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Outlook for potential third-generation immersion fluids

机译:潜在的第三代浸没液的前景

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In a search for alkane candidates for 193 nm immersion fluids, several alkanes and cycloalkanes were synthesized, purified and screened to ascertain their absorption at 193 nm, refractive index and temperature dispersion coefficient in the context of the actual application. In general, cycloalkanes, and more specifically polycycloalkanes, possess a higher refractive index than do linear alkanes. Decalin, cyclodecane, perhydrophenanthreme (PHP), perhydrofluorene (PHF) and perhydropyrene (PHPY) are examined as potential second and third generation immersion fluids. The use of perhydropyrene, which possesses a high refractive index of 1.7014 at 193 nm, may be limited as an immersion fluid because of high absorption at 193 nm. Mixtures of cycloalkanes can lead to a higher enhancement of the refractive index together with a decrease on the viscosity. Exhaustive purification of the fluids is a critical step in determining the real absorption of the different fluids at 193 nm. Two simple purification processes of these cycloalkanes were developed that led to low absorption fluids in the VUV region. The possibility of forming the oxygen complex in aerated fluids was reduced by purging samples with argon or nitrogen. This easy elimination of the oxygen complex shows the weak bonding nature of this complex.
机译:在寻找适用于193 nm浸没液的烷烃候选物时,合成,纯化和筛选了几种烷烃和环烷烃,以确定它们在实际应用中在193 nm处的吸收率,折射率和温度色散系数。通常,环烷烃,更具体地说是聚环烷烃具有比直链烷烃更高的折射率。十氢化萘,环癸烷,全氢蒽(PHP),全氢芴(PHF)和全氢py(PHPY)被作为潜在的第二代和第三代浸没液进行了研究。由于在193 nm处的高吸收性,全氢fluid在193 nm处具有高折射率1.014的使用可能会受到限制。环烷烃的混合物可导致折射率的更高提高以及粘度降低。彻底净化流体是确定193 nm不同流体的实际吸收率的关键步骤。研究了这些环烷烃的两种简单纯化工艺,这些工艺导致VUV区域的吸收流体低。通过用氩气或氮气吹扫样品,减少了在充气流体中形成氧络合物的可能性。氧络合物的这种容易消除显示了该络合物的弱键合性质。

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