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ÐèÒªµÄ¾ÍÏÂÔØ°É£¬Ãâ½ð±Ò£¬²»ÒªÏÓÏÂÃæµÄ½éÉ܆ªà£¬µ«ÊǶÔÓÚÐèÒªµÄÈËÀ´Ëµ¿ÉÄܾõµÃÕâÑù¸ü±ãÓÚÖªµÀÊÇ·ñÐèÒªÏÂÔØ£¬Ï£Íû´ó¼ÒÖ§³Öһϣ¬¿ì¹ýÄêÁË£¬¸ø¶¥Ò»ÏÂÍÛ£¡Ð»Ð»£¬Ìáǰף´ó¼Ò´º½Ú¿ìÀÖ£¡ This book describes the role of photoacoustic (PA) infrared spectroscopy in chemical analysis. The PA infrared field has enjoyed more or less continual development since its emergence about 30 years ago: A substantial body of literature¡ªconsisting of more than 600 publications¡ªon PA infrared spectroscopy exists today. The present work attempts to review and synthesize this literature; one of its principal objectives is to summarize the current status of PA infrared spectroscopy so that analysts and researchers may determine whether the method is indeed appropriate for their needs. PA infrared spectroscopy can be viewed from several perspectives. For example, it can be thought of as one of a large number of photoacoustic and photothermal methods currently used by physicists, materials scientists, and chemists to characterize both condensed phases and gases. It should be noted that both optical and thermal properties of matter can be investigated by these methods. From this viewpoint, PA infrared spectroscopy is a specialization within a much broader field, made possible by the development and application of a variety of detectors and optical instrumentation at progressively longer wavelengths. Some might suggest that this interpretation, while obviously valid, tends to ascribe a rather secondary status to PA infrared spectroscopy. ÏÂÔØ£ºPhotoacoustic Infrared Spectroscopy Volume 159.rar [ Last edited by dfq0730 on 2009-9-27 at 17:40 ] |
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