Full-Time

Degradation Analysis Postdoctoral Fellow

DuraMat

Updated on 8/5/2026

Lawrence Berkeley National Laboratory

Lawrence Berkeley National Laboratory

5,001-10,000 employees

Fundamental science enabling energy and environment

Compensation Overview

$8k - $8.9k/mo

No H1B Sponsorship

Berkeley, CA, USA

In Person

PhD

Category
Data & Analytics (1)
Required Skills
LLM
Python
MATLAB

Get referred to Lawrence Berkeley National Laboratory

See people who can refer or advise you

Requirements
  • A Ph.D. in Chemistry, Materials Science, Physics, or a related field is required.
  • Deep knowledge of solar photovoltaic materials and their degradation mechanisms, including accelerated aging protocols and stressor–response relationships involving ultraviolet exposure, thermal effects, moisture, electrical bias, and mechanical stress.
  • Hands-on experience with photovoltaic characterization techniques, including electroluminescence or photoluminescence imaging, current-voltage measurement, and thermography, sufficient to critically evaluate reported measurements in the literature.
  • Strong data analysis skills using Python and/or MATLAB and statistical reasoning.
  • Excellent communication skills and the ability to work across multi-institutional collaborations.
  • Less than three years of paid postdoctoral experience is required.
  • Candidates must be eligible to work in the United States at the time of hire.
Responsibilities
  • Analyze literature-extracted data on photovoltaic module degradation pathways, assessing data quality, consistency, and completeness.
  • Validate literature-derived conclusions against established degradation mechanisms, including ultraviolet-induced degradation, damp heat, thermo-mechanical stress, delamination, and metastability effects.
  • Identify gaps and contradictions in reported degradation knowledge and formulate hypotheses that connect findings across studies.
  • Develop data analysis procedures in Python to organize, filter, and cross-reference degradation reports across stressors, materials, and module architectures.
  • Collaborate with team members developing large-language-model-based literature extraction and agentic reasoning tools, providing domain feedback on extraction quality.
  • Prepare presentations and reports and write peer-reviewed journal articles.
  • Assist in outreach activities, workshops, and tutorials.
Desired Qualifications
  • Programmatic use of large language models or experience with large-language-model-extracted data sets.
  • Experience with International Electrotechnical Commission standards development or fielded-module reliability data.
Lawrence Berkeley National Laboratory

Lawrence Berkeley National Laboratory

View

Berkeley Lab is a national research facility that conducts unclassified basic science across many fields, funded by the U.S. Department of Energy and managed by the University of California. Its work aims to address energy and environmental challenges by using interdisciplinary teams and building advanced tools for scientific discovery. Researchers study biosciences, computing sciences, Earth and environmental sciences, energy sciences and technologies, and physical sciences. The lab hosts about 4,200 scientists, engineers, staff, and students on a 200-acre site near UC Berkeley, and it has earned many prestigious honors, including Nobel Prizes and national academy memberships. Its goal is to generate foundational science that leads to practical, transformational solutions for energy and environmental issues while training the next generation of scientists and engineers.

Company Size

5,001-10,000

Company Stage

Grant

Total Funding

$2M

Headquarters

Berkeley, California

Founded

1931

Get referred to Lawrence Berkeley National Laboratory

See people who can refer or advise you

Simplify Jobs

Simplify's Take

What believers are saying

  • Genesis Mission access gives Berkeley Lab AI, HPC, and partner funding across 2026.
  • March 18, 2026 NVIDIA collaboration advances low-latency quantum-control workflows at AQT.
  • July 2026 Buildings Sector Scenarios data strengthened Berkeley Lab’s influence with utilities and grid planners.

What critics are saying

  • FY2026 DOE funding cut Berkeley Lab’s budget to $752.3 million, squeezing research programs.
  • Witherell said layoffs hit research and operations after federal funding cuts in 2025.
  • Heavy DOE dependence creates existential risk if Washington reverses national-lab appropriations again.

What makes Lawrence Berkeley National Laboratory unique

  • Berkeley Lab led 13 Genesis Mission projects on July 22, 2026.
  • Its open-source QubiC stack links GPUs and quantum hardware through NVIDIA NVQLink.
  • The Lab turned county-level building-demand forecasts through 2050 into public planning infrastructure.

Help us improve and share your feedback! Did you find this helpful?

Benefits

Hybrid Work Options

Growth & Insights and Company News

Headcount

6 month growth

3%

1 year growth

3%

2 year growth

3%
Techstrong
Jul 28th, 2026
DOE selects four Texas A&M AI projects for Genesis Mission.

DOE selects four Texas A&M AI projects for Genesis Mission. TL;DR - Key Takeaways * Texas A&M landed four projects in DOE's Genesis Mission, spanning critical minerals, particle accelerator operations and nuclear reactor safety. * Two teams will use multimodal AI to improve mineral exploration, combining geological, geochemical, microbial, hydrological and satellite data. * Agentic digital twins could help scientists maximize costly beam time by recommending equipment settings, monitoring sensors and detecting problems. Four Texas A&M research teams have been selected for the U.S. Department of Energy's Genesis Mission, where they will develop and test AI systems for critical mineral research, particle accelerator operations and nuclear reactor safety analysis. The projects are part of the Genesis Mission's recently announced initial research portfolio, drawn from what DOE called its largest response ever to a funding opportunity. This includes 278 projects involving 342 institutions, with universities leading 168 of them. The work is organized around 26 national science and technology challenges DOE identified in February, including fusion energy, quantum computing, chip design and advanced manufacturing. DOE said the teams will gain access to the initiative's shared platform of AI agent frameworks, advanced models, industry software and high performance computing resources at national laboratories and partner facilities. That infrastructure is central to the Genesis Mission's premise of connecting AI with the scientific data, supercomputers and research facilities scientists already use to help them move more quickly from experiments to results. DOE has set a goal of doubling the productivity and impact of U.S. research within a decade through faster data analysis, better use of scarce computing and laboratory resources, and greater coordination across research institutions. At Texas A&M, two of the four projects will apply multimodal AI to critical minerals. A team led by civil and environmental engineering professor Kung-Hui Chu will work with Lawrence Berkeley National Laboratory to combine microbial, hydrological and geochemical data to build AI tools for locating mineral deposits and studying biological methods of recovery. A second team, led by geology and geophysics professor Nicholas Perez, will analyze geological, geochemical, geophysical and satellite data to identify patterns associated with rare earth deposits. The researchers will study Texas, the Colorado Mineral Belt and other parts of the Southwest in collaboration with Pacific Northwest National Laboratory. Another project, led by Texas A&M assistant professor Jonas Karthein in collaboration with MIT's Laboratory for Nuclear Science, will test agentic digital twins at precision nuclear physics facilities, where data is limited and beam time can cost hundreds to more than $10,000 per hour. The system will learn how equipment behaves, recommend settings, monitor sensors and flag problems, helping researchers make better use of scarce experimental time. The team plans a nine-month proof of concept at Texas A&M and MIT, with possible expansion to larger facilities in a second phase. A fourth project will explore AI support for reactor safety and licensing. Headed by nuclear engineering professor Yang Liu, the SHIELD system will help run reactor models and simulations and prepare documents for regulatory review. The team will test it on a sodium-cooled reactor design and conventional large light-water reactors. DOE cautioned that the selections are subject to award negotiations and do not yet guarantee funding. But projects like these could give the Genesis Mission concrete measures of progress, including better mineral exploration decisions, more efficient use of beam time and faster preparation of reactor safety analyses. Their results could also help show where AI can make the greatest impact across scientific research.

Newswire
Jul 23rd, 2026
eXoZymes selected for doe's Genesis Mission to advance ai-powered digital twins for cell-free biomanufacturing.

eXoZymes selected for doe's Genesis Mission to advance ai-powered digital twins for cell-free biomanufacturing. * Company to collaborate with Lawrence Berkeley National Laboratory on AI-enabled digital twins designed to accelerate optimization of enzyme-driven manufacturing processes. * The 9-month project awarded approximately $747,000 in total funding, including $147,000 awarded to eXoZymes * Expands eXoZymes' AI strategy beyond enzyme engineering into AI-guided manufacturing, leveraging digital twins to predict, optimize and accelerate development of cell-free bioprocesses. * Provides access to the DOE Genesis Mission Platform, including advanced AI models, AI agents and high-performance computing infrastructure to accelerate future platform development. LOS ANGELES, July 23, 2026 (Newswire.com) - Today, eXoZymes Inc. (NASDAQ:EXOZ) ("eXoZymes") - a pioneer of AI-enhanced enzymes that transform abundant feedstock into valuable nutraceuticals and novel medicines, - announced it has been selected to participate in the inaugural U.S. Department of Energy (DOE) Genesis Mission, a nationwide initiative bringing together leading researchers, national laboratories and industry leaders to accelerate scientific discovery through artificial intelligence. As part of the nine-month project, eXoZymes will collaborate with Lawrence Berkeley National Laboratory (LBNL) researchers Dr. Edward Baidoo and Dr. Hector Garcia Martin to develop AI-powered digital twins for cell-free biomanufacturing. The award also provides access to the Genesis Mission Platform, including advanced AI models, AI agents, and high-performance computing resources. CEO of eXoZymes, Michael Heltzen, states: "For centuries, biology has largely been an observational science. We believe the next generation of biomanufacturing will be built at the intersection of artificial intelligence and digital insights into biology. To make that happen, we are accelerating the design-build-test-learn cycle of biomanufacturing development using our cell-free platform." Heltzen continues, "In my opinion, digital biology - including digital twins - has the potential to become one of the defining technologies of this century, and projects like the Genesis Mission help accelerate that transition. Digital twins have already transformed industries by allowing engineers to simulate, optimize, and refine complex systems, like airplanes in the aviation industry, before building them in the real world. We believe the same transformation is coming of age in biology, where AI-powered digital twins could fundamentally change how biological manufacturing processes are designed, optimized, and scaled." Under the project, eXoZymes will generate curated experimental datasets from multiple cell-free enzymatic pathways, while Dr. Edward Baidoo's team will establish advanced metabolomic workflows that transform those experiments into AI-ready datasets. Dr. Hector Garcia Martin's team will then integrate those datasets into hybrid digital twin models that combine enzyme kinetics, reactor physics and machine learning, creating predictive models capable of identifying optimal operating conditions before laboratory validation. "Our cell-free platform generates exceptionally clean, quantitative datasets because it eliminates many of the biological variables inherent in living-cell systems," said Dr. Paul Opgenorth, co-founder and VP of Development at eXoZymes, who also is the Principal Investigator for the project. "That makes it an ideal foundation for training predictive AI models and building digital twins capable of optimizing increasingly complex biochemical manufacturing processes." The Genesis Mission generated the largest response to a funding opportunity in DOE history, with 278 projects selected across national laboratories, universities, companies, and nonprofit organizations. Selected research teams receive access to the Genesis Mission Platform, including advanced AI models, AI agent frameworks, and high-performance computing resources to accelerate scientific discovery. About eXoZymes Founded in 2019, eXoZymes is pioneering a cell-free biomanufacturing platform that uses AI-enhanced enzymes - called exozymes - to make valuable natural products and new analogs outside living cells. The company's platform is designed to replace inefficient extraction and petrochemical processes with a scalable way to produce high-value molecules for nutraceutical and pharmaceutical markets. eXoZymes is building a portfolio of biosolutions across NCT, cannabinoid analogs, santalene, and other high-value natural product molecules, with potential commercialization paths that include partnerships, licensing and joint ventures. Learn more at exozymes.com eXoZymes Safe Harbor This press release includes forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. Forward-looking statements, which are based on certain assumptions and describe the company's future plans, strategies and expectations, can generally be identified by the use of forward-looking terms such as "believe," "expect," "may," "will," "should," "would," "could," "seek," "intend," "plan," "goal," "project," "estimate," "anticipate," "strategy," "future," "likely," "potential," or other comparable terms, although not all forward-looking statements contain these identifying words. All statements other than statements of historical facts included in this press release regarding the company's strategies, prospects, financial condition, operations, costs, plans and objectives are forward-looking statements. Actual results could differ materially for a variety of reasons. You should carefully consider the risks and uncertainties described in the "Risk Factors" section of eXoZymes' quarterly reports on Form 10-Q, annual reports on Form 10-K, and other documents filed by eXoZymes from time to time by the company with the Securities and Exchange Commission. These filings identify and address important risks and uncertainties that could cause actual events and results to differ materially from those contained in the forward-looking statements. Forward-looking statements speak only as of the date they are made. Readers are cautioned not to put undue reliance on forward-looking statements, and eXoZymes assumes no obligation and does not intend to update or revise these forward-looking statements, whether as a result of new information, future events, or otherwise. eXoZymes does not give any assurance that it will achieve its expectations. eXoZymes contact Lasse Görlitz, VP of Comms & IR (858) 319-7135 [email protected] LinkedIn | X | YouTube

MarketScale
Jul 20th, 2026
New federal dataset and $67M in BTO funding reshape how operators plan for building energy demand.

New federal dataset and $67M in BTO funding reshape how operators plan for building energy demand. The DOE's Building Technologies Office (BTO) is reshaping building energy demand planning by deploying over $67 million in R&D funding for 2024. Additionally, Lawrence Berkeley National Laboratory and the National Renewable Energy Laboratory have released a comprehensive county-level energy demand dataset extending through 2050. This initiative aims to enhance the strategies of operators in anticipating and handling future energy needs. This story was produced through MarketScale. See how Energy teams put it to work with Customer Stories & Case Studies. By MarketScale Newsroom · July 20, 2026, 1:44 PM PDT · Department of Energy Building Technologies Office Lawrence Berkeley National Laboratory National Laboratory of the Rockies Learn this in 60 seconds Key facts, context, and what it means, in one minute. Key takeaways Lawrence Berkeley and NREL have released a new county-level energy demand dataset through 2050. $67 million in funding has been deployed by the DOE's BTO for 2024 R&D. The initiative aims to help operators plan better for future building energy demands. A retrofit approach tested in a 184-unit multifamily building cut up-front electrification costs by 33% to 54% compared to standard methods. That single figure, published by the U.S. Department of Energy as part of its 2024 Building Technologies Office recap, illustrates the scale of the operational opportunity now in front of energy and facilities teams managing large real estate portfolios. More than $67 million in BTO funding deployed in 2024. The DOE's Building Technologies Office directed its 2024 investments across five major programs. The largest was the Building Energy Efficiency Frontiers and Innovation Technologies program, known as BENEFIT, which committed $38.8 million across 25 projects in 17 states. According to the Department of Energy, the combined BENEFIT cohorts from 2022, 2023, and 2024 carry a potential $40 billion in annual energy cost savings, assuming at least one project per technology area reaches mass adoption. The BENEFIT focus areas span next-generation building envelope systems, lighting, and HVAC, the three end uses that consistently dominate commercial and multifamily energy spend. For procurement and facilities directors evaluating which technologies to pilot, the 25-project portfolio represents a useful forward indicator of what will be commercially available in the next three to five years. BTO also pushed $6.5 million through its Small Business Innovation Research and Small Business Technology Transfer programs, funding 18 projects across 13 states in two separate award rounds, per the Department of Energy. An additional $2.4 million funded the Equitable and Affordable Solutions to Electrification prize, where the multifamily retrofit benchmark emerged. The Buildings Upgrade Prize, at $22 million, rounded out the major allocations, with 45 winners across 32 states selected in Phase 1 alone. A new dataset gives planners county-level demand visibility through 2050. On the planning side, researchers from Lawrence Berkeley National Laboratory and the National Laboratory of the Rockies published the Buildings Sector Scenarios dataset in Nature this year. The dataset, funded by BTO, provides hourly electricity demand projections at the county level across the entire contiguous United States through 2050, segmented by sector and end use. Non-electric fuel projections are also included at the state and annual level. The paper's authors, led by Jared Langevin of Lawrence Berkeley's Building and Industrial Energy Systems Division, describe the dataset as a response to high uncertainty in U.S. energy load growth, its effects on generation mix, and the downstream impact on customer costs. The dataset is designed to be customizable, letting utilities, grid operators, and large commercial energy buyers build their own scenarios rather than relying on a single forecast. For grid-connected facility operators, the practical value is in the hourly county-level resolution. That granularity supports site-specific analysis of peak demand exposure, a direct input to demand charge management strategies and onsite storage sizing decisions. The researchers validated the dataset against historical surveys and existing projected estimates of buildings sector demand, according to Nature. What the data and funding pipeline mean for operators today. The convergence of active federal R&D investment and a new public planning dataset shifts the operational calculus for energy and facilities teams. BENEFIT-funded technologies entering commercialization over the next several years will arrive in a market where utilities and grid planners are already using county-level scenario data. Operators who align their retrofit and electrification roadmaps with those same datasets will be better positioned in utility incentive programs and rate negotiations. The multifamily cost benchmark from the EAS-E prize is worth examining directly. A 33% to 54% reduction in up-front retrofit costs, demonstrated in a real 184-unit building and published by the Department of Energy, gives portfolio managers a credible reference point when building business cases for building-wide electrification. Most financial models for electrification retrofits have used rough estimates; this benchmark is based on an actual demonstrated approach. The Buildings Sector Scenarios dataset is publicly accessible and reproducible, per Nature, meaning operations teams with analytical capacity can run custom projections for their specific geographies and building types without waiting on utility-provided forecasts. Lawrence Berkeley and the National Laboratory of the Rockies also documented the full analysis workflow, which lowers the barrier for in-house energy analysts to adapt the tool. Featured companies The MarketScale Newsroom reports on the companies, technologies, and trends shaping 16 B2B industries. It turns primary sources and expert commentary into clear, useful coverage for the people doing the work.

The Times Argus
Jul 15th, 2026
Times argus Community News for July 15, 2026.

Times argus Community News for July 15, 2026. * Jul 15, 2026 AROUND TOWN ScotDance competition. Charlotte Stone, 20, of Bradford, and Katherine Levasseur, 35, of Hinesburg, will compete in the ScotDance USA National Championship Saturday, July 25, in Dallas, Texas. The national championship, known as the United States Inter-Regional Championship, is the "Superbowl" of Scottish highland dance only open to those who qualified in the preliminary regional events. Dancers qualify by placing in the top three overall in their respective age group at the regional championship events, of which there are six around the United States. Stone and Levasseur competed at the East Region Championship April 25 in St. Leonard, Maryland, hosted by the Southern Maryland Celtic Festival. Stone placed 2nd Runner-Up in the 18 and Under 22 age group and Levasseur placed 2nd Runner-Up in the 22 and Over age group. The five-day ScotDance event will host dancers from across the United States, Canada and Scotland, in open competitions, choreography, dance challenges, and the North American championship. In the championship event, dancers are given set, championship steps to perform and are judged individually. They will compete in the four Highland dances: the Highland Fling, Sword Dance, Seann Triubhas, and Strathspey & Reel of Tulloch. Stone is a student/assistant teacher of, and Levasseur is owner/instructor at, Highland Dance Vermont training dancers in traditional Scottish technique. Intro to Highland classes are available this fall in Waterbury and Essex; learn more at highlanddancevt.com. Vermont weavers. RANDOLPH - The Vermont Weavers Guild welcomes everyone to hands-on workshops and presentations of hand-weaving and related fiber arts. Typically held at White River Craft Center in Randolph, morning presentations and activities are free to the public but donations are welcome. Remote attendance by Zoom can be arranged. Workshops require advanced registration and payment. More detailed information and how and when to register for workshops is available at www.vermontweaversguild.org. The Vermont Weavers Guild membership starts at $30 for new members' first year. Information on current and past programs, other activities, membership benefits can also be found at the website. MILITARY NEWS Veteran's Place. NORTHFIELD - Veteran's Place in Northfield, an 18-bed transitional housing facility, announced a first-of-its-kind clean energy modernization project in partnership with Lawrence Berkeley National Laboratory, to improve comfort, safety and health outcomes for veterans at the facility. When complete, the new system will reduce or eliminate heating and domestic hot water costs thereby lowering operating expenses, and provide central air conditioning in residents' rooms for the first time. Currently, there are 16 formerly unhoused, male veterans at the facility. LBNL designed the full system concept and has provided all the major components, including heat pumps, thermal storage tanks and metering equipment. Veteran's Place is responsible for hiring electricians and plumbers to install the system and provide components needed to finish the system installation. They are seeking community donations to help complete installation and ensure this transformative system becomes operational. Estimated funds needed to complete the project range from $30-40,000. Donations can be made at www.Vermontveteransplace.org. Composting course. Registration is now open through Sept. 4 for University of Vermont Extension's short course on backyard composting, "From Food Scraps to Soil," a six-week hybrid course where soil scientists and composting experts teach participants how to transform food scraps and yard waste into nutrient-rich compost that improves garden and landscape soils. The course runs from Sept. 11 to Oct. 23 and includes online learning, weekly live Zoom sessions and in-person workshops at three Vermont community composting sites. The fee is $50 for Vermonters ($150 for other students) and includes all materials. Visit go.uvm.edu/vtcompostingcourse to learn more and register. To request a disability-related accommodation to participate, email [email protected] or call 802-656-1777 by Aug. 28. Nonprofit resource. Common Good Vermont and Vermont Community Foundation announced the launch of Vermont Nonprofit HelpDesk, a new resource to connect Vermont's nonprofit organizations with support. Developed in partnership with the Nonprofit Legal Hub and CoLab, the HelpDesk addresses nonprofits' need to navigate complex legal, financial, operational challenges and find the right help when they need it. The HelpDesk is free to use. Any Vermont nonprofit can submit a question or request support through the contact form available at commongoodvt.org/helpdesk. A trained HelpDesk manager guides them to the right resource: a vetted online tool, a template, a training, or a trusted expert who can provide direct support. Do you have an item you would like to see in Community News? A milestone? A public announcement? A short news release about something entertaining going on in your town? Simply email the information to Times Argus at [email protected]. Be sure to put For Community News in the subject line. (Note: Times Argus do reserve the right to edit for length.) When submitting photographs, please be sure they are larger than 1MB in a jpg format.

PR Newswire
Jun 9th, 2026
US national labs partner with Rescale to democratise DOE simulation codes through agentic AI

Rescale has announced a proposed collaboration with three US Department of Energy national laboratories—Lawrence Berkeley, Oak Ridge, and Lawrence Livermore—to make DOE simulation codes accessible to American industry through agentic AI. The partnership, called the Agentic HPC Pipeline Initiative, would use Rescale's digital engineering platform to automate complex simulation workflows. The initiative aims to address the expertise gap that has historically prevented manufacturers from using sophisticated DOE-developed engineering codes. Rescale's AI agents automate tasks like mesh configuration, hardware selection and solver tuning, allowing engineers to run advanced simulations without specialist knowledge. The collaboration builds on existing work with Oak Ridge's Manufacturing Demonstration Facility. The three laboratories bring complementary expertise across fluid dynamics, materials science, additive manufacturing and energy systems.