HORIZON-RAISE-2027-01-01

Automated Scientific Discovery (RAISE pilot) (RIA)

Status
forthcoming
Programme
Horizon Europe (HORIZON)
Action type
HORIZON Research and Innovation Actions
Opens
22 Sep 2026
Deadline
2 Feb 2027
Fetched
15 Jul 2026, 07:18 UTC
Plain-language summary

Develop AI-driven closed-loop scientific experimentation systems integrating automation and data management for advanced labs.

This call funds projects to create AI-powered systems that automate and optimize scientific experiments in existing labs. It aims to improve efficiency, reproducibility, and collaboration across labs. The focus is on retrofitting labs with intelligent automation, especially in materials science and related fields.

Likely relevant for

  • AI researchers
  • Laboratory automation developers
  • Materials science researchers
  • Data scientists in experimental research
  • Robotics engineers
  • Interdisciplinary research teams

Project signals

Development of AI-driven closed-loop experimentationIntegration of automation with existing lab equipmentFocus on scalable and secure data infrastructuresPrototyping functional demonstratorsCollaborative experimentation across labs

What it funds

  • Development of safe, trustworthy closed-loop scientific experimentation systems
  • Integration of AI-driven decision-making with laboratory automation
  • Retrofitting existing labs without full redesign
  • Comprehensive data management and sharing solutions
  • AI-driven resource optimization and predictive maintenance
  • Interoperability standards and user interfaces for human-machine interaction
  • Collaborative experimentation across multiple labs and networks

Expected outcomes

  • Accelerated scientific discovery with improved efficiency and reproducibility
  • Improved scientific productivity through automation
  • Advancement of laboratory automation best practices
  • Prototype demonstrators showcasing AI-automation integration
  • Enhanced interdisciplinary collaboration between AI and domain scientists

Who can apply / participate

  • Research organisations
  • Higher education institutions
  • Industry partners including SMEs
  • Consortia of multiple organisations
  • Consortium composition and size must comply with Horizon Europe rules
  • Eligible countries as per Horizon Europe Annex B
  • International collaboration encouraged
  • Participants must meet Horizon Europe general and specific eligibility criteria
  • Exact consortium size and composition requirements
  • Specific country eligibility for funding

Must check before shortlisting

  • Eligibility of participant countries and institutions
  • Specific budget and consortium requirements
  • Alignment with materials science or other targeted disciplines

Money

Total budget around €29 million for 3 grants, each about €10 million in 2027.

  • Total budget for 3 grants — 29000000EUR
    Approximate total for 2027
  • Minimum and maximum contribution per grant — 10000000EUR
    Per grant funding amount

Application notes

  • Single-stage submission model.
  • Proposal page limits and layout as per Horizon Europe General Annexes and Application Form.
  • Eligibility and admissibility conditions per Horizon Europe Annexes B, C, D, E, F, G.
  • Use of standard Horizon Europe application and evaluation forms.
  • Prepare proposal according to Horizon Europe guidelines.
  • Submit proposal via the Funding & Tenders Portal by deadline.
  • Ensure compliance with eligibility and admissibility criteria.
  • Check specific topic conditions in the Work Programme.
  • Verify eligibility of participants and countries.
  • Follow all Horizon Europe legal and financial rules.

Derived from official EU Funding portal source · updated 22 Jun 2026, 17:03 UTC. Use this as a shortlisting aid; the official call text remains authoritative.

Related calls

These funding calls are closely related and may be worth considering as part of the same funding landscape.

Official source text

Fine print from the EU source record. Expand when you need the original wording.

Topic description

Expected Outcome: Development of closed-loop scientific experimentation systems that integrate automation with AI-driven, trustworthy decision-making processes in existing laboratory environments; Accelerated scientific discovery with increased efficiency and reproducibility; Improved scientific productivity; Advancement of laboratory automation, including development of best practices, challenges, and opportunities for accelerating R&D; and Prototype functional demonstrators that showcase the integration of automation with AI-driven decision-making, enabling the development of closed-loop scientific experimentation systems. Scope: This topic addresses the development of safe and trustworthy closed loop scientific experimentation systems through the integration of laboratory automation with AI-driven decision-making processes and robust data infrastructures. Funded projects will help scientific labs with an already advanced level of automation and digitalisation to design, develop, and test the intelligence layer that enables scientific instrumentation to semi- or fully autonomously plan, run, and analyse experiments, ideally in coordination/network with other labs and without requiring a complete redesign of existing laboratory outfitting. Proposals will incorporate comprehensive data management systems capable of handling the collection, storage, processing, and sharing of experimental data. This includes developing scalable and secure data storage solutions, efficient data processing and analysis tools, and mechanisms to facilitate data sharing and collaboration across labs, while ensuring data security and privacy. Systems could incorporate AI-driven resource optimisation modules, actively minimising energy, reagent, and material consumption during automated experimentation cycles. Systems should incorporate appropriate level of security and robustness by design. Proposals should demonstrate how an existing lab can be retrofitted with AI-driven systems to plan, execute, and analyse experiments in a closed-loop fashion, incorporating human oversight and interaction to ensure accuracy, safety, and ethical compliance. Possible research targets include (non-exhaustively): Autonomous/semi-autonomous and adaptive AI systems (including agentic AI) that connect with laboratory instruments and robotics and can autonomously plan, act, learn and adapt within a scientific environment, within a validated safe pipeline, Assistive and interactive safe AI-managed robotic systems that automate diverse experiments and can be applied to a diverse hardware setup. Scalable automation solutions and networked AI systems that enable collaborative experimentation across multiple labs and networks of labs (including different geographic locations), supporting the simultaneous execution of large volumes of experiments, Systems that provide real-time data processing and analytics, enabling immediate feedback and dynamic adjustments during experiments Standards and protocols to ensure interoperability between different laboratory instruments, robotics, and AI systems Intuitive user interfaces for enhanced human-machine interaction AI-driven predictive maintenance systems to optimize equipment uptime and resource utilization. Exploration of how scientific automation technologies can be adapted for use in various scientific disciplines beyond those in the scope of this call Proposals should demonstrate close interdisciplinary collaboration of computer/AI scientists and domain scientists. While the scope of this call prioritises software development, it does not exclude the justified purchase of complementary equipment necessary to implement the research targets of the project. An initial focus on materials science is put forward (Cluster 4). Impact areas of automated experimentation in this field could include (non-exhaustively) drug discovery, battery technologies, photovoltaics, carbon capture/storage, water purification, soil remediation, environmentally friendly fertilizers, development of alternative protein sources in food production, sustainable fabrics/dyes. The thematic focus of this topic can be expanded to include scientific disciplines and experimental settings of interest to collaborating clusters. International collaboration is encouraged. Proposals are expected to develop synergies with running Horizon Europe projects in the same field, for example with HORIZON-CL4-INDUSTRY-2025-01-DIGITAL-61.

Conditions and documents

General conditions

1. Admissibility Conditions: Proposal page limit and layout

described in Annex A and Annex E of the Horizon Europe Work Programme General Annexes.

Proposal page limits and layout: described in Part B of the Application Form available in the Submission System.

2. Eligible Countries

described in Annex B of the Work Programme General Annexes.

A number of non-EU/non-Associated Countries that are not automatically eligible for funding have made specific provisions for making funding available for their participants in Horizon Europe projects. See the information in the Horizon Europe Programme Guide.

3. Other Eligible Conditions

described in Annex B of the Work Programme General Annexes.

4. Financial and operational capacity and exclusion

described in Annex C of the Work Programme General Annexes.

5a. Evaluation and award: Award criteria, scoring and thresholds

are described in Annex D of the Work Programme General Annexes.

5b. Evaluation and award: Submission and evaluation processes

are described in Annex F of the Work Programme General Annexes and the Online Manual.

5c. Evaluation and award: Indicative timeline for evaluation and grant agreement

described in Annex F of the Work Programme General Annexes.

6. Legal and financial set-up of the grants

described in Annex G of the Work Programme General Annexes.

Specific conditions

described in the [specific topic of the Work Programme]

Support information

Online Manual is your guide on the procedures from proposal submission to managing your grant. Horizon Europe Programme Guide contains the detailed guidance to the structure, budget and political priorities of Horizon Europe. Funding & Tenders Portal FAQ – find the answers to most frequently asked questions on submission of proposals, evaluation and grant management. Research Enquiry Service – ask questions about any aspect of European research in general and the EU Research Framework Programmes in particular. National Contact Points (NCPs) – get guidance, practical information and assistance on participation in Horizon Europe. There are also NCPs in many non-EU and non-associated countries (‘third-countries’). Enterprise Europe Network – contact your EEN national contact for advice to businesses with special focus on SMEs. The support includes guidance on the EU research funding. IT Helpdesk – contact the Funding & Tenders Portal IT helpdesk for questions such as forgotten passwords, access rights and roles, technical aspects of submission of proposals, etc. European IPR Helpdesk assists you on intellectual property issues. CEN-CENELEC Research Helpdesk and ETSI Research Helpdesk – the European Standards Organisations advise you how to tackle standardisation in your project proposal. The European Charter for Researchers and the Code of Conduct for their recruitment – consult the general principles and requirements specifying the roles, responsibilities and entitlements of researchers, employers and funders of researchers. Partner Search help you find a partner organisation for your proposal.

Raw budget overview
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