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Partial decarboxylation of hafnium oxide clusters for high resolution lithographic applications
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Partial decarboxylation of hafnium oxide clusters for high resolution lithographic applications

Pin-Chia Liao, Po-Hsiung Chen, Yu-Fang Tseng, Ting-An Shih, Ting-An Lin, Tsi-Sheng Gau, Burn-Jeng Lin, Po-Wen Chiu 和 Jui-Hsiung Liu
Journal of materials chemistry. C, Materials for optical and electronic devices, 卷.10(41), 頁碼.15647-15655
27/10/2022
Web of Science ID: WOS:000864824100001

摘要

Materials Science, Multidisciplinary Physics, Applied Science & Technology Materials Science Physical Sciences Physics Technology
This work shows a great influence on the EUV performance of hafnium carboxylate clusters via slight structural modification. Treatment of hexameric hafnium clusters Hf6O4(OH)(4)(RCO2)(12) (R = i-alkyl) with LiOH in DCM/water (25 degrees C, 20 min) afforded hafnium clusters formulated as Hf6O4(OH)(6)(RCO2)(10) according to elemental analysis, NMR data, ESI-Mass and TGA studies. Two representatives 1-OH and 2-OH have been examined via surface characterization, e-beam and EUV lithographic studies. The two photoresists can form smooth and defect-free thin films over a large domain with the surface RMS roughness being smaller than 1.0 nm. For e-beam, patterns are only resolved into 31 nm half-pitch (HP) due to the large shrinkage in the photoresist thickness. With an EUV interference mask, the patterns have been resolved into a 17 nm HP with small line-width roughness (LWR) at similar dose energies. The XPS studies of the EUV exposed film of sample 1-OH revealed a decomposition of five carboxylate ligands even at high energy doses.

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引用書目主題
5 Physics
5.295 Lithography
5.295.709 EUV Lithography
Web Of Science研究領域
Materials Science, Multidisciplinary
Physics, Applied
ESI研究領域
Materials Science

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