe3+初始浓度的增加会降低反应速率常数, 而反应温度的升高则会增加配合物中Fe3+的配合量. 在相同反应条件下, 海藻纤维比PAA-g-PP和PAA-g-PTFE更容易与Fe3+发生反应, 且反应速率常数和Fe3+配合量按照下列顺序排列: 海藻纤维>PAA-g-PP>PAA-g-PTFE. 3种含羧酸纤维铁配合物都能够在染料氧化降解反应中作为非均相Fenton催化剂, 且紫外光比可见光更能够提高其催化活性. 海藻纤维铁配合物比其它2种含羧酸纤维铁配合物具有更好的催化作用, 这与三者在配位结构和表面性能之间的显著差异有关.  相似文献   

11.
The chemistry of (H(2)O)(n)(?-), CO(2)(?-)(H(2)O)(n), and O(2)(?-)(H(2)O)(n) with small sulfur-containing molecules was studied in the gas phase by Fourier transform ion cyclotron resonance mass spectrometry. With hydrated electrons and hydrated carbon dioxide radical anions, two reactions with relevance for biological radiation damage were observed, cleavage of the disulfide bond of CH(3)SSCH(3) and activation of the thiol group of CH(3)SH. No reactions were observed with CH(3)SCH(3). The hydrated superoxide radical anion, usually viewed as major source of oxidative stress, did not react with any of the compounds. Nanocalorimetry and quantum chemical calculations give a consistent picture of the reaction mechanism. The results indicate that the conversion of e(-) and CO(2)(?-) to O(2)(?-) deactivates highly reactive species and may actually reduce oxidative stress. For reactions of (H(2)O)(n)(?-) with CH(3)SH as well as CO(2)(?-)(H(2)O)(n) with CH(3)SSCH(3), the reaction products in the gas phase are different from those reported in the literature from pulse radiolysis studies. This observation is rationalized with the reduced cage effect in reactions of gas-phase clusters.  相似文献   

12.
Binuclear manganese oxide cations, Mn2O2+ (1) and Mn2O+ (2), have been prepared in the gas phase by a chemical route by using the reaction of O2 with the ions formed from the ionization of [Mn2(CO)10]. Their reactivity towards selected neutrals has been probed by Fourier Transform Ion Cyclotron Resonance spectrometry (FT-ICR), and insights into the structure of the reagent ions and of ionic reaction intermediates have been obtained by collision-induced dissociation and by the outcome of ion-molecule reactions. Whereas dihydrogen proved to be unreactive, the hydrides H2O, H2S, and NH3 react by exchange, addition, and oxidation pathways. Oxidative features are displayed also in the reactions of 1 and 2 with model organic molecules, such as methanol, acetaldehyde, and unsaturated hydrocarbons, which undergo dehydrogenation, O-atom transfer, and homolytic cleavage processes. Potentially catalytic cycles are indicated, based on the regeneration of 1 by ligand exchange of end product ions with O2.  相似文献   

13.
A Cu‐catalyzed cascade oxidative radical process of β‐keto sulfones with alcohols has been achieved by using oxygen as an oxidant. In this reaction, β‐keto sulfones were converted into sulfinate esters under the oxidative conditions via cleavage of C?S bond. Experimental and computational studies demonstrate that a new pathway is involved in this reaction, which proceeds through the formation of the key four‐coordinated CuII intermediate, O?O bond homolysis induced C?S bond cleavage and Cu‐catalyzed esterification to form the final products. This reaction provides a new strategy to sulfonate esters and enriches the research content of C?S bond cleavage and transformations.  相似文献   

14.
The synthesis, characterization, and reactivity properties of a mononuclear Ni(II) cis-beta-keto-enolate complex, [(6-Ph2TPA)Ni(PhC(O)C(OH)C(O)Ph)]ClO4 (1) (6-Ph2TPA = N,N-bis((6-phenyl-2-pyridyl)methyl)-N-((2-pyridyl)methyl)amine) are reported. Complex 1 was characterized by X-ray crystallography, elemental analysis, 1H NMR, and electronic absorption and infrared spectroscopy. Treatment of 1 with 1 equiv of Me4NOH.5H2O in the presence of O2 results in oxidative carbon-carbon bond cleavage and the formation of a new Ni(II) dicarboxylate complex, [(6-Ph2TPA)Ni(O2CPh)2(H2O)] (2). Complex 2 has been characterized by X-ray crystallography, 1H NMR, UV-vis, IR, and elemental analysis. Use of 18O2 in the reaction of 1 to produce 2 results in the incorporation of one 18O atom per carboxylate ligand in the majority of the sample. Production of CO in the oxidative conversion of 1 to 2 was detected using the palladium chloride method. This is the first functional model system of relevance to acireductone dioxygenase (ARD), a novel Ni(II)-containing enzyme that catalyzes a reaction that is a shunt out of the methionine salvage pathway in K. pneumoniae.  相似文献   

15.
顾方伟  刘海超 《催化学报》2020,(7):1073-1080
纤维素是葡萄糖通过β-1,4-糖苷键链接而成的高聚物,在木质纤维素中含量最高,结构稳定,较难水解.糖苷键的解聚主要有三种方式:酶水解、酸水解以及碱降解.酶解的优点是反应条件温和、副产物少,但存在成本高、活性低等缺点,限制了其大规模的工业化生产.碱水解纤维素的同时伴随着葡萄糖的peeling-off反应得到异变糖酸,需要消耗大量的碱,并且强碱也存在腐蚀性强和回收难等问题.酸水解是目前工业上常用的纤维素水解方法,在保持较高葡萄糖选择性的同时,通过对反应条件的控制(提高反应温度和酸浓度)来提高纤维素的水解效率,但是硫酸对设备的腐蚀性强,也难以回收,不符合绿色化学的发展要求.固体酸是近年来研究较多的纤维素水解催化剂.固体酸虽然腐蚀性弱、易回收,但是其活性低,水热稳定性较差,目前还不具备大规模生产的条件.本文发展了一种羟基自由基活化断裂糖苷键的方法,利用羟基自由基的高活性在低温下实现糖苷键的选择性断裂,同时羟基自由基与糖苷键作用后转化为无毒无害的水和氧气,将不会对环境造成污染.我们首先以纤维二糖作为纤维素的模型分子,通过羟基自由基能够优先与糖苷键反应得到葡萄糖和葡萄糖酸的实验证实所提出的方法的可行性.实验表明,来自H2O2的·OH自由基能够在铜基催化剂作用下选择性氧化断裂其糖苷键,生成葡萄糖和葡萄糖酸.比如:采用均相CuSO4体系,纤维二糖转化率约为20%时,葡萄糖和葡萄糖酸的选择性分别为28.5%和32.3%.采用多相CuO/SiO2(4 wt%CuO)体系,纤维二糖转化率约为20%时,葡萄糖和葡萄糖酸的选择性约分别为23.3%和25.7%,并且该催化剂具有良好的循环使用性能.与·OH类似,CuSO4催化过硫酸钾生成的·SO4-自由基也能够有效转化纤维二糖,在纤维二糖转化率为20%时,葡萄糖和葡萄糖酸的选择性分别为36.6%和39.9%.利用这种·OH和·SO4-自由基氧化的方法,也能够在较低温度下(333 K)解聚纤维素中的糖苷键.我们发展了H2O2浸渍预处理纤维浸渍预处理纤维素的方法,通过部分破坏纤维素糖苷键,提高了纤维素的水解活性.比如:处理后的纤维素在413 K条件下反应12 h,纤维素转化率和葡萄糖选择性分别达到约36.1%和42.5%.XRD结果表明,处理后的纤维素的晶体结构未发生明显的变化.FT-IR表征结果显示处理后的纤维素表面生成了大量的羧酸基团.  相似文献   

16.
The reaction of the diphosphine-phosphine oxide ligand {[o-iPr(2)P-(C(6)H(4))](2)P(O)Ph} with Pd(PtBu(3))(2) proceeds with cleavage of the Ph-P(O) bond to give an original κ(P,P(O),P)-pincer complex. According to DFT calculations, this oxidative addition occurs via a three-center P,C(ipso),Pd transition state.  相似文献   

17.
在量子化学对SiH与H2O和H2S反应计算的基础上,运用统计热力学和Wigner校正的Eyring过渡态理论,计算了上述两反应在200~2000 K温度范围内的热力学函数、平衡常数、频率因子A和速率常数随温度的变化。计算结果表明,两反应在低温下具有热力学优势,而在高温下具有动力学优势。比较两反应的计算结果发现,在相同的温度下,SiH与H2O反应比SiH与H2S反应放热较多,但速率常数却较小。SiH与H2O反应和前文报道的SiH与HF反应的比较表明,SiH与H2O反应放热较少,而且在相同温度下,速率常数也较小。  相似文献   

18.
The interaction of an H(2)O molecule with cluster models of fractured silica surfaces was studied by means of quantum mechanical calculations. Two clusters representing homolytic cleavage (triple bond Si(*) and triple bond SiO(*)) and two representing heterolytic cleavage (triple bond Si(+) and triple bond Si-O(-)) of silica surfaces were modeled. Vibrational frequencies of the reactants and products of these silica surfaces reacting with H(2)O have been calculated and compare favorably with experiment. Comparisons of the Gibbs free and potential energies for the model ionic and radical states were made, and the radical pair of sites was predicted to be more stable by approximately -70 to -85 kJ/mol, depending on the computational methodology. These calculations suggest that when silica is fractured in a vacuum homolytic cleavage is favored. Reaction pathways were investigated for these four model surface sites interacting with H(2)O. The reaction of H(2)O with triple bond SiO(*) was predicted to generate OH(*). Rate constants for these reactions were also calculated and predict a rapid equibrium for the reaction triple bond SiO(*) + H(2)O --> triple bond SiOH + OH(*). Stability of a finite number of triple bond SiO(*) sites at equilibrium in the above reaction with H(2)O was also predicted, which implies a long-term ability of silica surfaces to produce OH(*) radicals if the sites of the broken bonds do not repolymerize to form siloxane groups.  相似文献   

19.
Gas-phase reaction of C(1)F3S(2)O2O(3)C(4)H2C(5)F3 and F(16) is investigated using DFT method. The geometries of various stationary points and their relative energies are obtained from 6-31+G*, 6-311G**, and 6-311++G** levels. In the SN2(C) reaction leading to the cleavage of the C(4)–O(3) bond, the reaction complex results from attacking of F at a hydrogen atom H11 attached to carbon atom C(4). Afterward, F is attacking the atom C(4) from the backside of the atom O(3) with the help of the neighboring effect, and meanwhile a multi-membered ring, F(16)–H(11)–C(4)–C(5)–F(16), is being formed. The SN2(C) reaction is irreversible. On the contrary, the SN2(S) reaction leading to the cleavage of the S(2)–O(3) bond is reversible, and it is initiated by attacking of F at the atom S(2) from the backside of the atom O(3). The products of the reaction CF3SO3CH2CF3 +F should be, thermodynamically, controlled due to the reversibility of the SN2(S) reaction, and those result, chemospecifically, from the cleavage of the C–O bond. At last, the SCRF calculations confirm that the solvent effect is preferable to the SN2(C) reaction.  相似文献   

20.
Density functional theory (DFT) calculations are carried out to investigate partial oxidation of propylene over neutral VO 3 clusters. C=C bond cleavage products CH 3CHO + VO 2CH 2 and HCHO + VO 2CHCH 3 can be formed overall barrierlessly from the reaction of propylene with VO 3 at room temperature. Formation of hydrogen transfer products H 2O + VO 2C 3H 4, CH 2=CHCHO + VO 2H 2, CH 3CH 2CHO + VO 2, and (CH 3) 2CO + VO 2 is subject to tiny (0.01 eV) or small (0.06 eV, 0.19 eV) overall free energy barriers, although their formation is thermodynamically more favorable than the formation of C=C bond cleavage products. These DFT results are in agreement with recent experimental observations. VO 3 regeneration processes at room temperature are also investigated through reaction of O 2 with the CC bond cleavage products VO 2CH 2 and VO 2CHCH 3. The following barrierless reaction channels are identified: VO 2CH 2 + O 2 --> VO 3 + CH 2O; VO 2CH 2 + O 2 --> VO 3C + H 2O, VO 3C + O 2 --> VO 3 + CO 2; VO 2CHCH 3 + O 2 --> VO 3 + CH 3CHO; and VO 2CHCH 3 + O 2 --> VO 3C + CH 3OH, VO 3C + O 2 --> VO 3 + CO 2. The kinetically most favorable reaction products are CH 3CHO, H 2O, and CO 2 in the gas phase model catalytic cycles. The results parallel similar behavior in the selective oxidation of propylene over condensed phase V 2O 5/SiO 2 catalysts.  相似文献   

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