The research solution for identifying material properties Fast and reliable insights accelerating materials science research

SpringerMaterials provides curated data and advanced functionalities to support research in materials science, physics, chemistry, engineering, and other related fields.

  • A comprehensive database covering multiple material classes, property types, and applications
  • Enhanced data visualization features display interactive crystal structures, data tables, and phase diagrams with export options for further analysis
  • Search functions optimized for materials science like elemental composition or chemical structure searching to quickly find material property data
  • Trusted and curated resource with thousands of materials science experts ensuring high data quality

LATEST DEVELOPMENTS ON SPRINGERMATERIALS

  • Early Access – ISP Update 2027

    What’s this? Another update already?

    The SpringerMaterials team and our editors have been working intensively to provide you with early access to the ISP 2027 data update one year ahead of the planned release. Making the latest materials data available to you much sooner is part of our commitment to help you accelerate your research with faster access to up-to-date materials property data. This update includes a significantly expanded set of curated and expertly validated data across a wide range of material classes. Explore what’s new here:

  • ISP Update 2026

    We are pleased to announce the addition of new content to our Inorganic Solid Phases (ISP) data collection. The 2026 update delivers an extensive set of newly curated and verified data across numerous element systems and material classes. Learn more about this update here:

  • Perovskite Device Data Announcement

    We are delighted to introduce a new Perovskite Device Data collection on our platform. This collection brings together key information for more than 2,000 perovskite materials, including perovskite band gaps, deposition methods, and essential solar cell device metrics such as short‑circuit current, open‑circuit voltage, fill factor, and power conversion efficiency. The dataset was curated by Jesper Jacobsson (Uppsala University), Eva Unger (Helmholtz Zentrum Berlin) and their teams as part of The Perovskite Database Project. Browse through this data collection

  • ISP Update 2025

    We are excited to announce the addition of new content to the SpringerMaterials platform. The Inorganic Solid Phases collection was just updated with a rich collection of new data across a range of material classes carefully evaluated and curated by experts in the field. Learn more about this update: