4.6 Article

Effects of Methyl Terminal and Carbon Bridging Groups Ratio on Critical Properties of Porous Organosilicate Glass Films

期刊

MATERIALS
卷 13, 期 20, 页码 -

出版社

MDPI
DOI: 10.3390/ma13204484

关键词

organosilicate glass; low-k films; carbon bridges; pore structure; ellipsometric porosimetry; FTIR; density functional theory (DFT); Young’ s modulus; pore morphology; GISAXS

资金

  1. Ministry of Science and Higher Education of the Russian Federation [0706-2020-0022]
  2. Russian Foundation for Basic Research (RFBR) [18-29-27022]
  3. MOST-RFBR Joint Research Project [MOST] [107-2923-E009-002-MY3]
  4. MOST-RFBR Joint Research Project [RFBR] [18-52-52010]
  5. Beijing Natural Fund [4182021]
  6. National Natural Science Foundation of China [61874002]

向作者/读者索取更多资源

Organosilicate glass-based porous low dielectic constant films with different ratios of terminal methyl to bridging organic (methylene, ethylene and 1,4-phenylene) groups are spin-on deposited by using a mixture of alkylenesiloxane with organic bridges and methyltrimethoxysilane, followed by soft baking at 120-200 degrees C and curing at 430 degrees C. The films' porosity was controlled by using sacrificial template BrijL4. Changes of the films' refractive indices, mechanical properties, k-values, porosity and pore structure versus chemical composition of the film's matrix are evaluated and compared with methyl-terminated low-k materials. The chemical resistance of the films to annealing in oxygen-containing atmosphere is evaluated by using density functional theory (DFT). It is found that the introduction of bridging groups changes their porosity and pore structure, increases Young's modulus, but the improvement of mechanical properties happens simultaneously with the increase in the refractive index and k-value. The 1,4-phenylene bridging groups have the strongest impact on the films' properties. Mechanisms of oxidative degradation of carbon bridges are studied and it is shown that 1,4-phenylene-bridged films have the highest stability. Methylene- and ethylene-bridged films are less stable but methylene-bridged films show slightly higher stability than ethylene-bridged films.

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