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激光诱导击穿光谱(LIBS),第一部分:基本诊断和等离子体-粒子相互作用综述:分析等离子体领域内仍具挑战性的问题。

Laser-induced breakdown spectroscopy (LIBS), part I: review of basic diagnostics and plasma-particle interactions: still-challenging issues within the analytical plasma community.

机构信息

Department of Mechanical and Aerospace Engineering, University of Florida, Gainesville, Florida, USA.

出版信息

Appl Spectrosc. 2010 Dec;64(12):335-66. doi: 10.1366/000370210793561691.

Abstract

Laser-induced breakdown spectroscopy (LIBS) has become a very popular analytical method in the last decade in view of some of its unique features such as applicability to any type of sample, practically no sample preparation, remote sensing capability, and speed of analysis. The technique has a remarkably wide applicability in many fields, and the number of applications is still growing. From an analytical point of view, the quantitative aspects of LIBS may be considered its Achilles' heel, first due to the complex nature of the laser-sample interaction processes, which depend upon both the laser characteristics and the sample material properties, and second due to the plasma-particle interaction processes, which are space and time dependent. Together, these may cause undesirable matrix effects. Ways of alleviating these problems rely upon the description of the plasma excitation-ionization processes through the use of classical equilibrium relations and therefore on the assumption that the laser-induced plasma is in local thermodynamic equilibrium (LTE). Even in this case, the transient nature of the plasma and its spatial inhomogeneity need to be considered and overcome in order to justify the theoretical assumptions made. This first article focuses on the basic diagnostics aspects and presents a review of the past and recent LIBS literature pertinent to this topic. Previous research on non-laser-based plasma literature, and the resulting knowledge, is also emphasized. The aim is, on one hand, to make the readers aware of such knowledge and on the other hand to trigger the interest of the LIBS community, as well as the larger analytical plasma community, in attempting some diagnostic approaches that have not yet been fully exploited in LIBS.

摘要

激光诱导击穿光谱(LIBS)在过去十年中已成为一种非常流行的分析方法,这归因于其一些独特的特点,例如适用于任何类型的样品、几乎无需样品制备、具有远程感应能力以及分析速度快。该技术在许多领域具有非常广泛的适用性,其应用数量仍在不断增加。从分析的角度来看,LIBS 的定量方面可能是其阿喀琉斯之踵,首先是由于激光与样品相互作用过程的复杂性,这取决于激光的特性和样品材料的特性;其次是由于等离子体-颗粒相互作用过程,这取决于空间和时间。这些因素共同作用可能会导致不理想的基质效应。缓解这些问题的方法依赖于通过使用经典平衡关系来描述等离子体激发-电离过程,因此假设激光诱导等离子体处于局部热力学平衡(LTE)。即使在这种情况下,也需要考虑等离子体的瞬态特性及其空间非均匀性,并加以克服,以证明所做的理论假设是合理的。本文首先聚焦于基本诊断方面,并对与这一主题相关的过去和近期的 LIBS 文献进行了综述。还强调了先前基于非激光的等离子体文献的研究及其相关知识。目的一方面是让读者了解这些知识,另一方面是激发 LIBS 社区以及更大的分析等离子体社区的兴趣,尝试一些尚未在 LIBS 中得到充分利用的诊断方法。

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