# Semiconductors

Published articles for Semiconductors.

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## AI helps design new materials that work in the real world

DevFeed: [AI helps design new materials that work in the real world](<https://devfeed.tech/articles/ai-helps-design-new-materials-that-work-in-the-real-world-37941.md>)

Original publisher: [Read original article](<https://news.mit.edu/2026/ai-helps-design-new-materials-that-work-in-real-world-0826>)

Author: Zach Winn | MIT News

Published: 2026-08-26T09:00:00Z

Content type: news

Language: en

Sources: [MIT AI News](<https://devfeed.tech/sources/mit-ai-news.md>)

Topics: [Artificial Intelligence](<https://devfeed.tech/topics/ai.md>), [Framework](<https://devfeed.tech/topics/framework.md>), [Simulation and Design](<https://devfeed.tech/topics/simulation-and-design.md>), [Crystal](<https://devfeed.tech/topics/crystal.md>)

Tags: [ai](<https://devfeed.tech/tags/ai.md>), [artificial-intelligence](<https://devfeed.tech/tags/artificial-intelligence.md>), [bowen-yu](<https://devfeed.tech/tags/bowen-yu.md>), [chemical-engineering](<https://devfeed.tech/tags/chemical-engineering.md>), [chemistry](<https://devfeed.tech/tags/chemistry.md>), [computer-chips](<https://devfeed.tech/tags/computer-chips.md>), [computer-science-and-technology](<https://devfeed.tech/tags/computer-science-and-technology.md>), [crystal](<https://devfeed.tech/tags/crystal.md>), [crysvcd](<https://devfeed.tech/tags/crysvcd.md>), [data-centers](<https://devfeed.tech/tags/data-centers.md>), [department-of-energy-doe](<https://devfeed.tech/tags/department-of-energy-doe.md>), [diffusion-models](<https://devfeed.tech/tags/diffusion-models.md>), [dmse](<https://devfeed.tech/tags/dmse.md>), [hao-tang](<https://devfeed.tech/tags/hao-tang.md>), [heather-kulik](<https://devfeed.tech/tags/heather-kulik.md>), [ju-li](<https://devfeed.tech/tags/ju-li.md>), [machine-learning](<https://devfeed.tech/tags/machine-learning.md>), [materials-design](<https://devfeed.tech/tags/materials-design.md>), [materials-discovery](<https://devfeed.tech/tags/materials-discovery.md>), [materials-science-and-engineering](<https://devfeed.tech/tags/materials-science-and-engineering.md>), [mingda-li](<https://devfeed.tech/tags/mingda-li.md>), [mouyang-cheng](<https://devfeed.tech/tags/mouyang-cheng.md>), [national-science-foundation-nsf](<https://devfeed.tech/tags/national-science-foundation-nsf.md>), [nuclear-science-and-engineering](<https://devfeed.tech/tags/nuclear-science-and-engineering.md>), [paper](<https://devfeed.tech/tags/paper.md>), [physics](<https://devfeed.tech/tags/physics.md>), [research](<https://devfeed.tech/tags/research.md>), [school-of-engineering](<https://devfeed.tech/tags/school-of-engineering.md>), [school-of-science](<https://devfeed.tech/tags/school-of-science.md>), [semiconductors](<https://devfeed.tech/tags/semiconductors.md>), [weiliang-luo](<https://devfeed.tech/tags/weiliang-luo.md>), [weiwei-xie](<https://devfeed.tech/tags/weiwei-xie.md>), [yongqiang-cheng](<https://devfeed.tech/tags/yongqiang-cheng.md>)

### AI overview

MIT researchers developed CrysVCD, a framework that applies chemistry-based valence constraints before material generation to improve the stability of generated designs. In tests, it achieved high lattice-dynamics stability in nearly 70 percent of computational material generations and supported targeting properties such as high thermal conductivity and high dielectric constant.

### Source excerpt

The "CrysVCD" tool developed at MIT could cut the huge amounts of time and money spent on screening out chemically unstable designs.

## Q&A: Rethinking how innovation happens

DevFeed: [Q&A: Rethinking how innovation happens](<https://devfeed.tech/articles/q-a-rethinking-how-innovation-happens-37979.md>)

Original publisher: [Read original article](<https://news.mit.edu/2026/qa-eugene-fitzgerald-rethinking-how-innovation-happens-0817>)

Author: Jason Sparapani | Department of Materials Science and Engineering

Published: 2026-08-17T19:50:00Z

Content type: article

Language: en

Sources: [MIT AI News](<https://devfeed.tech/sources/mit-ai-news.md>)

Topics: [Materials science and engineering](<https://devfeed.tech/topics/materials-science-and-engineering.md>), [implementation](<https://devfeed.tech/topics/implementation.md>)

Tags: [altruistic-science](<https://devfeed.tech/tags/altruistic-science.md>), [artificial-intelligence](<https://devfeed.tech/tags/artificial-intelligence.md>), [book](<https://devfeed.tech/tags/book.md>), [books-and-authors](<https://devfeed.tech/tags/books-and-authors.md>), [business-and-management](<https://devfeed.tech/tags/business-and-management.md>), [dmse](<https://devfeed.tech/tags/dmse.md>), [economics](<https://devfeed.tech/tags/economics.md>), [engineering](<https://devfeed.tech/tags/engineering.md>), [eugene-fitzgerald](<https://devfeed.tech/tags/eugene-fitzgerald.md>), [faculty](<https://devfeed.tech/tags/faculty.md>), [fundamental-innovation](<https://devfeed.tech/tags/fundamental-innovation.md>), [future](<https://devfeed.tech/tags/future.md>), [innovation](<https://devfeed.tech/tags/innovation.md>), [interview](<https://devfeed.tech/tags/interview.md>), [invention](<https://devfeed.tech/tags/invention.md>), [invisible-engine](<https://devfeed.tech/tags/invisible-engine.md>), [misconceptions](<https://devfeed.tech/tags/misconceptions.md>), [mit-and-masdar-institute-cooperative-program](<https://devfeed.tech/tags/mit-and-masdar-institute-cooperative-program.md>), [mit-books-and-authors](<https://devfeed.tech/tags/mit-books-and-authors.md>), [mit-dmse](<https://devfeed.tech/tags/mit-dmse.md>), [mit-faculty-books](<https://devfeed.tech/tags/mit-faculty-books.md>), [mit-faculty-interview](<https://devfeed.tech/tags/mit-faculty-interview.md>), [moore-s-law](<https://devfeed.tech/tags/moore-s-law.md>), [q-a](<https://devfeed.tech/tags/q-a.md>), [research](<https://devfeed.tech/tags/research.md>), [research-commercialization](<https://devfeed.tech/tags/research-commercialization.md>), [school-of-engineering](<https://devfeed.tech/tags/school-of-engineering.md>), [semiconductor-technologies](<https://devfeed.tech/tags/semiconductor-technologies.md>), [semiconductors](<https://devfeed.tech/tags/semiconductors.md>), [singapore-mit-alliance-for-research-and-technology-smart](<https://devfeed.tech/tags/singapore-mit-alliance-for-research-and-technology-smart.md>), [strained-silicon](<https://devfeed.tech/tags/strained-silicon.md>), [strategic-research](<https://devfeed.tech/tags/strategic-research.md>), [value-creation](<https://devfeed.tech/tags/value-creation.md>)

### AI overview

MIT professor Eugene Fitzgerald discusses his book The Invisible Engine: Why Innovation Evades Control, drawing on research programs and his experience co-inventing strained silicon. He describes innovation as an intersection of science, economics, market applications, technology, implementation, and society.

### Source excerpt

In his latest book, Professor Eugene Fitzgerald examines the forces that turn breakthroughs into value -- and why innovation resists simple formulas.

## Google joins the OpenROAD Initiative as principal member to accelerate open source silicon innovation

DevFeed: [Google joins the OpenROAD Initiative as principal member to accelerate open source silicon innovation](<https://devfeed.tech/articles/google-joins-the-openroad-initiative-as-principal-member-to-accelerate-open-source-silicon-innovation-41367.md>)

Original publisher: [Read original article](<http://opensource.googleblog.com/2026/08/%20google-joins-the-openroad-initiative-as-principal-member-to-accelerate-open-source-silicon-innovation.html>)

Author: Google Open Source (noreply@blogger.com)

Published: 2026-08-11T18:30:00Z

Content type: release

Language: en

Sources: [Google Open Source Blog](<https://devfeed.tech/sources/google-open-source-blog.md>)

Topics: [Google](<https://devfeed.tech/topics/google.md>), [Chip design](<https://devfeed.tech/topics/chip-design.md>), [Open Source](<https://devfeed.tech/topics/open-source.md>), [toolchains](<https://devfeed.tech/topics/toolchains.md>), [Continuous integration](<https://devfeed.tech/topics/continuous-integration.md>)

Tags: [chip-design](<https://devfeed.tech/tags/chip-design.md>), [ci-cd](<https://devfeed.tech/tags/ci-cd.md>), [eda](<https://devfeed.tech/tags/eda.md>), [google](<https://devfeed.tech/tags/google.md>), [open-source](<https://devfeed.tech/tags/open-source.md>), [openroad](<https://devfeed.tech/tags/openroad.md>), [semiconductors](<https://devfeed.tech/tags/semiconductors.md>), [toolchains](<https://devfeed.tech/tags/toolchains.md>), [user-experience](<https://devfeed.tech/tags/user-experience.md>)

### AI overview

Google has joined the OpenROAD Initiative as a principal member and appointed Aaron Cunningham to its Governing Board. The partnership supports OpenROAD's open-source electronic design automation ecosystem through governance, ecosystem growth, workforce development, and technical improvements.

### Source excerpt

by Ethan Mahintorabi & Aaron Cunningham, Hardware Toolchains Team Google is committed to advancing open source silicon innovation. We are excited to share that we have formally joined the OpenROAD Initiative (ORI), Inc. as a principal member. ORI is a nonprofit public benefit corporation dedicated to the open source electronic design automation (EDA) ecosystem. As part of this commitment, Aaron Cunningham has been appointed to the ORI Governing Board to represent Google and help drive the foundation's strategic direction, financial sustainability, and technical stewardship. Driving long-term open source sustainability The OpenROAD Initiative's mission is to advance and sustain the open source EDA ecosystem by fostering collaborative innovation across research, education, and industry--transforming ideas into silicon. Google's membership aligns directly with ORI's multi-year sustainability goals, supported by the US National Science Foundation's (NSF) Pathways to Enable Open-Source Ecosystems (POSE) program. With Google's participation and membership commitment, ORI will continue to strengthen, grow, and sustain its open source ecosystem through key vectors: Neutral Stewardship: Fostering transparent governance where no single company has outsized control over the code, ensuring the project remains inspectable, accessible, and community-driven. Ecosystem Growth: Supporting open and reproducible silicon research, developing robust design flows, and hosting global design contests. Workforce Development: Supporting global silicon skilling initiatives by expanding open source chip design curricula and collaborating with academic institutions and industrial training networks. Technical Strengthening: Enhancing continuous integration and deployment (CI/CD) pipelines, expanding PDK enablement, and improving user experience. Leadership perspectives "The OpenROAD Initiative is built on the vision of making chip design open and accessible to all--building a collaborative ecosyst