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11.
以4-甲基苯磺酸作催化剂、用三乙胺调节pH值约为9的条件下, 由5-甲酰基-8-羟基喹啉和5-氨基-8-羟基喹啉合成了新的5,7′-(亚甲胺基)-二-8-羟基喹啉, 利用IR, UV, 1H NMR, MS确认了分子结构, 比较研究了其光致发光特性, 运用Gaussian 98量子化学程序包, 采用B3LYP密度泛函(DFT)的方法, 在6-31G(d,p)水平上对分子的几何构型进行结构优化; 并对目标化合物的稳定结构通过计算预测其振动光谱, 计算结果与实验值基本相符. 相似文献
12.
典型钙/镁基吸附剂对二氧化硒吸附特性研究 《燃料化学学报》2003,48(11):1335-1344
针对钙/镁基矿物吸附剂的主要组分CaO、CaCO3、MgO在500-800 ℃下对Se的吸附特性进行研究,并选取天然矿物方解石、白云石研究其对Se的吸附效果,且对矿物煅烧所得CaO进行吸附实验。结果表明,三种组分中CaO的吸附效果最佳,800 ℃时单位质量CaO对Se的吸附量可达368 mg/g。CaCO3对Se的吸附在700 ℃时效果最佳且其吸附产物的热稳定性较好。镁基吸附剂仅在中温段对Se具有一定吸附效果。方解石对Se的吸附效果随温度变化趋势与CaCO3相似,因其较好的孔隙结构,吸附效果略优于CaCO3。煅烧方解石得到的F-sor对Se的吸附效果优于CaO和CaCO3煅烧得到的C-sor,这与其良好的比表面积、孔隙结构与抗烧结能力有关,且F-sor吸附产物的热稳定性相对较好。F-sor对Se的吸附量最高可达403 mg/g。 相似文献
13.
A thin film of manganese hexacyanoferrate (MnHCF) was electrochemically formed on a glassy carbon (GC) electrode to prepare a chemically modified electrode (CME). The mechanism of film formation of MnHCF and its growth process were investigated in detail by cyclic voltammetry. The results show that the stoichiometric composition of MnHCF is Mn^ⅢFe^Ⅲ(CN)6, an analogue of prussian yellow. There exist three clear-cut stages in the whole modification process and the last stage is indispensable to the fabrication of homogenized, stable MnHCF film and must last for an appropriate time. The surface morphology of MnHCF/GC electrode was characterized by scanning electron microscopy (SEM), which further verified the effective deposition of MnHCF film on GC. The kinetic constants of MnHCF/GC electrode process were also evaluated. The resulting MnHCF film modified electrode presented good stability and high electrocatalytic activity toward the oxidation of H2O2, indicating that MnHCF film possesses function of catalase and can be expected for analytical purposes. 相似文献
14.
15.
高稳定性CaO-ZrO2固体碱催化剂的表征和催化性能 总被引:3,自引:0,他引:3
用共沉淀法经高温焙烧制备了CaO摩尔分数从10%至50%的CaO-ZrO2系列催化剂, 将其应用于碳酸丙烯酯和甲醇酯交换合成碳酸二甲酯过程, 并通过XRD, FT-IR, BET, ICP, CO2-TPD, XPS等表征手段研究了催化剂的物性及其催化性能随组成变化的的规律. 结果表明, 当CaO摩尔分数高于30%时, 表面出现游离的CaO, 虽然具有强碱性和高活性, 但是稳定性差; 而当CaO摩尔分数低于30%时, Ca2+进入ZrO2晶格, CaO与ZrO2形成连续固溶体, 并且随着CaO含量的增加, 晶格氧的电荷密度增加, 催化剂的碱性增强, 使得CaO-ZrO2催化剂在碳酸丙烯酯和甲醇酯交换合成碳酸二甲酯过程中获得了高活性和高稳定性. 相似文献
16.
用ab initio能量解析梯度法,在UHF(RHF)/3-21G水平上优化得到AlCn,AlCn+(n=1~3)的四十三个构型,在RHF(UHF)/3-21G水平上优化得到AlC4,AlC4+的二十六个构型,CISD能量.从能量角度所研究的AlCn,AlCn+(n=1~4)构型中,最稳定的构型均是线性构型,且Al全都在端点上,同文献报导的理论和实验结果相一致.此外,还研究了原子簇的离子化能,原子平均结合能以及原子簇的碎片化通道和碎片化能,并计算了上述最稳定构型的谐振动光谱常数. 相似文献
17.
4,4'-联吡啶与二苄基二硫代氨基甲酸镉配合物[Cd(DBTC)2]2 (1)反应得到加合物[Cd(DBTC)2(4,4'-bipy)] (2) (DBTC=N,N-二苄基二硫代氨基甲酸), 通过晶体结构分析及红外光谱等研究其结构与性质. 结果表明: 引入小分子配体会破坏[Cd(DBTC)2]2 (1)的二聚结构, 加入吡啶则得到单核的吡啶加合物[Cd(DBTC)2py] (3), 而引入4,4'-联吡啶后其结构变为新型的一维链状结构的配位聚合物2, 这种结构在二硫代氨基甲酸金属配合物中少见报道. 也比较了不同配体如吡啶及4,4'-联吡啶对Cd(II)及Zn(II)配合物结构的影响. 相似文献
18.
O3是对流层大气中一种重要的氧化剂, 其与反应活性气体的反应是大气对流层中重要的反应过程, 对于研究空气污染的对策有重要意义. 我们使用自行建设的烟雾箱模拟反应装置, 结合O3分析仪和气相色谱研究了O3和乙炔的反应. 研究测得O3和乙炔在室温下(15 ℃)反应的4次实验的速率常数的平均值为4.13×10-21 cm3•molecule-1•s-1, 其变动系数为7%. 与文献中采用其它方法得到的实验值相吻合. 所得结果表明, 我们测定的反应速率常数有较高的精密度, 我们所建的大气反应烟雾箱模拟系统是可靠的, 可以用于大气O3浓度条件下O3的其它大气化学反应过程的深入研究, 为进一步深入研究大气中其它重要反应活性气体的化学反应提供了一定的基础. 相似文献
19.
Heterobimetallic alkoxides are broadly recognized as versatile precursors for luminescence materials, and efforts are being made to develop novel routes by applying the concept of geometrical molecular design, for their synthesis and to design a single source precursor suited to photoluminescent materials. Novel and new series of bimetallic alkoxides has been prepared by metathesis route. They exhibit a lower sensitivity towards hydrolysis and so they are easier to handle as compared to other alkoxides. All the compounds were characterized by elemental analysis, FT-IR and multinuclear NMR spectroscopies. FT-IR revealed that the molecular structure of these metal alkoxides was retained to a large extent in 4 : 1 halogenated alcohol-benzene solution. The heteronuclear NMR spectroscopy provided useful information about chemical shifts for better understanding the likely structure based on interactions with their coordinate metals. The mass spectra show similar types of fragmentation pattern. SEM-EDS analyses showed consistency with the formulation. XRD patterns show an enhanced homogeneity at high temperature. TGA measurements show that thermal decomposition occured in steps that depended entirely on the chemical compositions and the synthesis routes. SEM observation reveals that the morphology and particle size strongly depend on synthesis routes for their precursors. 相似文献
20.
Ceramic BaCe0.8Ho0.2O3-α with orthorhombic perovskite structure was prepared by conventional solid state reaction, and its conductivity and ionic transport number were measured by ac impedance spectroscopy and gas concentration cell methods in the temperature range of 600-1000 ℃ in wet hydrogen and wet air, respectively. Using the ceramics as solid electrolyte and porous platinum as electrodes, the hydrogen-air fuel cell was constructed, and the cell performance at temperature from 600-1000 ℃ was examined. The results indicate that the specimen was a pure protonic conductor with the protonic transport number of 1 at temperature from 600-900 ℃ in wet hydrogen, a mixed conductor of proton and electron with the protonic transport number of 0.99 at 1000 ℃. The electronic conduction could be neglected in this case, thus the total conductivity in wet hydrogen was approximately regarded as protonic conductivity. In wet air, the specimen was a mixed conductor of proton, oxide ion and electron hole. The protonic transport numbers were 0.01-0.09, and the oxide-ionic transport numbers were 0.27-0.32. The oxide ionic conductivity was increased with the increase of temperature, but the protonic conductivity displayed a maximum at 900 ℃, due to the combined increase in mobility and depletion of the carriers. The fuel cell could work stably. At 1000 ℃, the maximum short-circuit current density and power output density were 346 mA/cm^2 and 80 mW/cm^2, respectively. 相似文献