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A new design principle for the photoactive components (PACs) of dissolution inhibition resists

机译:溶解抑制抗蚀剂的光敏组分(PAC)的新设计原理

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The photoreactive function and the inhibitor function of the Photoactive components (PACs) of dissolution inhibition resists are independent of each other and have to be considered and developed separately. Traditionally, dissolution inhibitors have been designed by trial and error. Here we are concerned with a rational approach to inhibitor design based on the proposition that the inhibition strength of a molecule depends directly on the electron density on the oxygen atom of its acceptor group. Any structural change that increases the electron density on the acceptor increases also the inhibition factor of the molecule. Several routes to more effective inhibitors are indicated. [References: 16]
机译:溶解抑制抗蚀剂的光敏组分(PAC)的光反应功能和抑制剂功能彼此独立,必须分别考虑和开发。传统上,溶解抑制剂是通过反复试验设计的。在这里,我们基于一种分子的抑制强度直接取决于其受体基团的氧原子上的电子密度的命题,来研究一种合理的抑制剂设计方法。增加受体上电子密度的任何结构变化也会增加分子的抑制因子。指出了获得更有效抑制剂的几种途径。 [参考:16]

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