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Mechanism of inhibitor action in novolak film

机译:酚醛清漆膜中抑制剂作用机理

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Abstract: In the original percolation model of novolak resists, dissolution inhibition was through to occur through the blocking of hydrophilic (phenolic) percolation sites by the inhibitor. Closer analysis revealed that mere site blocking cannot account for the size of the inhibition effect observed in practical systems; a more profound reorganization of resin structure is needed. In this communication it is suggested that hydrogen bonding between OH-groups leads to the formation of phenolic clusters in concentrated novolak solutions, and these clusters are preserved in the solid films. The introduction of the strong acceptor groups of inhibitors reinforces the cohesion in the clusters and concentrates the OH-groups. In this way the inhibitor creates a deficit of hydrophilic sites in other areas of the percolation field, thereby lowering the dissolution rate. !13
机译:摘要:在酚醛清漆抗蚀剂的原始渗滤模型中,通过抑制剂阻滞亲水(酚类)渗滤位点而发生溶解抑制。进一步的分析表明,仅位点阻断不能解释实际系统中观察到的抑制作用的大小;需要对树脂结构进行更深刻的重组。在这种交流中,暗示了OH基团之间的氢键导致在浓线型酚醛清漆溶液中形成酚类簇,并且这些簇保留在固体膜中。抑制剂的强受体基团的引入增强了簇中的内聚力并浓缩了OH基团。以此方式,抑制剂在渗滤场的其他区域中产生了亲水位点的不足,从而降低了溶解速率。 !13

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