Projects per year
Abstract
Ensuring data quality, completeness, and interoperability is crucial for progressing safety research, Safe-and-Sustainable-by-Design approaches, and regulatory approval of nanoscale and advanced materials. While the FAIR (Findable, Accessible, Interoperable, and Re-usable) principles aim to promote data re-use, they do not address data quality, essential for data re-use for advancing sustainable and safe innovation. Effective quality assurance procedures require (meta)data to conform to community-agreed standards. Nanosafety data offer a key reference point for developing best practices in data management for advanced materials, as their large-scale generation coincided with the emergence of dedicated data quality criteria and concepts such as FAIR data. This work highlights frameworks, methodologies, and tools that address the challenges associated with the multidisciplinary nature of nanomaterial safety data. Existing approaches to evaluating the reliability, relevance, and completeness of data are considered in light of their potential for integration into harmonized standards and adaptation to advance material requirements. The goal here is to emphasize the importance of automated tools to reduce manual labor in making (meta)data FAIR, enabling trusted data re-use and fostering safer, more sustainable innovation of advanced materials. Awareness and prioritization of these challenges are critical for building robust data infrastructures.
| Original language | English |
|---|---|
| Article number | e00567 |
| Number of pages | 18 |
| Journal | Advanced Sustainable Systems |
| Early online date | 26 Dec 2025 |
| DOIs | |
| Publication status | E-pub ahead of print - 26 Dec 2025 |
Bibliographical note
Publisher Copyright:© 2025 The Author(s). Advanced Sustainable Systems published by Wiley-VCH GmbH.
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 7 Affordable and Clean Energy
Keywords
- advanced materials
- artificial intelligence
- data re-usability
- FAIR principles
- nanomaterials
- nanosafety data
- safe and sustainable by design (SSbD)
ASJC Scopus subject areas
- Renewable Energy, Sustainability and the Environment
- General Environmental Science
Fingerprint
Dive into the research topics of 'Challenges and Future Directions in Assessing the Quality and Completeness of Advanced Materials Safety Data for Re-Usability: A Position Paper From the Nanosafety Community'. Together they form a unique fingerprint.-
PINK - Provision of Integrated Computational Approaches for Addressing New Markets Goals for the Introduction of Safe-and-Sustainable-by-Design Chemicals and Materials
Lynch, I. (Principal Investigator), Gkoutos, G. (Co-Investigator), Slater, K. (Co-Investigator) & Karwath, A. (Co-Investigator)
UKRI Horizon Europe Underwriting Innovate UK
1/01/24 → 31/12/27
Project: Research
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CompSafeNano: NanoInformatics Approaches for Safe-by-Design NanoMaterials
Valsami-Jones, E. (Co-Investigator) & Lynch, I. (Principal Investigator)
1/09/21 → 31/08/26
Project: EU
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ACCORDs - Green deal inspired correlative imaging-based characterization for safety profiling of 2D materials
Valsami-Jones, E. (Principal Investigator)
UKRI Horizon Europe Underwriting Innovate UK
1/01/23 → 30/06/26
Project: Research
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MACRAME - Advanced Characterisation methods to assess and characterise the health and environmental risks of Advanced Materials
Lynch, I. (Principal Investigator) & Guo, Z. (Co-Investigator)
UKRI Horizon Europe Underwriting Innovate UK
1/12/22 → 31/05/26
Project: Research
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SABYDOMA: Safety BY Design Of nanoMaterials - From Lab Manufacture to Governance and Communication: Progressing Up the TRL Ladder
Valsami-Jones, E. (Principal Investigator)
1/04/20 → 31/03/24
Project: EU
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H2020_COLLAB_NANOSOLVEIT_PARTNER
Lynch, I. (Principal Investigator) & Valsami-Jones, E. (Co-Investigator)
1/01/19 → 31/08/23
Project: EU
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