Dissertation > Excellent graduate degree dissertation topics show
Studies of P-Si02 and P-SiON Films Deposition with TEOS by RF Glow Discharge
Author: WenLi
Tutor: WangJianHua
School: Hefei University of Technology
Course: Microelectronics and Solid State Electronics
Keywords: PECVD TEOS P-SiO2 P-SiON
CLC: TN304.055
Type: Master's thesis
Year: 2002
Downloads: 75
Quote: 2
Read: Download Dissertation
Abstract
|
In this paper,plasma-enhanced chemical vapor deposition (PECVD) technique was used to deposit the dielectric P-SiO2 films and P-SiON films on the silicon wafer under the conditions of low temperature and low pressure with TEOS organic sourse. This research was focused on the evaluation of film growth,hardness,stress,resistance and refractive index,by changing the experimental parameters including RF power,substrate temperature,chamber pressure,and the flow rates of TEOS,O2,N2.The results showed that the P-SiO2 film was smooth,dense,and structurally amorphous. The growth rate was about 2600A/min under the center condition. A maximum hardness of 16Gpa was got on the substrate temperature of 410. The stress takes compressive properties about -75MPa. About the critical force on the scratch tests,it was 46.5uN. The SiO2 films had a refractive index about 1.46.The results showed that the P-SiON film was also smooth,dense,and structurally amorphous. The growth rate was about 2100A/min under the center condition. A maximum hardness is ISGpa. The film was under compressive stress after deposition with -60Mpa. About the critical force on the scratch tests,it was 45uN. The P-SiON films had a refractive index about 1.65.From the study,it is apparent that TEOS-SiO2 and TEOS-SiON films possess high quality compared with SiH-film as dielectric film and passivation film. Then it has higher safty and lower cost for mass production fab. Can be widely appled to IC manufacture field more and more.
|
Related Dissertations
- Study on Properties of Ce、Co、Ni/V-W/TiO2 Modified by Composite Sol for Selective Catalytic Reduction,X701
- Preparation and Characterization of Polymer Micro/Nano Fibers by Laser Melt Electrospinning,TQ340.64
- Modification for PVA-Based Composite Packaging Material with Nano-SiO2 and Its Influence on Fresh Preservation Effect of Salted Duck Eggs,TS253.46
- Synthesis of 1,4-Butynediol from HCHO and C2H2 Over CuO-Bi2O3/MgO-SiO2,TQ223.162
- Lithium anode material calcined alumina crucible Development,TQ174.6
- Ni / TiO 2 -SiO 2 Preparation, Characterization and Hydrogenation of Maleic Anhydride,TQ225.2
- Inorganics Modification and the Application in PP,TB33
- Fabrication of a Uniform Surface Enhanced Raman Scattering Substrate and Its Application,O657.37
- Study on the Preparation of the Oxyfluoride Glass-ceramics/Silicon Dioxide System for LTCC and Tape Casting,TQ174.6
- Preparation and Characterization of Multifunctional Fe3O4/ZnO/SiIO2 Nanocomposites,TB383.1
- The Dispersion Control of Silica Particles during the Preparation of SiO2/PA Grafted Composites by In-situ Polymerization,TB383.1
- The Preparation of Nano SiO2 from Laterite Nickelor,TB383.1
- Al-and N-modification Over Silica Supported Phillips Chromium-Based Catalysts for Ethylene Polymerization,TQ325.12
- In-situ IR Study on Hydrogenolysis of Dimethyl Oxalate to form Ethylene Glycol,TQ223.162
- Catalytic Study of Hydrogen Peroxide Synthesis Directly from H2 and O2,TQ123.6
- Study on Catalyst and Process of Catalytic Hydrogenation for Dimethyl Oxalate to Methyl Glycollate,TQ225.24
- Research on Novel and Highly Efficient Modified Hybrid CrOx-B/SiO2 Catalyst for Ethylene Polymerization,TQ325.12
- Experimental and Molecular Simulational Study on Phillips CrOx/SiO2 Catalysts for Their Active Center and Polymerization Mechanisms,TQ325.12
- Research on Deep Desulfurization and Regeneration Performance of the Adsorbents for Ultra-deep Reactive Adsorption Desulfurization of Diesel Fuel,TE624.5
- Surface Modification of Silica Particals of Different Size and Their Dispersion in Pet,TB383.3
- Study on Corrosion Resistance and Condensation Property of Ni-P/Nano SiO2 Composite Coatings,TG174.4
CLC: > Industrial Technology > Radio electronics, telecommunications technology > Semiconductor technology > General issues > Material > General issues > > Semiconductor thin film technology
© 2012 www.DissertationTopic.Net Mobile
|