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通过聚焦辐射实现气态多光子能量转移的生物分子离子单分子解离的气相活化能(FRAGMENT)

Gas phase activation energy for unimolecular dissociation of biomolecular ions determined by focused RAdiation for gaseous multiphoton ENergy transfer (FRAGMENT).

作者信息

Freitas MA, Hendrickson CL, Marshall AG

机构信息

National High Magnetic Field Laboratory, Florida State University, 1800 East Paul Dirac Dr., Tallahassee, FL 32310, USA.

出版信息

Rapid Commun Mass Spectrom. 1999;13(15):1639-42. doi: 10.1002/(SICI)1097-0231(19990815)13:15<1639::AID-RCM691>3.0.CO;2-S.

Abstract

We present a novel approach for the determination of activation energy for the unimolecular dissociation of a large (>50 atoms) ion, based on measurement of the unimolecular dissociation rate constant as a function of continuous-wave CO(2) laser intensity. Following a short ( approximately 1 s) induction period, CO(2) laser irradiation produces an essentially blackbody internal energy distribution, whose 'temperature' varies inversely with laser intensity. The only currently available method for measuring such activation energies is blackbody infrared radiative dissociation (BIRD). Compared with BIRD, FRAGMENT: (a) eliminates the need to heat the surrounding ion trap and vacuum chamber to each of several temperatures (each requiring hours for temperature equilibration); (b) offers a three-fold wider range of effective blackbody temperature; and (c) extends the range of applications to include initially cold ions (e.g., gas-phase H/D exchange). Our FRAGMENT-determined activation energy for dissociation of protonated bradykinin, 1.2 +/- 0.1 eV, agrees within experimental error to the value, 1.3 +/- 0.1 eV, previously reported by Williams et al. from BIRD experiments. Copyright 1999 John Wiley & Sons, Ltd.

摘要

我们提出了一种新方法,用于确定大型(>50个原子)离子单分子解离的活化能,该方法基于测量单分子解离速率常数作为连续波CO(2)激光强度的函数。在短暂(约1秒)的诱导期后,CO(2)激光辐照产生基本为黑体的内能分布,其“温度”与激光强度成反比。目前唯一可用于测量此类活化能的方法是黑体红外辐射解离(BIRD)。与BIRD相比,FRAGMENT:(a)无需将周围的离子阱和真空室加热到几个温度中的每一个(每个温度都需要数小时来达到温度平衡);(b)提供了三倍更宽的有效黑体温度范围;(c)扩展了应用范围,包括初始冷离子(例如气相H/D交换)。我们通过FRAGMENT测定的质子化缓激肽解离的活化能为1.2±0.1 eV,在实验误差范围内与Williams等人先前通过BIRD实验报道的值1.3±0.1 eV一致。版权所有1999 John Wiley & Sons, Ltd。

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