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1.
采用MNDO(UHF)方法计算了金刚石(100)-(1×1):2H双氢化表面和(100)-(2×1):H单氢化表面的脱氢势垒,论证了决定金刚石附氢表面脱氢势垒大小的主要因素是气相-表面吸附氢原子间的相互排斥大小,得出(100)面两种表面结构脱氢势垒的理论预言值分别为71和59kJ·mol-1,均大于(111)面脱氢势垒的理论预言值42kJ·mol-1.揭示了在同等生长条件下金刚石(111)面可供成核和生长的反应基多于(100)面,与实验上得到的同等生长条件下(111)面的相对生长率大于(100)面的结论是一致的。  相似文献   

2.
在碳60(C60)[1]和碳纳米管(CNTs)[2]发现之前,人们知道碳通常显示石墨和金刚石两种晶体结构.自从C60和碳纳米管发现后,由于其独特的纳米结构而具有广泛的应用前景,国内外许多学者致力于研究它们的物理和化学特性,而C60、巴基葱(多层碳纳米球)、碳纳米管和金刚石之间的转变是所研究的焦点之一.目前,由碳的其他形式向金刚石转变的主要方法有:Meilunas等人[3]以C60和C70薄膜为基底气相生长多晶金刚石,C60和C70的稳定性和微平面结构在外界条件下,有利于金刚石成核和外延生长;Banhart[4]小组研究了在电子束辐射作用下巴基葱转变…  相似文献   

3.
项萍  陈龙海  邬金才  唐宁 《化学研究》2008,19(4):97-101
合成了在5,5’位上分别含羟基叔胺基和酯基叔胺基取代基的新型手性水杨醛Schiff碱的Salen Mn(Ⅲ)配合物1~4.在CH2Cl2/H2O反应体系中,以吡啶氮氧化物(PyNO)为助催化剂,NaCl0为氧化剂,考察了配合物1—4对苯乙烯环氧化的催化性能.以氯化-双[3-(叔丁基)-5-(N,N-二(乙醇基)氨基亚甲基)水杨醛]缩(1r,2R)-二苯基乙二胺[N,N’,O,O’]锰(Ⅲ)2和氯化-双[3-(叔丁基)-5-(N,N-二(乙酰乙酯基)氨基亚甲基)水杨醛]缩(1R,2R)-二苯基乙二胺[N,N’,O,O’]锰(11I)4为例,研究了不同的离子液体[BMIM]PF6和[BMIM]BF4对苯乙烯环氧化反应的影响.结果显示,两种离子液体的加入均能使催化剂循环使用,在离子液体[BMIM]PF。中,配合物2和4催化得到的环氧化物ee%值分别为53.2%和55.8%,且催化剂可以重复使用四次,效果好于在离子液体[BMIM]BF4中对苯乙烯的催化的影响.  相似文献   

4.
甲醇在热阴极DC-PCVD方法制备金刚石膜过程中的作用   总被引:3,自引:0,他引:3  
采用热阴极DC-PCVD方法制备了金刚石膜,研究了甲醇对放电状态和金刚石膜生长特性的影响。结果表明,通入适量的甲醇有利于稳定辉光放电状态,保持阴性清洁,提高膜的生长质量。用扫描电镜和拉曼光谱等测试手段对金刚石膜的生长特性进行了分析。  相似文献   

5.
采用Dmol3程序中密度泛函理论(DFT)的广义梯度方法GGA/BLYP和DND基组研究了银离子交换的丝光沸石([Ag]-AlMOR)结构及其对NOx分子吸附性能的影响,获得吸附复合物的平衡几何结构参数、吸附能以及红外振动频率等数据.结果表明,NOx分子与丝光沸石间的主要作用力为NOx分子中的氮(或氧)原子上的孤对电子和Ag^+间的静电作用力.吸附能数据表明,NOx分子以η^1-N模式吸附在[Ag]-AlMOR分子筛中的结构更稳定;在η^1-N模式中,NOx分子吸附作用强度的次序为NO〉NO2〉N2O.红外振动频率结果表明,吸附态NOx分子中N—O和N—N键伸缩振动频率的位移趋势与N-O和N—N键变化规律基本相一致.另外,对[Ag]-AlMOR分子筛的抗硫、抗水及抗氧化性能也进行了研究和分析.  相似文献   

6.
稀土化合物改性炭黑/天然橡胶复合材料的制备与性能   总被引:8,自引:1,他引:8  
用铕(Eu)、钬(Ho)、饵(Er)和镝(Dy)4种稀土(Ln)氧化物(Ln2O3)制备了稀土氢氧化物改性炭黑,然后加入天然胶乳(NRL),采用凝聚共沉法制备了粉末状的稀土改性炭黑,天然橡胶复合材料P[NR/HAF-Ln(OH)3]。研究了稀土种类和用量对P[NR/HAF-Ln(OH)3]的粒径分布及其硫化胶物理机械性能的影响。结果表明,稀土可以提高NRL与乳化炭黑构成的粉末体系的成粉率,当Ho,Er的用量为1.0%或Dy的用量为0.5%时均可使粒径小于0.9mm的产物达100%;稀土的存在可显著提高P[NR/HAF-Ln(OH)3]硫化胶的拉伸强度和撕裂强度,而Er和Dy还可明显降低硫化胶的永久变形;SEM分析表明,HAF-Dy(OH)3以团粒形态存在于NR基体中,团粒表面覆盖一层NR膜,团粒与NR构成的界面模糊,说明HAF-Dy(OH)3与NR基体结合紧密,这是P[NR/HAF-Ln(OH)3]具有较好物理机械性能的主要原因。  相似文献   

7.
添加剂的吸附行为及其对Ni沉积层性能的影响   总被引:4,自引:0,他引:4  
采用电化学及X射线衍射等方法研究有机添加剂苯磺酸钠、苯亚磺酸钠和糖精的吸附作用及其对Ni电沉积层的电化学活性、晶粒尺寸、织构及显微硬度的影响.结果表明,苯亚磺酸钠和糖精使Ni沉积层的电化学活性提高,(111)晶面的织构系数明显增大,而使(290)晶面的织构系数减小,还导致沉积层的晶粒尺寸显著减小和显微硬度提高;然而,苯磺酸钠对沉积层的活性及织构影响很小.讨论了上述添加剂的作用.  相似文献   

8.
添加剂的吸附行为及其对Ni沉积层性能的影响   总被引:4,自引:0,他引:4  
采用电化学及X射线衍射等方法研究有机添加剂苯磺酸钠、苯亚磺酸钠和糖精的吸附作用及其对Ni电沉积层的电化学活性、晶粒尺寸、织构及显微硬度的影响.结果表明,苯亚磺酸钠和糖精使Ni沉积层的电化学活性提高,(111)晶面的织构系数明显增大,而使(200)晶面的织构系数减小,还导致沉积层的晶粒尺寸显著减小和显微硬度提高;然而,苯磺酸钠对沉积层的活性及织构影响很小.讨论了上述添加剂的作用.  相似文献   

9.
夏芸魏永革  郭洪猷 《化学学报》2005,63(20):1931-1935
采用N,N′-二环已基碳酰亚胺(DCC)脱水法,以(N-Bu4N)2[Mo6O19]:DCC:邻甲氧基苯胺=1.5:1.1:1.0的摩尔比,无水乙腈中加热回流12h,通过丙酮/乙醇溶液重结晶两次,得到橘红色片状晶体.探讨了最佳反应条件:DCC的量在1.0~1.1mmol,反应时间12h.通过元素分析,UV/Vis光谱和^1H NMR谱的研究表明,该晶体是一种新的六钼酸盐的有机亚胺衍生物(N-Bu4N)2[Mo6O18(=NAr)](Ar=o-CH3OC6H4).  相似文献   

10.
以4,4'-(α,ω-己二酰氧)二苯甲酰氯(M1)、2,5-二(对辛氧基苯甲酰氧基)氢醌(M2)和反式-4,4'-双(4-羟基苯基偶氮)二苯并-18-冠-6(M3)为单体,通过溶液共缩聚反应,合成了一系列含X-型二维液晶基元和反式-4,4'-双(4-羟基苯基偶氮)二苯并-18-冠-6冠醚环的主链型液晶共聚酯.共聚酯的分子量不高,[η]在0.37~0.25 dL/g之间.单体的化学结构通过IR、UV、H-NMR、MS和元素分析等方法确证.共聚酯的外观为黄色粉状固体,除CP9外,室温下不溶于CHCl3和THF溶剂.共聚酯的性质采用GPC、[η]、DSC、TG、WAXD和POM等方法进行了研究.发现所有的共聚酯加热到各自的熔融温度以上都能形成液晶态,在液晶态可以观察到近晶相的镶嵌织构或焦锥织构或破扇型织构和向列相的球粒织构或丝状织构或纹影织构.共聚酯的熔融温度(Tm)和各向同性温度(Ti)随共聚酯分子中反式-4,4'-双(4-羟基苯基偶氮)二苯并-18-冠-6用量的改变呈规律性变化.WAXD研究进一步证实了共聚酯的液晶性.  相似文献   

11.
An investigation based on an ultrasoft pseudopotential density functional theory (DFT) method, using the generalized gradient approximation (GGA) under periodic boundary conditions, has been performed in order to investigate how the presence of a neighboring dopant is affecting the CH 3 adsorption reaction (regarded to be an initial growth process). For this study, both the (100) and (111) diamond surface orientations have been considered, and various dopants in two different hydrogenated forms AH X (A = N, B, S, P, or C; X = 0 or 1 for S, X = 1 or 2 for N, B, and P, and X = 2 or 3 for C) were especially scrutinized. For most of the cases studied, the presence of a coadsorbed dopant was found to disfavor CH 3 adsorption with an efficiency that depends on the surface orientation as well as dopant type and position. The NH 2, PH 2, and SH species have the strongest effect in counteracting the CH 3 adsorption to the diamond (111) surface. This is also the situation with the dopants adsorbed on either of two specific surface sites (out of three positions studied) on the diamond (100)-2 x 1 surface. The main reasons for these observations are induced steric hindrances between the two coadsorbates. The BH 2 species, adsorbed to the third type of surface site on diamond (100), has been found to affect the adsorption reaction by formation of a C surf-B bond prior to CH 3 adsorption. The dopants in their radical forms are generally shown to always strongly disfavor the CH 3 adsorption reaction by formation of a C surf-X bond prior to adsorption. However, the NH radical will only form this new bond with the radical surface C site when it is adsorbed to position 3 on the surface.  相似文献   

12.
Boron and nitrogen compounds are added in the acetone/hydrogen gas mixture to deposit hot filament chemical vapor deposition (HFCVD) diamond films on the cobalt cemented tungsten carbide (WC–Co) substrate under the pressure of 1–4 kPa. The as‐deposited diamond films are characterized by field emission scanning electron microscope (FESEM), atomic force microscopy (AFM), X‐ray diffraction (XRD) spectroscopy and Raman spectroscopy. The results reveal that the surface morphology, growth rate, structure and quality of the diamond films vary with the pressure and the type of the impurity addition. The diamond grains tend to develop into the nanometer scale with the decrease of the pressure. However, adding of boron or nitrogen impurities in the gas mixture will weaken the nanocrystallization effect by reducing the carbon supersaturation. Density functional theory (DFT) calculations indicate that co‐adsorption of B and N containing radicals can favor the adsorption of CH3 on diamond (100) surface. Thus, at low pressure of 1 kPa, large grained cubic (100) facet diamond rather than typical nanometer diamond is produced for B–N co‐addition gas mixture. The present results appear to be useful to efficiently synthesize high quality doped diamonds with desirable properties for mechanical application. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   

13.
The simultaneous action of the tridentate ligand (C(2)H(5))(2)NCH(2)CH(2)N(CH(2)CH(2)SH)(2) and the monodentate coligand HSC(6)H(4)OCH(3) on a suitable ReO(3+) precursor results in a mixture of syn- and anti-oxorhenium complexes, ReO[(C(2)H(5))(2)NCH(2)CH(2)N(CH(2)CH(2)S)(2)] [SC(6)H(4)OCH(3)], in a ratio of 25/1. The complexes are prepared by a ligand exchange reaction using ReO(eg)(2) (eg = ethylene glycol), ReOCl(3)(PPh(3))(2), or Re(V)-citrate as precursor. Both complexes have been characterized by elemental analysis, FT-IR, UV-vis, X-ray crystallography, and NMR spectroscopy. The syn isomer C(17)H(29)N(2)O(2)S(3)Re crystallizes in the monoclinic space group P2(1)/n, a = 14.109(4) ?, b = 7.518(2) ?, c = 20.900(5) ?, beta = 103.07(1) degrees, V = 2159.4(9) ?(3), Z = 4. The anti isomer C(17)H(29)N(2)O(2)S(3)Re crystallizes in P2(1)/n, a = 9.3850(7) ?, b = 27.979(2) ?, c = 8.3648(6) ?, beta = 99.86(1) degrees, V = 2163.9(3) ?(3), Z = 4. Complete NMR studies show that the orientation of the N substituent chain with respect to the Re=O core greatly influences the observed chemical shifts. Complexes were also prepared at the tracer ((186)Re) level by using (186)Re-citrate as precursor. Corroboration of the structure at tracer level was achieved by comparative HPLC studies.  相似文献   

14.
Oxide methanesulfonates of Mo, U, Re, and V have been prepared by reaction of MoO(3), UO(2)(CH(3)COO)(2)·2H(2)O, Re(2)O(7)(H(2)O)(2), and V(2)O(5) with CH(3)SO(3)H or mixtures thereof with its anhydride. These compounds are the first examples of solvent-free oxide methanesulfonates of these elements. MoO(2)(CH(3)SO(3))(2) (Pbca, a=1487.05(4), b=752.55(2), c=1549.61(5) pm, V=1.73414(9) nm(3), Z=8) contains [MoO(2)] moieties connected by [CH(3)SO(3)] ions to form layers parallel to (100). UO(2)(CH(3)SO(3))(2) (P2(1)/c, a=1320.4(1), b=1014.41(6), c=1533.7(1) pm, β=112.80(1)°, V=1.8937(3) nm(3), Z=8) consists of linear UO(2)(2+) ions coordinated by five [CH(3)SO(3)] ions, forming a layer structure. VO(CH(3)SO(3))(2) (P2(1)/c, a=1136.5(1), b=869.87(7), c=915.5(1) pm, β=113.66(1)°, V=0.8290(2) nm(3), Z=4) contains [VO] units connected by methanesulfonate anions to form corrugated layers parallel to (100). In ReO(3)(CH(3)SO(3)) (P1, a=574.0(1), b=1279.6(3), c=1641.9(3) pm, α=102.08(2), β=96.11(2), γ=99.04(2)°, V=1.1523(4) nm(3), Z=8) a chain structure exhibiting infinite O-[ReO(2)]-O-[ReO(2)]-O chains is formed. Each [ReO(2)]-O-[ReO(2)] unit is coordinated by two bidentate [CH(3)SO(3)] ions. V(2)O(3)(CH(3)SO(3))(4) (I2/a, a=1645.2(3), b=583.1(1), c=1670.2(3) pm, β=102.58(3), V=1.5637(5) pm(3), Z=4) adopts a chain structure, too, but contains discrete [VO]-O-[VO] moieties, each coordinated by two bidentate [CH(3)SO(3)] ligands. Additional methanesulfonate ions connect the [V(2)O(3)] groups along [001]. Thermal decomposition of the compounds was monitored under N(2) and O(2) atmosphere by thermogravimetric/differential thermal analysis and XRD measurements. Under N(2) the decomposition proceeds with reduction of the metal leading to the oxides MoO(2), U(3)O(7), V(4)O(7), and VO(2); for MoO(2)(CH(3)SO(3))(2), a small amount of MoS(2) is formed. If the thermal decomposition is carried out in a atmosphere of O(2) the oxides MoO(3) and V(2)O(5) are formed.  相似文献   

15.
采用浸渍-还原法制备的Ni/MgO/Al2O3在CH4与CO2重整制合成气反应中显示出良好的催化性能和一定的抗积炭能力;在1023K下流动反应气氛中连续运转100h,未见活性下降,CH4及C弦均为90%左右,CO收率高于90%,实验还发现,CH4转化率随着原料气中CO2浓度的增加而升高,当V(CO2)/V(CH4)=2时CH4转化率可达100%,通过BET比表面积测定及XRD,TEM等分析手段,比  相似文献   

16.
NCO is a short-lived species involved in NO(x) formation. It has never been quantitatively measured in flame conditions. In the present study, laser-induced fluorescence (LIF) and cavity ring-down spectroscopy (CRDS) were combined to measure NCO radical concentrations in premixed low-pressure flames (p = 5.3 kPa). NCO LIF excitation spectrum and absorption spectrum (using CRDS) measured in a stoichiometric CH(4)/O(2)/N(2)O/N(2) flame were found in good agreement with a simulated spectrum using PGOPHER program that was used to calculate the high-temperature absorption cross section of NCO in the A(2)Σ(+)-X(2)Π transition around 440.479 nm. The relative NCO-LIF profiles were measured in stoichiometric CH(4)/O(2)/N(2)O/N(2) flames where the ratio N(2)O/O(2) was progressively decreased from 0.50 to 0.01 and in rich CH(4)/O(2)/N(2) premixed flames. Then, the LIF profiles were converted into NCO mole fraction profiles from the absorption measurements using CRDS in a N(2)O-doped flame.  相似文献   

17.
The synthesis and characterization of the novel systems [Zn(2)(H(2)N(CH(2))(2)NH(2))(5)][(Zn(H(2)N(CH(2))(2)NH(2))(2))(2)V(18)O(42)(H(2)O)].9H(2)O (1), [Cd(2)(H(2)N(CH(2))(2)NH(2))(5)][(Cd(H(2)N(CH(2))(2)NH(2))(2))(2)V(18)O(42)(Br)].9H(2)O (2), and [Zn(2)(H(2)N(CH(2))(2)NH(2))(5)][(Zn(H(2)N(CH(2))(2)NH(2))(2))(2)V(18)O(42)(Cl)].9H(2)O (3) have been described. These materials represent a new class of solids that have been prepared by combining conventional coordination compounds with spherical polyoxovanadate clusters. The isomorphous structures of these hybrid solids consist of two-dimensional arrays of container cluster molecules [V(18)O(42)(X)] (X = H(2)O, Br-, Cl-) interlinked by the transition metal complex moieties [M(H(2)N(CH(2))(2)NH(2))(2)] (M = Zn, Cd). These compounds contain an unprecedented complex cation, [M(2)(H(2)N(CH(2))(2)NH(2))(5)](4+). Crystal data for 1: C(9)H(46)N(9)O(26)V(9)Zn(2), monoclinic space group P2(1)/m (No. 11), a = 12.3723(7) A, b = 20.9837(11) A, c = 15.8379(8) A, beta = 97.3320(10) degrees, Z = 4.  相似文献   

18.
Using a simple chemical reaction, a new nanostructure of silver, which we call a "flower-like silver structure", is produced. The flower-like silver structure consists of a silver core and many rod-like tips protruding out in three dimensions. Besides common face-centered-cubic (FCC) phase of silver, there exists hexagonal-close-packed (HCP) phase in these tips. The appearance of HCP silver is the result of rapid growth of silver nuclei when using CH(2)O or C(2)H(4)O as the reducing agent. The formation of the rod-like tips is caused by the anisotropic growth determined by the HCP phase and the directing role of formic acid, which is the oxidation product of CH(2)O. It is also found that the concentration of reactants, the kind of reducing agents and the sequence of adding reactants can influence the morphology and phase constitution of the final products.  相似文献   

19.
The new tin(IV) species (CH(3))(2)SnCl(OTeF(5)) was prepared via either the solvolysis of (CH(3))(3)SnCl in HOTeF(5) or the reaction of (CH(3))(3)SnCl with ClOTeF(5). It was characterized by NMR and vibrational spectroscopy, mass spectrometry, and single crystal X-ray diffraction. (CH(3))(2)SnCl(OTeF(5)) crystallizes in the monoclinic space group P2(1)/n (a = 5.8204(8) A, b =10.782(1) A, c =15.493(2) A, beta = 91.958(2) degrees, V = 971.7(2) A(3), Z = 4). NMR spectroscopy of (CH(3))(3)SnX, prepared from excess Sn(CH(3))(4) and HX (X = OTeF(5) or N(SO(2)CF(3))(2)), revealed a tetracoordinate tin environment using (CH(3))(3)SnX as a neat liquid or in dichloromethane-d(2) (CD(2)Cl(2)) solutions. In acetone-d(6) and acetonitrile-d(3) (CD(3)CN) solutions, the tin atom in (CH(3))(3)SnOTeF(5) was found to extend its coordination number to five by adding one solvent molecule. In the strong donor solvent DMSO, the Sn-OTeF(5) bond is broken and the (CH(3))(3)Sn(O=S(CH(3))(2))(2)(+) cation and the OTeF(5)(-) anion are formed. (CH(3))(3)SnOTeF(5) and (CH(3))(3)SnN(SO(2)CF(3))(2) react differently with water. While the Te-F bonds in the OTeF(5) group of (CH(3))(3)SnOTeF(5) undergo complete hydrolysis that results in the formation of [(CH(3))(3)Sn(H(2)O)(2)](2)SiF(6), (CH(3))(3)SnN(SO(2)CF(3))(2) forms the stable hydrate salt [(CH(3))(3)Sn(H(2)O)(2)][N(SO(2)CF(3))(2)]. This salt crystallizes in the monoclinic space group P2(1)/c (a = 7.3072(1) A, b =13.4649(2) A, c =16.821(2) A, beta = 98.705(1) degrees, V = 1636.00(3) A(3), Z = 4) and was also characterized by NMR and vibrational spectroscopy.  相似文献   

20.
The solvothermal reaction of (HOCH2CH2)3N with [(n-C4H9)4N]3[H3V10O28] and MnCl2 x 4H2O in CH3CN and CH3OH yields a novel cationic heteropolyoxovanadium(IV) cluster, [Mn(II)V(IV)6O6[(OCH2CH2)2N(CH2CH2OH)]6]2+, containing a fully reduced new cyclic [MnV6N6O18] core with the Anderson structure.  相似文献   

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