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1.
The decay of NH2 radicals, from 193 nm photolysis of NH3, was monitored by 597.7 nm laser-induced fluorescence. Room-temperature rate constants of (1.21 ± 0.14) × 10?10, (1.81 ± 0.12) × 10?11, and (2.11 ± 0.18) × 10?11 cm3 molecule?1 s?1 were obtained for the reactions of NH2 with N, NO and NO2, respectively. The production of NH in the reaction of NH2 with N was observed by laser-induced fluorescence at 336.1 nm.  相似文献   

2.
The absolute rate constant of the reaction of NH2 with NO2 has been measured using a flash-photolysis laser resonance-fluorescence technique. The value obtained at room temperature is k1 = 2.3 (± 0.2) × 10?11 cm3 molecule ?1 s?1. A negative temperature coefficient has been found between 298 and 505 K for this reaction, k1 = 3.8 × 10?8 × T?1.30 cm3 molecule?1 s?1. It is thought that this is the major reaction of NH2 in the troposphere.  相似文献   

3.
The rate constant for the reaction or NH3 + OH → NH2 + H2O has been measured in a high temperature fast flow reactor over the range 294–1075 K k = (5.41 ± 0.86) × 10-12 exp[?(2120 ± 143) cal mole?1/RT cm3 molecule?1 s?1. This result is compared with literature values and discussed.  相似文献   

4.
The multiple-photon dissociation of N2H4 and CH3NH2 by pulsed CO2 laser light to produce NH2(X?2BI has been studied using the laser-induced fluorescence detection method. The relative NH2 yield, represented by the fluorescence signal, has been measured as a function of the fluence from the threshold at about 0.1 J/cm2 to about 100 J/cm2, at different CO2-laser lines and at pressures down to 10?4 Torr.  相似文献   

5.
The rate constants for the reactions OH(X2Π, ν = O) + NH3k1 H2O + NH2 and OH(X2Π, ν = O) + O3k2 → HO2 + O2 were measured at 298°K by the flash photolysis resonance fluorescence technique. The values of the rate constants thus obtained are K1 = (4.1 ± 0.6) × 10?14 and k2 = (6.5 ± 1.0) × 10?14 in units of cm3 molecule ?1 sec1. The results are discussed in terms of understanding the dynamics of the perturbed stratosphere.  相似文献   

6.
The rate constant for the reaction NH3 + OH → NH2 + H2O was determined by the comparison of the calculated induction period data with experiments by the shock tube technique in the range 1360–1840 K, for NH3-H2-O2-Ar mixtures. The rate constants can be represented by the expression k = 1012.49±0.04exp[(?1.95±0.15) kcal/,RT] cm3 mol?1 s?1.  相似文献   

7.
The enthalpy of formation of ammonium tungsten bronze, (NH4)0.25WO3(s), at 298.15 K has been determined by solution calorimetry. The value obtained for formation from NH3(g), H2(g) and WO3(s) was ?25.7 ± 0.8 k1 mol?1. The stability of the bronze towards decomposition and oxidation is discussed.  相似文献   

8.
The rate of the reaction
has been investigated at 40–65°C with [HClO4] varying from 0.04 to 0.6 M (μ = 0.6 M, NaClO4). The observed rate law has the form: -d[Cr(NH3)5(NCO)2+]/dt = kobs[Cr(NH3)5(NCO)2+] where kobs = a[H+]2{1 + b[H+]2} and ?1 at 55.0°C, a = 0.36 M?1 s?2 and b = 6.9 × 10?3 M?1 s?1. The rate of loss of Cr(NH3)5(NCO)2+ increases with increasing acidity to a limiting value (at [H+] ~ 0.5 M) but the yield of Cr(NH3)63+ decreases with increasing [H+] and increases with increasing temperature. In the kinetic studies the maximum yield of Cr(NH3)63+ was 35% but a synthetic procedure has been developed to give a 60% yield.  相似文献   

9.
A re-interpretation and re-evaluation of single-crystal X-ray diffraction data of a previously reported ‘(NH4)2(NH3)[Ni(NH3)2Cl4]’ (J. Solid State Chem. 162 (2001) 254) give a new formula (NH4)2−2z[Ni(NH3)2]z[Ni(NH3)2Cl4] with z=0.152. This new formula results from defects in an idealized ‘(NH4)2[Ni(NH3)2Cl4]’ basic structure, where two adjacent NH4+ cations are replaced by one Ni(NH3)22+ unit. Cl anions from the basic structure complete the coordination sphere of the new Ni2+ to [Ni(NH3)2Cl4]2−.  相似文献   

10.
An XRD analysis is used to study the single crystal of [Pd(NH3)4][Rh(NH3)(NO2)5] double complex salt at T = 150(2) K. Crystallographic characteristics are as follows: a = 7.6458(5) ?, b = 9.8813(6) ?, c = 9.5788(7) ?, β = 109.469(2)°, V = 682.30(8) ?3, P21/m space group, Z = 2, d x = 2.553 g/cm3. The geometry of the complex [Rh(NH3)(NO2)5]2− anion is described for the first time: Rh-N(NO2) distances are 2.020(4)–2.060(3) ?, Rh-N(NH3) 2.074(4) ?, N(NO2)-Rh-N(NH3) trans-angle is 178.8(2)°.  相似文献   

11.
The reaction kinetics of NH2 with propylene is studied by flash photolysis in the temperature range 300-500K. The NH2 radicals are detected by resonance absorption, using a cw single mode dye laser. This method allows the detection of very small radical concentrations in a wide range of experimental conditions. The reaction of NH2 with propylene is fairly slow and seems to correspond to the addition process. The Arrhenius expression obtained is (E in kcal/mole):k(NH2 + C3H6) = 2.9 × 108 exp[-4.3(± 0.2)[RT]M?1s?1.  相似文献   

12.
The heat capacity due to the hindered rotation of the ammonium ion has been computed for (NH4)2SiF6 and (NH4)2SnCl6 and compared to that derived from the observed heat capacity. The torsional frequencies for (NH4)2SiF6 and (NH4)2SnCl6 are 226 cm?1 and 190 cm?1 respectively, and the barriers to rotation are 3210 calories/mole and 1470 calories/mole, respectively.  相似文献   

13.
Gaseous products evolved from (NH4)2SO4, NH4HSO4 and NH4NH2SO3 during successive heating and cooling cycles were flushed with inert gas into analyzer Dräger tubes hooked tightly to the terminal port of the DSC cell base. This simple procedure allowed the starting temperature of the decomposition to be determined and the amount of the individual gases in the mixture to be identified and even estimated. NH4NH2SO3 at 523 K in humid air produced HNH2SO3 initially and, on further cycling, (NH4)2SO4 and NH4HSO4 also appeared. The ΔHf values for NH4HSO4 were (kJ mole?1): in an airtight sample holder 12.67, in a dry argon atmosphere 11.93, and in a static air atmosphere 10.92. Endothermic peaks for (NH4)2SO4 and 498 and 411 K represented the incongruent melting point and the polymorphic transition of (NH4)2SO4·NH4HSO4. After the first heating in air to 530 K, (NH4)2SO4 and NH4HSO4 exhibited closely similar cyclic DSC curves. The endothermic peaks at about 393–420 K may be assigned to different combinations of (NH4)2SO4 and NH4HSO4.  相似文献   

14.
Ab initio UMP2 and UQCISD(T) calculations, with 6-311G** basis sets, were performed for the titled reactions. The results show that the reactions have two product channels: NH2+ HNCO?NH3+NCO (1) and NH2+HNCO?N2H3+CO (2), where reaction (1) is a hydrogen abstraction reaction via an H-bonded complex (HBC), lowering the energy by 32.48 kJ/mol relative to reactants. The calculated QCISD(T)//MP2(full) energy barrier is 29.04 kJ/mol, which is in excellent accordance with the experimental value of 29.09 kJ/mol. In the range of reaction temperature 2300–2700 K, transition theory rate constant for reaction (1) is 1.68×1011–3.29×1011 mL·mol-1·s-1, which is close to the experimental one of 5.0×1011mL·mol-1·s-1or less. However, reaction (2) is a stepwise reaction proceeding via two orientation modes,cis andtrans, and the energy barriers for the rate-control step at our best calculations are 92.79 kJ/mol (forcis-mode) and 147.43 kJ/mol (fortrans-mode), respectively, which is much higher than reaction (1). So reaction (1) is the main channel for the titled reaction.  相似文献   

15.
The Mössbauer spectra of 57Fe doped NH4MnCl3 reveal that this compound undergoes a crystallographic phase transition at 258°K and becomes magnetic at 105°K. No crystallographic transition appeared either in NH4FeCl3 or in 57Fe:NH4CoCl3; the latter orders magnetically around 27°K.  相似文献   

16.
Summary. 2 [Yb2(NH2)2(Pz)4][Yb(NH3)2(Pz)3 PzH], Pz = pyrazolate anion, PzH = pyrazole, C3H4N2 is obtained by the reaction of ytterbium metal with pyrazole in liquid ammonia and subsequent increase of the temperature to 200°C resulting in the formation of colorless single crystals of the compound. The X-ray single crystal analysis reveals that the structure consists of 2 [Yb2(NH2)2(Pz)4] planes with neutral [Yb(NH3)2(Pz)3 PzH] monomeric molecules that are located between the planes and ytterbium is trivalent. This is the first example of a two-dimensional network structure of an organic amine of the rare earth elements that derives from an electride induced synthesis. The product decomposes under release of ammonia outside its sealed reaction vessel, viz. if the NH3 pressure is removed.  相似文献   

17.
Single crystals of diammonium tetranitratouranylate (NH4)2[UO2(NO3)4] (I) and a new diammonium tetranitratouranylate complex with 18-crown-6 [(NH4)(18C6)]2[UO2(NO3)4] (II) have been synthesized by the reaction of diaquadinitratouranyl tetrahydrate with ammonium nitrate in a nitric acid solution and the reaction of the same reagents with 18C6 in an ethanol solution, respectively. The X-ray diffraction analysis of compounds I and II has been performed. Crystals of compounds I and II are monoclinic, Z = 2, space group P21/n, a = 6.4075(5) ?, b = 7.7851(7) ?, c = 12.4461(12) ?, β = 101.239(1)°, V = 608. 94(9) ?3 for compound I and a = 10.542(9) ?, b = 8.590(8) ?, c = 22.5019(19) ?, β = 101.632(1)°, V = 2058.3(3) ?3 for compound II. The [UO2(NO3)4]2− complex anion in compounds I and II contains two monodentate and two bidentate cyclic nitrato groups, and the coordination number of uranyl is 6. The 18C6 molecule in the structure of compound II has the classic crown conformation and combined with the ammonium ion by three hydrogen bonds. Compounds I and II formed by electrostatic attraction forces between counterions are stabilized by (NH4+)NH...O(NO3) interionic hydrogen bonds.  相似文献   

18.
2 [Yb2(NH2)2(Pz)4][Yb(NH3)2(Pz)3 PzH], Pz = pyrazolate anion, PzH = pyrazole, C3H4N2 is obtained by the reaction of ytterbium metal with pyrazole in liquid ammonia and subsequent increase of the temperature to 200°C resulting in the formation of colorless single crystals of the compound. The X-ray single crystal analysis reveals that the structure consists of 2 [Yb2(NH2)2(Pz)4] planes with neutral [Yb(NH3)2(Pz)3 PzH] monomeric molecules that are located between the planes and ytterbium is trivalent. This is the first example of a two-dimensional network structure of an organic amine of the rare earth elements that derives from an electride induced synthesis. The product decomposes under release of ammonia outside its sealed reaction vessel, viz. if the NH3 pressure is removed.  相似文献   

19.
Influence of NH4F concentration on the conditions of separation of Ti(IV) and Fe(III) salts by fractional hydrolysis under the action of ammonia in the system (NH4)2TiF6-(NH4)3FeF6-NH4F-H2O was studied. The coprecipitation of (NH4)3TiO2F5 and (NH4)3FeF6 as a result of crystallochemical substitution of Fe+3 for Ti+4 makes it possible to reduce the content of Fe(III) salts in the system. After separation of a precipitate containing up to 25% of Ti from solutions with NH4F concentrations from 10.6 to 22.3% and subsequent hydrolysis, the remaining titanium precipitates. The precipitate is annealed up to 800°C in the presence of water vapor to form TiO2 with a whiteness above 92%. Original Russian Text ? N.G. Bakeeva, P.S. Gordienko, E.V. Pashnina, 2009, published in Zhurnal Obshchei Khimii, 2009, Vol. 79, No. 1, pp. 3–8.  相似文献   

20.
The di-nitrile complexes trans-[PtCl2(NCR)2] (R = Me, Ph, CH2Ph) react with an excess of gaseous NH3 in CH2Cl2 at −10 °C to form, in high yield, the corresponding di-amidine complexes trans-[PtCl(NH3){HNC(NH2)R}2]Cl in which also one chlorine ligand has been displaced by NH3. The 1H NMR spectra in DMSO showed the formation of different species which were characterized through NOESY, TOCSY and 1H/13C heteronuclear correlations as trans-[Pt(NH3){HNC(NH2)R}2(DMSO)]Cl2 and trans-[PtCl{HNC(NH2)R}2(DMSO)]Cl.  相似文献   

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