Yamaguchi M, Tanaka A, Suzuki T
Department of Morphology, Institute of Medical Science, Jikei University School of Medicine, Tokyo, Japan.
J Electron Microsc (Tokyo). 1992 Feb;41(1):7-13.
Methods of preparing of a new support film by plasma polymerization in a glow discharge, and its application were described. The recently developed plasma polymerization replica technique was used to prepare ultrathin films from naphthalene monomer gas on the surface of a newly cleaved sodium chloride crystal or on cover glass. The film was floated off on water or hydrofluoric acid solution to free it from the base. The plasma-polymerized naphthalene support film (PNS) prepared in this way was shown to have excellent properties by its application to negative staining of virus antigen particles and by the observation of whole ultrathin sections of animal tissue mounted on a 2 x 1 mm single slot grid. Features of the new support film are (1) its ease of preparation as a clean, very thin film of less than 10 nm, (2) its amorphous texture and high transparency to electrons, (3) its mechanical strength, resistance to heat and chemicals, and electron bombardment, and (4) its smooth and slightly hydrophilic surface. The PNS would be useful for both routine and high-resolution electron microscopy.
描述了通过辉光放电中的等离子体聚合制备新型支撑膜的方法及其应用。最近开发的等离子体聚合复型技术用于从萘单体气体在新劈开的氯化钠晶体表面或盖玻片上制备超薄膜。将该膜漂浮在水或氢氟酸溶液上以使其与基底分离。通过将以这种方式制备的等离子体聚合萘支撑膜(PNS)应用于病毒抗原颗粒的负染色以及观察安装在2×1毫米单槽网格上的动物组织的整个超薄切片,结果表明该膜具有优异的性能。这种新型支撑膜的特点是:(1)易于制备成小于10纳米的干净、非常薄的膜;(2)其非晶质结构和对电子的高透明度;(3)其机械强度、耐热性、耐化学性和耐电子轰击性;(4)其光滑且略带亲水性的表面。PNS对于常规和高分辨率电子显微镜都将是有用的。