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Dissociative ionization of methanol in medium intense femtosecond laser field using time-of-flight mass spectrometry

机译:飞行时间质谱法在中等强度飞秒激光场中甲醇的解离电离

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摘要

800 nm 100 fs laser combined with TOF mass spectrometer was used to investigate the dissociative ionization of methanol, CH3OH in the laser intensity less than 4 x 10(13) W/cm(2). The results showed that the dissociation follows a sequential step-wise dissociation pattern, with no sign for Coulomb explosion. At very low intensity 1.4 x 10(13) W/cm(2), only the parent ion CH3OH+ appears. At 1.7 x 10(13) W/cm(2), the dissociation products are mainly due to hydrogen elimination from the O-H or C-H bonds forming CH3O+ and CH2OH+ primary ions. At 2.0 x 10(13) W/cm(2), the C-O bond starts to break forming CH3+, which simultaneously dissociates to CH2+. The primary fragment ions CH3O+ and CH2OH+ start to dissociate into lower secondary fragments as CH2O+ and CHO+ for the former and CHOH+ and COH+ for the latter. At 2.8 x 10(13) W/cm(2), secondary dissociation fragments dominate the spectrum including C+, CH+, CH2+, OH+, and O+ and the H+ is detected. At 3.0.x 10(13) W/cm(2), H-2(+) is detected. For all ions formed, the ion yield increases with laser intensity till it reaches maximum, after which it drops down manifesting the dissociation of these ions into smaller fragments. Among all ions, only H+ was found to have angular anisotropic distribution. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用800 nm 100 fs激光结合TOF质谱仪研究了激光强度小于4 x 10(13)W / cm(2)的甲醇CH3OH的解离电离。结果表明,解离遵循连续的逐步解离模式,没有库仑爆炸的迹象。在极低的强度1.4 x 10(13)W / cm(2)下,仅出现母离子CH3OH +。在1.7 x 10(13)W / cm(2)时,离解产物主要是由于氢从形成CH3O +和CH2OH +伯离子的O-H或C-H键中消除。在2.0 x 10(13)W / cm(2)时,C-O键开始断裂,形成CH3 +,同时离解为CH2 +。初级碎片离子CH3O +和CH2OH +开始解离为较低的次级碎片,如前者为CH2O +和CHO +,后者为CHOH +和COH +。在2.8 x 10(13)W / cm(2)时,次级解离碎片占据了包括C +,CH +,CH2 +,OH +和O +的光谱,并且检测到了H +。在3.0.x 10(13)W / cm(2)时,检测到H-2(+)。对于所有形成的离子,离子产量随着激光强度的增加而增加,直到达到最大值,然后下降,这表明这些离子分解为较小的碎片。在所有离子中,仅H +被发现具有角各向异性分布。 (C)2015 Elsevier Ltd.保留所有权利。

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