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Monday, 09 December 2024

Novel Methods of Semiconductor Manufacturing: University of Graz is partner in EU project

A close-up image of a semiconductor wafer with etched grids during the fabrication process ©TU Chemnitz Press Office

During the fabrication of semiconductors, grids are etched into the wafers. Photo: TU Chemnitz Press Office

How can technological innovations be aligned with principles of sustainability and circularity? This is a challenge being tackled by researchers at the Department of Environmental Systems Sciences at the University of Graz. As a partner in a new EU project, the team, led by Rupert Baumgartner, is contributing its expertise in sustainability assessment for the semiconductor manufacturing process. The focus of the research project “HaloFreeEtch” is on developing innovative, environmentally friendly etching methods for semiconductors.

Semiconductors are the backbones of all electronic devices, as they possess the property of conducting and inducting electricity. They are prominently used for the production of integrated circuit chips. In the industrial production process of integrated circuits, plasma etching is widely used. This process involves patterning the semiconductor wafer material through a chemical reaction using halogens such as sulfur hexafluoride (SF₆), tetrafluoromethane (CF₄), trifluoromethane (CHF₃), or octafluorocyclobutane (C₄F₈). However, this method poses significant environmental and health risks. The goal of the “HaloFreeEtch” project is to replace halogens in etching processes for silicon and silicon dioxide with more sustainable alternatives.

“At the Department of Environmental Systems Sciences at the University of Graz, we develop tools that support environmental and social sustainability decisions during the early stages of process and product design,” explains Rupert Baumgartner, head of the Christian Doppler Laboratory for Sustainable Product Management in a Circular Economy. For environmentally friendly semiconductor manufacturing, such decisions concern, among other things, the selection of suitable chemicals and the development of effective etching methods. “These are evaluated and identified using comprehensive lifecycle data and subsequent environmental impact assessments,” says Saumya Sadhu, who is doing research in the project for her doctoral thesis.

Simulations are used to plan and continuously improve industrial etching processes. However, environmental aspects have not been taken into account so far. This is set to change. “We will develop optimisation tools that our partners in the “HaloFreeEtch” project can then integrate into their process simulations,” explains Baumgartner. With this project, his research group will further strengthen its profile in sustainability assessments and sustainable process design. “HaloFreeEtch” complements ongoing projects in high-tech applications, such as batteries for electric vehicles, including new recycling technologies and electrochemical production processes.

“HaloFreeEtch” is a four-year project involving renowned European research and industry partners. The project is coordinated by Jörg Schuster from TU Chemnitz. Rupert Baumgartner is leading the team at the University of Graz. “HaloFreeEtch” is funded with € 3.9 million as part of the Horizon Europe research programme. The University of Graz’s share is € 476,750.

 

created by Gudrun Pichler

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