SBIR Phase I: Chemically Impregnated Nanoparticles for Use in Copper Chemical Mechanical Planarization Slurry
SBIR Phase I: Chemically Impregnated Nanoparticles for Use in Copper Chemical Mechanical Planarization Slurry
批准号:
1215012
负责人:
Robin Ihnfeldt
金额:
$15.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-07-01 至 2013-07-31
中文摘要
这个小型企业创新研究第一阶段项目的重点是开发一种含有化学浸渍纳米颗粒的铜化学机械平坦化(CMP)浆料。化学机械抛光工艺由抛光垫和含有化学物质和研磨性纳米颗粒的水溶液组成。待平整的晶片表面靠在抛光垫上旋转,抛光垫连续供应浆料。机械磨损和化学蚀刻的协同结合创造了高材料去除率(MRR)和快速平坦化。目前,铜化学机械抛光液需要一种络合剂,如甘氨酸,以保持足够的MRR,同时这也会导致晶片表面的静态腐蚀和溶解(即腐蚀),这是很难控制的。如果能够控制络合剂对铜表面的暴露,从而只影响磨损的区域,则可以减少或消除静态腐蚀和溶解。因此,本建议的重点是通过将络合剂结合到磨料纳米颗粒中来显著改进铜化学机械抛光浆料技术,使浆料的机械和化学作用局部化和同步,从而提高加工效率和公差。该项目的更广泛的影响/商业潜力包括推进化学机械抛光浆料配方的最新水平和为功能化纳米颗粒打开化学机械抛光浆料市场的大门。拟议项目对铜化学机械抛光浆料技术的具体影响包括:通过减少静态腐蚀来提高平坦化效率(台阶高度减少与去除层厚度的比率),消除铜化学机械抛光浆料中目前所需的大部分化学添加剂,以及通过改善分散稳定性来减少颗粒团聚。这些优势最终将导致化学机械抛光加工成本的降低,同时也提高了加工公差。此外,开发功能化纳米颗粒来改善化学机械抛光浆料存在着巨大的机会。这一产品的成功实施必将为其他化学机械抛光工艺带来衍生技术。
英文摘要
This Small Business Innovation Research Phase I project is focused on the development of a copper chemical mechanical planarization (CMP) slurry containing chemically impregnated nanoparticles. The CMP process consists of a polishing pad and an aqueous slurry containing chemicals and abrasive nanoparticles. The wafer surface to be planarized is rotated against the polishing pad which is continuously supplied with slurry. The synergistic combination of mechanical abrasion and chemical etching creates high material removal rates (MRR) and rapid planarization. Currently, copper CMP slurry solutions require a complexing agent, such as glycine, to maintain an adequate MRR, which at the same time, also causes static etching and dissolution (i.e. corrosion) of the wafer surface which is difficult to control. If the exposure of the complexing agent to the copper surface could be controlled so that only the abraded areas were affected, then static etching and dissolution could be reduced or eliminated. Therefore, the focus of this proposal is to significantly improve copper CMP slurry technology by combining the complexing agent into the abrasive nanoparticle, so that mechanical and chemical actions of the slurry are localized and simultaneous, thus improving processing efficiency and tolerances.The broader impact/commercial potential of this project includes advancing the state-of-the-art in CMP slurry formulation and opening the door for functionalized nanoparticles in the CMP slurry market. Specific impacts of the proposed project on copper CMP slurry technology include: increasing planarization efficiency (ratio of step height reduction and removed layer thickness) by decreasing static etching, eliminating a majority of the chemical additives that are currently required in copper CMP slurries, and reducing particle agglomeration by improving the dispersion stability. These advantages will ultimately lead to a reduction in the cost of CMP processing while also improving processing tolerances. Additionally, an enormous opportunity exists to exploit functionalized nanoparticles to improve CMP slurries. Successful implementation of this product will most certainly lead to derivative technologies for other CMP processes.
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SBIR Phase I: Development of High Efficiency Thermoelectric Materials for Sub 200K Space Applications
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批准号:2035074
-
项目类别:Standard Grant
-
资助金额:$25.6万
-
财政年份:2021
-
负责人:Robin Ihnfeldt
-
依托单位:
SBIR Phase II: Chemically Impregnated Nanoparticles for Use in Copper Chemical Mechanical Planarization Slurry
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批准号:1353318
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项目类别:Standard Grant
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资助金额:$75.0万
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财政年份:2014
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负责人:Robin Ihnfeldt
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依托单位:
国内基金
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