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1.
利用单光子激光诱导荧光(LIF)技术,测量了亚硝基苯(C6H5NO)初生态光解碎片NO(X 2Π v″=1,2,3)的转动光谱.通过对初生态光解碎片NO(X 2Π )内能态布居的分析,得到了NO(X 2Π )的转动温度和相对振动布居比,研究了亚硝基苯在266 nm激光光解过程中的能量配置情况.与小分子相比,大的亚硝基苯分子,其光解过程中能量分布很宽,涉及到所有自由度.  相似文献   

2.
通过193 nm光解丁烯酮分子产生乙烯基自由基(·C2H3).经射流冷却后,用另一束激光光解·CaH3,生成的氢原子碎片经共振增强多光子电离(REMPI)过程,记录氢离子信号随光解波长变化,得到20020~20070 cm-1范围内乙烯基激发的转动分辨光谱.该谱对应于(A)2A″(v′=0)←(X)aA′(v″=0)跃迁的转动结构.结合量子化学理论计算、光谱拟合以及前人的研究结果,对该段光谱进行了完整的转动识别,确定了40条转动谱线的位置.由光谱拟合还得到(A)2A″(v′=0)能级的预解离寿命为3.3 ps,且不依赖于转动量子数.  相似文献   

3.
通过193nm光解丁烯酮分子产生乙烯基自由基(·C2H3).经射流冷却后,用另一束激光光解·C2H3,生成的氢原子碎片经共振增强多光子电离(REMPI)过程,记录氢离子信号随光解波长变化,得到20020~20070cm-1范围内乙烯基激发的转动分辨光谱.该谱对应于A$2A″(v′=0)%X$2A′(v″=0)跃迁的转动结构.结合量子化学理论计算、光谱拟合以及前人的研究结果,对该段光谱进行了完整的转动识别,确定了40条转动谱线的位置.由光谱拟合还得到A$2A″(v′=0)能级的预解离寿命为3.3ps,且不依赖于转动量子数.  相似文献   

4.
通过193nm光解丁烯酮分子产生乙烯基自由基(·C2H3).经射流冷却后,以另一束可调谐激光光解·C2H3,生成的氢原子碎片经共振增强多光子电离(REMPI)过程,记录氢离子信号随光解波长变化,得到21180 ̄21320cm-1范围内乙烯基A!2A″(!′5,6,8=1)←X!2A′(!″=0)跃迁的振转光谱.结合量化计算和光谱拟合,对该段光谱进行了细致的振转分析,确定了各振动谱带位置,识别了其中主要的转动跃迁.由光谱拟合得到各振动能级的预解离寿命,讨论了其与振动模式及激发转动量子数的依赖关系,证实了理论预测的乙烯基A!2A″电子态的面内解离机制.  相似文献   

5.
通过193 nm光解丁烯酮分子产生乙烯基自由基(•C2H3). 经射流冷却后, 以另一束可调谐激光光解•C2H3, 生成的氢原子碎片经共振增强多光子电离(REMPI)过程, 记录氢离子信号随光解波长变化, 得到21180~21320 cm-1范围内乙烯基 A2A″(µ′5,6,8=1)←X2A′(µ″=0)跃迁的振转光谱. 结合量化计算和光谱拟合, 对该段光谱进行了细致的振转分析, 确定了各振动谱带位置, 识别了其中主要的转动跃迁. 由光谱拟合得到各振动能级的预解离寿命, 讨论了其与振动模式及激发转动量子数的依赖关系, 证实了理论预测的乙烯基A2A″电子态的面内解离机制.  相似文献   

6.
利用时间分辨傅立叶变换红外(TR-FTIR)发射光谱研究了气相中CH2=CHCOCl分子的光解动力学.观测到振动激发的光解碎片分子CO(ν≤5),HCl(ν≤6),C2H2和相应的两个光解离通道:C-Cl键断裂和HCl消除通道.通过分析转动分辨的红外发射光谱得到CO和HCl的初始振转能量态分布,由此提出CH2=CHCOCl的气相光解机理并阐明了内转换等非绝热过程在影响反应途径中的关键作用.  相似文献   

7.
计敏  甄军锋  张群  陈晻 《物理化学学报》2009,25(8):1641-1644
利用时间分辨傅立叶变换红外(TR-FTIR)发射光谱技术对叔丁基亚硝酸酯355 nm激光光解动力学进行研究. 通过对实验观测到的光解产物NO的时间分辨红外发射谱进行分析, 获得了NO的转动温度和相对振动布居, 并发现了振动布居的反转现象. 结合前人的工作, 我们确认了光解产物NO的最大振动布居量子数υ与光解光激发的母体分子N=O伸缩振动的泛频跃迁所涉及的振动量子数υ*之间的关系为υ=υ*-1.  相似文献   

8.
采用266nm紫外激光对间氟溴苯和对氟溴苯进行了光解动力学研究,在多个角度探测了光解碎片Br和C6H4F的时间飞渡谱(TOF)。从光解碎片的平动能分布P(Et)可以得到:间氟溴苯和对氟溴苯大约有46.8%和41.7%的可资用能分配到碎片的平动能,其余的分配到碎片的内能;且各向异性参数被确定为0.7和-0.4。为了更好地解释实验结果,我们利用从头计算方法对反应体系进行了计算,并与实验结果吻合,由此,我们提出了比较合理的光解机理且对氟原子的取代效应进行了讨论。  相似文献   

9.
采用 266 nm紫外激光对间氟溴苯和对氟溴苯进行了光解动力学研究,在多个角度探测了光解碎片 Br和 C6H4F的时间飞渡谱 (TOF).从光解碎片的平动能分布 P(Et)可以得到:间氟溴苯和对氟溴苯大约有 46.8%和 41.7%的可资用能分配到碎片的平动能,其余的分配到碎片的内能;且各向异性参数被确定为 0.7和- 0.4.为了更好地解释实验结果,我们利用从头计算方法对反应体系进行了计算,并与实验结果吻合 .由此,我们提出了比较合理的光解机理且对氟原子的取代效应进行了讨论 .  相似文献   

10.
郝海燕  刘振  祖莉莉 《物理化学学报》2015,31(11):2029-2035
有机硫化物是大气主要污染物之一,其在大气中的光解产物还将造成二次污染,除了存在于有机硫化物中, S―S键还存在于胱氨酸等蛋白质中, S―S键的形成和断裂决定该类蛋白质的活性.本工作中,我们研究了用实验室常见的Nd:YAG激光器的四倍频266 nm激光光解C2H5SSC2H5过程,通过激光诱导荧光(LIF)光谱方法检测乙硫自由基C2H5S等光解产物.实验表明266 nm激光主要光解C2H5SSC2H5的S―S键产生C2H5S自由基.本文应用密度泛函理论的Becke3-Lee-Yang-Parr泛函(B3LYP方法)得到C2H5SSC2H5的S―S键、C―S键和C―C键的解离势能曲线,可知在266 nm光解条件下, C2H5SSC2H5在基态能够发生S―S键、C―S键解离, C―C键不发生解离.本文采用全活化空间自洽场(CASSCF)方法优化得到态和态的C2H5S自由基结构及其跃迁的绝热激发能,以辅助解析实验检测的C2H5S自由基的LIF光谱.实验结合理论计算最终得出,本实验266 nm光解条件下, C2H5SSC2H5主要发生S―S键解离,不排除少量分子发生C―S键解离的可能性.  相似文献   

11.
The dynamics of the photodissociation of NO2 into NO(X 2ΠΩ″, ν″=0,J″)+O(3 P 0,1,2) is investigated near the thermodynamic threshold. Cooling the internal degrees of freedom by a supersonic beam expansion provides a nearly complete quantum state selection prior to the predissociation. Measurements of the wavelength dependent dissociation yield into specific product quantum states are reported. At certain wavelengths Λ″ doublet resolved rotational population distributions of the fragments are obtained. Up to an excess energy ofE exc=121 cm?1 about 42% of this energy is partitioned into the rotation of the NO molecules, and correspondingly 58% into the translational degree of freedom. The role of electronic and total parity is discussed.  相似文献   

12.
用一束波长为210.27 nm的激光将CS2分子激发至预离解态1 B2(1 Σ+u),用另一束激光通过激光诱导荧光(LIF)方法检测碎片CS,在250.5~286.5 nm获得了CS碎片A1 Π←X1 Σ+振转分辨的激发谱.通过对光谱强度的分析,获得了CS碎片v″=0~8的振动布居和v″=1,4~8振动态的转动布居.结果发现,碎片CS的振动布居呈双模结构,分别对应于CS2分子1 B2(1 Σ+u)态的两个解离通道,即CS(X1 Σ+,v″=0~9)+S(3PJ)和CS(X1 Σ+, v″=0~1)+S(1 B2).由此得到两个解离通道的分支比S(3PJ): S(1 B2)为5.6±1.2.与前人193 nm处的研究结果相比, 210.27 nm激发更有利于S(3PJ)通道的生成.此外,实验还发现CS的转动布居不满足热平衡分布,为两个Boltzmann分布的合成.  相似文献   

13.
使用质量选择的团簇离子光解离光谱技术,KaznhikoOhashi等人研究了两聚物离子苯的电子态谱[1],在可见到近红外波段,光谱分为两种类型:一种是局域激发带,它是出自于两聚体(X) 2中单体离子X 的局域电子激发跃迁;另一种则是电荷共振带.在两聚体(X) 2中,电荷...  相似文献   

14.
Photodissociation of nitrobenzene at 193, 248, and 266 nm and o-nitrotoluene at 193 and 248 nm was investigated separately using multimass ion imaging techniques. Fragments corresponding to NO and NO(2) elimination from both nitrobenzene and o-nitrotoluene were observed. The translational energy distributions for the NO elimination channel show bimodal distributions, indicating two dissociation mechanisms involved in the dissociation process. The branching ratios between NO and NO(2) elimination channels were determined to be NONO(2)=0.32+/-0.12 (193 nm), 0.26+/-0.12 (248 nm), and 0.4+/-0.12(266 nm) for nitrobenzene and 0.42+/-0.12(193 nm) and 0.3+/-0.12 (248 nm) for o-nitrotoluene. Additional dissociation channels, O atom elimination from nitrobenzene, and OH elimination from o-nitrotoluene, were observed. New dissociation mechanisms were proposed, and the results are compared with potential energy surfaces obtained from ab initio calculations. Observed absorption bands of photodissociation are assigned by the assistance of the ab initio calculations for the relative energies of the triplet excited states and the vertical excitation energies of the singlet and triplet excited states of nitrobenzene and o-nitrotoluene. Finally, the dissociation rates and lifetimes of photodissociation of nitrobenzene and o-nitrotoluene were predicted and compared to experimental results.  相似文献   

15.
由Nd:YAG激光器三倍频, 输出波长为λ=355 nm(28 169 cm-1)的激光光解NO2分子产生的氧原子, 通过共振增强多光子电离(REMPI, resonance enhanced multiphoto ionization)及飞行时间(TOF, time of flight)质谱技术, 获得了自旋-轨道精细能级分辨的氧原子O(2p 3PJ″=2, 1, 0)离子谱.氧离子信号强度与UV电离激光能量(λ≈226 nm)之间的关系能用三次方曲线很好拟合, 它表明光解产物氧原子是通过(2+1)多光子吸收过程而被电离的.由离子信号得到的氧原子基态三个自旋-轨道支能级布居比f1=I(3P1)/I(3P2)与f0=I(3P0)/I(3P2)分别为0.54±0.09和0.20±0.04, 并且在不同的光解激光能量下其布居比保持不变.这一比值与统计分布计算的值为0.6和0.2一致(即统计分布3P2∶3P1∶3P0=1:0.6:0.2).这是由于样品(NO2)在较低的压力下(1.33×10-4 Pa)和极短的光解-电离时间范围内(10-8 s), 产物O(3PJ″)支能级间几乎不可能发生碰撞能量转移, 因此, 氧原子三个自旋-轨道角动量分裂能级布居O(3PJ″=2, 1, 0)是统计分布的.  相似文献   

16.
The photodissociation of 2-bromopropene at 193 nm produces C(3)H(5) radicals with a distribution of internal energies that spans the threshold for the secondary decomposition of the 2-propenyl radicals into C(3)H(4)+H. Just above this threshold, the decomposition rate is on the nanosecond time scale, and in the present study, time-resolved velocity-map ion imaging is used to gain insight into this process. The results provide information on the energy dependence of the secondary dissociation process. In addition, comparison of the results with theoretical predictions of the energy dependence of the dissociation rate provides information on the branching between fragment rotational and vibrational energies in the primary photodissociation process.  相似文献   

17.
Photodissociation dynamics of ethyl iodide in the A band has been investigated at several wavelengths between 245 and 283 nm using resonance-enhanced multiphoton ionization technique combined with velocity map ion-imaging detection. The ion images of I, I(*), and C(2)H(5) fragments are analyzed to yield corresponding speed and angular distributions. Two photodissociation channels are found: I(5p (2)P(3/2))+C(2)H(5) (hotter internal states) and I(*)(5p (2)P(1/2))+C(2)H(5) (colder). In addition, a competitive ionization dissociation channel, C(2)H(5)I(+)+h nu-->C(2)H(5)+I(+), appears at the wavelengths <266 nm. The I/I(*) branching of the dissociation channels may be obtained directly from the C(2)H(5) (+) images, yielding the quantum yield of I(*) about 0.63-0.76, comparable to the case of CH(3)I. Anisotropy parameters (beta) determined for the I(*) channel remain at 1.9+/-0.1 over the wavelength range studied, indicating that the I(*) production should originate from the (3)Q(0) state. In contrast, the beta(I) values become smaller above 266 nm, comprising two components, direct excitation of (3)Q(1) and nonadiabatic transition between the (3)Q(0) and (1)Q(1) states. The curve crossing probabilities are determined to be 0.24-0.36, increasing with the wavelength. A heavier branched ethyl group does not significantly enhance the I(5p (2)P(3/2)) production from the nonadiabatic contribution, as compared to the case of CH(3)I.  相似文献   

18.
Nitromethane (CH(3)NO(2)) and its chlorinated analogue, chloropicrin (CCl(3)NO(2)), were photolyzed at 193, 248, and 266 nm, and the products were observed by time-dependent Fourier transform infrared emission spectroscopy. At 193 and 248 nm, the primary photodissociation pathway for nitromethane was cleavage of the C-N bond to produce CH(3) + NO(2)(A (2)B(2)). At 266 nm, weak emission was observed following photodissociation of nitromethane, but an infrared spectrum could not be obtained. The photodissociation of chloropicrin at 193 nm produced the analogous product channel CCl(3) + NO(2)(A (2)B(2)) in addition to several other product channels. At 248 and 266 nm, only CCl(3) + NO(2)(A (2)B(2)) was observed. The production of phosgene (CCl(2)O) from chloropicrin photodissociation was not observed in this study.  相似文献   

19.
C(2)H(3)(35)Cl+ in the ground vibronic state was generated by one-photon mass-analyzed threshold ionization spectrometry, and its photodissociation in the 461-406 nm range was investigated. Ionization energy to the ground state of C(2)H(3)(35)Cl+ was 10.0062 +/- 0.0006 eV while its B state onset was higher by 2.7456 +/- 0.0003 eV. A vibrational spectrum of the cation in the B state obtained by recording the product ion yield as a function of wavelength was analyzed by referring to the quantum chemical results at the TDDFT/B3LYP/6-311++(df,pd) level. Analysis of product time-of-flight profiles recorded with different laser polarization angles showed that the dissociation pathway for the cation in the B state changed with the vibrational energy, from internal conversion to X and statistical dissociation therein to curve crossing to C and repulsive dissociation therein. B --> C curve crossing seemed to occur along a direction close to the C-Cl bond stretch.  相似文献   

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