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Vertically-Aligned Multi-Walled Carbon Nano Tube Pillars with Various Diameters under Compression: Pristine and NbTiN Coated

机译:具有不同直径的垂直对齐的多壁碳纳米管支柱在压缩状态下:原始涂层和NbTiN涂层

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摘要

In this paper, the compressive stress of pristine and coated vertically-aligned (VA) multi-walled (MW) carbon nanotube (CNT) pillars were investigated using flat-punch nano-indentation. VA-MWCNT pillars of various diameters (30–150 µm) grown by low-pressure chemical vapor deposition on silicon wafer. A conformal brittle coating of niobium-titanium-nitride with high superconductivity temperature was deposited on the VA-MWCNT pillars using atomic layer deposition. The coating together with the pillars could form a superconductive vertical interconnect. The indentation tests showed foam-like behavior of pristine CNTs and ceramic-like fracture of conformal coated CNTs. The compressive strength and the elastic modulus for pristine CNTs could be divided into three regimes of linear elastic, oscillatory plateau, and exponential densification. The elastic modulus of pristine CNTs increased for a smaller pillar diameter. The response of the coated VA-MWCNTs depended on the diffusion depth of the coating in the pillar and their elastic modulus increased with pillar diameter due to the higher sidewall area. Tuning the material properties by conformal coating on various diameter pillars enhanced the mechanical performance and the vertical interconnect access (via) reliability. The results could be useful for quantum computing applications that require high-density superconducting vertical interconnects and reliable operation at reduced temperatures.
机译:本文利用平冲纳米压痕技术研究了原始碳纳米管和涂覆的垂直排列(VA)多壁碳纳米管(CNT)柱的压缩应力。通过低压化学气相沉积在硅片上生长的各种直径(30-150 µm)的VA-MWCNT柱。使用原子层沉积将具有高超导温度的铌钛氮化物的共形脆性涂层沉积在VA-MWCNT柱上。涂层与支柱一起可以形成超导垂直互连。压痕测试显示原始碳纳米管的泡沫状行为和保形涂覆的碳纳米管的陶瓷状断裂。原始碳纳米管的抗压强度和弹性模量可分为线性弹性,振荡平稳和指数致密化三种模式。对于较小的柱直径,原始CNT的弹性模量增加。涂层的VA-MWCNT的响应取决于涂层在立柱中的扩散深度,并且由于较高的侧壁面积,它们的弹性模量随立柱直径的增加而增加。通过在各种直径的立柱上进行保形涂层来调整材料性能,可以提高机械性能和垂直互连通路(通过)的可靠性。该结果对于需要高密度超导垂直互连以及在降低的温度下可靠运行的量子计算应用很有用。

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