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首页> 外文期刊>Chemical Physics Letters >A time-resolved FTIR emission study of the gas phase removal processes of CH2((X)over-tilde(3)B(1)) and CH2((a)over-tilde(1)A(1)) in collisions with O-2
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A time-resolved FTIR emission study of the gas phase removal processes of CH2((X)over-tilde(3)B(1)) and CH2((a)over-tilde(1)A(1)) in collisions with O-2

机译:CH2((X)over-tilde(3)B(1))和CH2((a)over-tilde(1)A(1))的气相去除过程的时间分辨FTIR发射研究O-2

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Time-resolved Fourier transform infrared (FTIR) emission spectroscopy has been used to study the removal of methylene in its ground (CH2((X) over tilde B-3(1))) and first electronic excited state (CH2((a) over tilde (1)A(1))) in collisions with O-2. Both the singlet and triplet removal processes yield emission from vibrationally excited CO2 and H2CO, together with a weak component from CO. The production rate Of CO2 and H2CO was measured to be the same for the singlet and triplet processes and close to the rate of removal of (CH2)-C-3 by O-2, and the emission intensity was essentially unchanged by quenching the singlet to the triplet in collisions with Ar. We conclude that (CH2)-C-1 is quenched to (CH2)-C-3 in collisions with O-2 before reaction. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 25]
机译:时间分辨傅里叶变换红外(FTIR)发射光谱已用于研究其地面(CH2((X)超过波浪号B-3(1)))和第一电子激发态(CH2((a)在波浪号(1)A(1))上与O-2碰撞。单线态和三线态的去除过程均会产生振动激发的CO2和H2CO的排放,以及CO中的弱组分。经测量,单线态和三线态过程的CO2和H2CO的生成率相同,且接近去除率O 2(CH 2)-C-3的原子强度,并且通过与Ar碰撞将单重态猝灭为三重态而使发射强度基本不变。我们得出结论,在反应之前,与(O-2)碰撞时(CH2)-C-1被淬灭为(CH2)-C-3。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:25]

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