Low temperature growth of carbon nanotubes
Commercial Flip Chips has faced fine pitch problems with conventional copper bumps. Carbon nanotubes (CNTs) are proposed to solve downscaling difficulties and increase the number of bumps per area. In order to carry out CNTs growth on integrated chips, low temperature is recommended to do so. In th...
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sg-ntu-dr.10356-615182023-07-07T15:51:25Z Low temperature growth of carbon nanotubes Ho, Chor Seng Tay Beng Kang School of Electrical and Electronic Engineering Nanoscience and Nanotechnology Corridor DRNTU::Engineering Commercial Flip Chips has faced fine pitch problems with conventional copper bumps. Carbon nanotubes (CNTs) are proposed to solve downscaling difficulties and increase the number of bumps per area. In order to carry out CNTs growth on integrated chips, low temperature is recommended to do so. In this study, Thermal Chemical Vapor Deposition machine is used to grow CNTs interconnects bumps at lower temperature on test structures. Design of experiment is carried out to find the appropriate combination of growth parameters to be grown and was synthesized using both bottom and top heat methodologies to collect samples for analysis. Results show growth and annealing duration are defining factors that affect overall CNTs growth. Bachelor of Engineering 2014-06-11T03:18:17Z 2014-06-11T03:18:17Z 2014 2014 Final Year Project (FYP) http://hdl.handle.net/10356/61518 en Nanyang Technological University 40 p. application/msword |
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DRNTU::Engineering Ho, Chor Seng Low temperature growth of carbon nanotubes |
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Commercial Flip Chips has faced fine pitch problems with conventional copper bumps. Carbon nanotubes (CNTs) are proposed to solve downscaling difficulties and increase the number of bumps per area. In order to carry out CNTs growth on integrated chips, low temperature is recommended to do so. In this study, Thermal Chemical Vapor Deposition machine is used to grow CNTs interconnects bumps at lower temperature on test structures. Design of experiment is carried out to find the appropriate combination of growth parameters to be grown and was synthesized using both bottom and top heat methodologies to collect samples for analysis. Results show growth and annealing duration are defining factors that affect overall CNTs growth. |
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Tay Beng Kang |
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Tay Beng Kang Ho, Chor Seng |
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Final Year Project |
author |
Ho, Chor Seng |
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Ho, Chor Seng |
title |
Low temperature growth of carbon nanotubes |
title_short |
Low temperature growth of carbon nanotubes |
title_full |
Low temperature growth of carbon nanotubes |
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Low temperature growth of carbon nanotubes |
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Low temperature growth of carbon nanotubes |
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low temperature growth of carbon nanotubes |
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2014 |
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http://hdl.handle.net/10356/61518 |
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