Danilatos G D, Postle R
Scan Electron Microsc. 1982(Pt 1):1-16.
An environmental scanning electron microscope can be made by incorporating a pressure limiting aperture at some distance below the objective aperture of an SEM, and by providing independent pumping between these two apertures. Tilting of the pressure limiting aperture with respect to the axis of the electron optics column redirects the gas jet which develops above the pressure limiting aperture and which otherwise would inject excessive gas through the objective aperture into the column. The detection of backscattered and multiple-backscattered electrons is achieved below the pressure limiting aperture in the region confined by the sample, the detector and the aperture grid. Wet specimens can be examined in the environmental scanning electron microscope at 7kV and TV rates by placing them at a sufficiently close distance to the pressure limiting aperture. Live seedlings and ants have been observed in this way. Wet (fresh) rat tissues, wool fibers subjected to various treatments, crystallization and rewetting of salts, and some radiation effects have been observed and recorded under the environmental scanning electron microscope. Examination of specimens in the full pressure range, 0-1013 mbar, is possible. A detector-aperture system which will allow the signal originating from the sample to be detected simultaneously both below and above the aperture is under construction. Further development of environmental scanning electron microscopy now depends upon close co-ordination between microscope manufacturers and research groups involved in such fields as biology, fiber technology, radiation and physical chemistry.
通过在扫描电子显微镜(SEM)物镜光阑下方一定距离处设置一个限压光阑,并在这两个光阑之间提供独立的抽气装置,就可以制造出一台环境扫描电子显微镜。限压光阑相对于电子光学柱的轴线倾斜,会使在限压光阑上方形成的气体射流改变方向,否则该气体射流会通过物镜光阑向柱内注入过多气体。在限压光阑下方、由样品、探测器和光阑网格限定的区域内,可以实现对背散射电子和多次背散射电子的检测。通过将湿样品放置在距限压光阑足够近的位置,可在7kV电压和电视扫描速率下,在环境扫描电子显微镜中对其进行检查。通过这种方式已经观察到了活的幼苗和蚂蚁。在环境扫描电子显微镜下已经观察并记录了湿的(新鲜的)大鼠组织、经过各种处理的羊毛纤维、盐的结晶和再湿润以及一些辐射效应。在0至1013毫巴的全压力范围内对样品进行检查是可行的。一种能够同时在光阑下方和上方检测来自样品信号的探测器 - 光阑系统正在研制中。环境扫描电子显微镜的进一步发展现在取决于显微镜制造商与生物学、纤维技术、辐射和物理化学等领域的研究团队之间的密切协作。