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1.
Bayramov  A. A.  Gasanov  A. G. 《Technical Physics》2021,66(3):416-421
Technical Physics - The mechanical properties of materials based on graphene C62H20 and polyethylene (–CH2–CH2–)n have been studied using the semiempirical PM3 method, and visual...  相似文献   

2.
Infrared spectra of C2D2–water complexes are studied in the 4.1 μm region of the C2D2 ν3 fundamental band using a tunable diode laser source to probe a pulsed supersonic slit jet. Relatively large vibrational red shifts (?27.7 to ?28.0 cm?1) are observed which are more easily interpretable than for the analogous C2H2 vibration thanks to the absence of Fermi resonance effects for C2D2. Noticeable homogeneous line broadening leads to estimates of upper state predissociation lifetimes of about 0.5, 0.9 and 1.1 ns for C2D2–H2O, –HDO, and –D2O, respectively. Transitions involving Ka = 0 and 1 levels are observed for C2D2–HDO, but there is a puzzling absence of Ka = 1 for C2D2–H2O and C2D2–D2O.  相似文献   

3.
We first investigate a detailed high pressure flame model. Our model is based on the thermodynamics of irreversible processes, statistical mechanics, statistical thermodynamics, and the kinetic theory of dense gases. We study thermodynamic properties, chemical production rates, transport fluxes, and establish that entropy production is non-negative. We next investigate the structure of planar transcritical H2–O2–N2 flames and perform a sensitivity analysis with respect to the model. Non-idealities in the equation of state and in the transport fluxes have a dramatic influence on the cold zone of the flame. Non-idealities in the chemical production rates – consistent with thermodynamics and important to insure positivity of entropy production – may also strongly influence flame structures at very high pressures. At sufficiently low temperatures, fresh mixtures of H2–O2–N2 flames are found to be thermodynamically unstable, in agreement with experimental results. We finally study the influence of various parameters associated with the initial reactants on the structure of transcritical planar H2–O2–N2 flames as well as lean and rich extinction limits.  相似文献   

4.
Spectra of the weakly bound CO2–C2H2 and CO2–C2D2 complexes are observed in the regions of CO2 ν3 (≈ 2349 cm?1) and C2D2 ν3 (≈ 2440 cm?1) fundamental vibrations, using an infrared optical parametric oscillator to probe a pulsed supersonic slit-jet expansion. Five bands are measured and analysed: the fundamental asymmetric stretch of the C2D2 component, two combination bands involving the out-of-plane torsional vibrations (C2D2 ν3 + torsion and CO2 ν3 + torsion) for CO2–C2D2, and two combination bands involving an intermolecular in-plane bending vibration for CO2–C2H2 and CO2–C2D2. The resulting intermolecular frequencies are 61.408(1), 54.5(5), 39.9(5), and 39.961(1) cm?1 for CO2–C2H2 and CO2–C2D2 in-plane vibrations, and CO2–C2D2 out-of-plane torsional vibrations in CO2 and C2D2 regions, respectively. This is the first experimental determination of these intermolecular vibrational frequencies.  相似文献   

5.
Using a volumetric technique, phase transitions in the H2O–H2 system were investigated in the vicinity of two points of an invariant equilibrium, L+I h+sII and L+sII+C 1, located at 1.07 kbar and?10 °C and at 3.6 kbar and 1 °C, respectively. Liquid water (L), low-pressure hexagonal ice (I h) and high-pressure cubic (sII) and rhombohedral (C 1) clathrate hydrates were in equilibrium with gaseous hydrogen taken in excess.  相似文献   

6.
7.
Detonation experiments are conducted to investigate the detonation wave behavior in steam pipelines of boiling water reactors. Accumulated gases in BWRs are stoichiometric hydrogen/oxygen mixtures diluted with steam at 7 MPa. In the experiment, flammable gas mixture diluted with nitrogen at room temperature and up to 5 MPa is used to achieve equivalent detonation condition. Two test pieces are used, one is straight tube and the other is 90-degree bend. No initial pressure dependency in detonation wave behavior is observed in the experiments. However, in the straight tube tests, detonation velocities higher than theoretical values are measured when the initial pressures are greater than 2.3 MPa. This result is considered as attribution of real gas effect. In the 90-degree bend experiments, pressure time histories reveal pressure loads greater than the straight tube portion at two locations. One is a high pressure peak at the extrados of the bend and the other is a double pressure peak just downstream of the bend outlet. Second pressure peak just downstream of the bend outlet is due to transverse wave propagation. Additionally, the largest impulse is observed not at the extrados of the bend but at the intrados of bend outlet. These results show the importance of more investigations on transverse wave behaviors in failure potential evaluation.  相似文献   

8.
In this article, thermal and hydrodynamic performances of a miniature tangential heat sink are investigated experimentally by using Al2O3–H2O and TiO2–H2O nanofluids. The effects of flow rate and volume concentration on the thermal performance have been investigated for the Reynolds number range of 210 to 1,100. Experimental results show that the average convective heat transfer coefficient increases 14 and 11% and the bottom temperature of the heat sink decreases 2.2°C and 1.6°C by using Al2O3–H2O and TiO2–H2O nanofluid instead of pure distilled water, respectively.  相似文献   

9.
By means of coupled cluster, G4 and B3LYP calculations, we characterised polyoxides H2O6 and H2O7. These two molecules behave very differently from lower polyoxides, given that some isomers present unusual bonding. In the case of H2O6, the central OO bond is predicted, to be 1.909 Å, at the CCSD(T)/cc-pVTZ level. Two conformational isomers of H2O6 display nearly the same enthalpy of formation, but only one of them has extremely long OO bonds. For H2O7, the most stable isomer also has two unusually long OO bonds. At the CCSD(T) level, and after extrapolation to the complete basis set limit, this isomer is predicted to be 5.37 kcal mol–1 more stable than the one with short OO bonds, and the longest OO bond distance is expected to be close to 1.96 Å. Analysis of correlation energies indicated that the new isomers found for H2O6 and H2O7 are among the most strongly correlated molecules that can be formed with first-row atoms.  相似文献   

10.
使用电子被C, H和O原子散射总截面的实验数据, 利用修正后的可加性规则计算了能量为50-5000 eV的电子被4个复杂大分子C4H8O, C5H10O2, C6H5CH3和C4H8O2散射的总截面, 并将计算结果与实验结果及其他理论计算结果进行了比较. 结果表明, 即使是在几十电子伏的入射能量下, 修正后的可加性规则计算出的总截面依然能与实验结果符合很好, 而使用未修正的可加性规则进行计算, 即使是在几百电子伏的入射能量下得到的总截面仍偏离实验值较远. 分析表明, 未修正的可加性规则计算得到的总截面在中低能区过大、随电子入射能量的增加而衰减太快的问题是由可加性规则本身引起的, 其实质是未考虑低能下分子内原子间的相互屏蔽对散射总截面的计算所带来的影响.  相似文献   

11.
在水热条件下,以2,5-吡啶二甲酸为配体合成得到稀土Eu3 为中心离子的配位聚合物[Eu(C7H3O4N)(CH3COO)(H2O]·2H2O.用元素分析、红外光谱、单晶衍射对配合物的组成和结构进行了表征.晶体结构测试表明,标题配合物属于单斜晶系,空间群为P2(1)/c.在晶体结构中,构筑单位是含有Eu-Eu金属键的双核重复单元,六分子的吡啶二甲酸配体均以五齿配位的形式桥连4个Eu3 离子,从而将邻近的双核单元连接起来形成三维结构.  相似文献   

12.
N2O/C2H2FAAS法测定铝的干扰研究   总被引:1,自引:1,他引:0  
本文研究了40种单个无机离子、混和无机离子及24种有机物在N2O/C2H2火焰中对铝吸收信号的干扰情况。并从物理干扰、光谱干扰和化学干扰等角度对它们的干扰机理作了解释。  相似文献   

13.
在溶液中用N-(邻苯甲酸基)-亚氨基二乙酸、苯并咪唑和Co(Ac)2·4H2O进行自组装合成了标题三元金属混配配合物.用元素分析、红外光谱、单晶衍射对配合物的组成和结构进行了表征,确定配体N-(邻苯甲酸基)-亚氨基二乙酸中的3个羧基为单齿形式与中心金属钴离子配位.  相似文献   

14.
在G2(B3LYP/MP2/CC)理论水平上研究了CH(X^2Ⅱ)自由基与氧化二氮(NNO)分子的反应。计算了反应体系的最低二重态势能面上各驻点的构型参数、振动频率和能量,揭示了此反应存在的两种机理和六个通道。基中HC和NNO复合,生成中间体HC(N)NO,解离得到产物HCN+NO,这是最主要的通道之一;HC插入NO键,克服38.9kJ/mol的势垒,产生富能的中间体HC(O)NN,预测了五个反应通道,其中主要反应通道为:NN+HCO.  相似文献   

15.
Shallow donors in silicon related to nitrogen–oxygen complexes have been investigated by piezospectroscopy of their hydrogenic transitions in the far infrared. Complete stress dependences up to 0.25 GPa were obtained for the 1s→2p0 and 1s→2p± transitions of the most prominent members of the (N, O)-family, N–O-3 and N–O-5. Very unusual for shallow donors in silicon, the symmetry of the ground state wave function is T2-like. The lifting of orientational degeneracy for stress in the 〈1 0 0〉, 〈1 1 1〉, and 〈1 1 0〉 directions is compatible with a C2v defect symmetry. Data from the other species of the (N, O)-family are indicative for the same symmetry. The microscopic structure of these centers, in part contradictory to present theoretical models, is discussed.  相似文献   

16.
The paper reports on a detailed study of the N2–H2 collisional line broadening coefficient. High resolution stimulated Raman spectra of nitrogen–hydrogen mixtures have been recorded at liquid nitrogen and room temperatures. Corresponding linewidth calculations have been performed at temperatures between 77 and 500?K using the semiclassical Robert and Bonamy model for J rotational quantum numbers varying between 0 and 11. Comparison between experimental data and calculated results shows good agreement at room temperature using an adjusted value for the kinetic diameter.  相似文献   

17.
《Molecular physics》2012,110(21-22):2751-2760
Accurate ab initio intermolecular potential energy surfaces (IPES) have been obtained for the first time for the ground electronic state of the C2H2–Kr and C2H2–Xe van der Waals complexes. Extensive tests, including complete basis set and all-electron scalar relativistic results, support their calculation at the CCSD(T) level of theory, using small-core relativistic pseudopotentials for the rare-gas atoms and aug-cc-pVQZ basis sets extended with a set of 3s3p2d1f1g mid-bond functions. All results are corrected for the basis set superposition error. The importance of the scalar relativistic and rare-gas outer-core (n–1)d correlation effects is investigated. The calculated IPES, adjusted to analytical functions, are characterized by global minima corresponding to skew T-shaped geometries, in which the Jacobi vector positioning the rare-gas atom with respect to the center of mass of the C2H2 moiety corresponds to distances of 4.064 and 4.229?Å, and angles of 65.22° and 68.67° for C2H2–Kr and C2H2–Xe, respectively. The interaction energy of both complexes is estimated to be ?151.88 (1.817?kJ?mol?1) and ?182.76?cm?1 (2.186?kJ?mol?1), respectively. The evolution of the topology of the IPES as a function of the rare-gas atom, from He to Xe, is also discussed.  相似文献   

18.
Carbon fiber reinforced Si–C–N matrix composite with a Si–O–C interphase (C/Si–O–C/Si–C–N) was fabricated via chemical vapor infiltration and polymer impregnation and pyrolysis process. The mechanical properties and oxidation behaviors of C/Si–O–C/Si–C–N were investigated using three-point-bending test and thermogravimetry. The results indicated that the oxidation resistance of C/Si–O–C/Si–C–N was improved as compared to C/Si–C–N with pyrolytic carbon (PyC) interphase (C/PyC/Si–C–N). The higher oxidation resistance of C/Si–O–C/Si–C–N attributed to the high inoxidizability of Si–O–C interlayer and low thermal stress in matrix. The flexural strength of C/Si–O–C/Si–C–N rivaled that of C/PyC/Si–C–N and the modulus was higher than that of C/PyC/Si–C–N. The suitable interphase and the optimized interface bonding can get the high oxidation resistance of the composites with the mechanical properties maintained.  相似文献   

19.
采用水热反应法合成超分子化合物C11H6N2O·H3PO4·H2O,通过元素分析、红外光谱和X射线单晶衍射对其组成、结构进行分析.该化合物属于三斜晶系,空间群P-1,晶胞参数a=0.73350(6)nm,b=0.74191(7)nm,c=1.15692(14)nm,α=96.395(2)°,β=92.9940(10)°,γ=90.3440(10)°,V=0.62477(11)nm3,Z=2,F(000)=308,Dc=1.585g·cm-3,最终偏差因子R1=0.0521,wR2=0.1282.该化合物的不对称单元由3个独立的分子4,5-二氮芴-9-酮、磷酸和水分子构成,氢键连接分子形成三维超分子化合物.  相似文献   

20.
合成了新的Eu(C8H7O3)3·C12H8N2·H2O配合物.并经元素分析、摩尔电导、IR、UV、1H NMR等表征,初步确定配体3-甲氧基苯甲酸以桥式双齿形式和Eu(Ⅲ)配位.  相似文献   

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