选择性
材料科学
化学气相沉积
试剂
纳米技术
纳米光刻
基质(水族馆)
锡
化学工程
纳米尺度
电介质
扩散
制作
化学
光电子学
催化作用
冶金
物理化学
有机化学
医学
替代医学
海洋学
病理
物理
地质学
工程类
热力学
作者
Akhilesh Kumar Mandal,Marleen H. van der Veen,N. Haghighi,Max Edward Robson,Niels Claessens,Johan Meersschaut,Nicolas Jourdan,Zsolt Tökei,Annelies Delabie
标识
DOI:10.1002/admt.202301820
摘要
Abstract Area‐selective deposition (ASD) is a bottom‐up technique that provides numerous opportunities for nanoelectronic device fabrication. For example, advanced nano‐interconnect structures with barrierless metals like Ru in the contact holes can be created by Ru ASD with the bottom metals as growth surfaces and dielectrics as non‐growth surfaces. This work investigates Ru ASD by chemical vapor deposition (CVD) on industrially relevant substrates and nanopatterns and reveals how selectivity and growth rate are modulated by the CVD conditions and type of nanopattern. For low‐k dielectric/Cu substrate combinations, the selectivity reverses from metal‐on‐metal to metal‐on‐dielectric upon only changing the CVD co‐reagent from H 2 to NH 3 . In contrast, NH 3 is the preferred co‐reagent for SiO 2 ‐TiN line patterns with critical dimension (CD) of 40 nm due to the more favorable adsorption and diffusion kinetics that cause growth rate and selectivity enhancement. Consistent with a diffusion‐mediated mechanism, the growth rate enhances even more for Ru CVD on nanoscale contact holes with CD of 10.5 nm, becoming 2.4 times higher as compared to unpatterned substrates. Thus, the ASD process changes drastically when pattern dimensions reach the nanoscale. The reported insights facilitate rational design of metal ASD processes for multiple applications in nanofabrication.
科研通智能强力驱动
Strongly Powered by AbleSci AI