Public Deliverables

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D1.1 โ€“ Sustainability Pre-Assessment, Guidelines, and Test Protocols

๐Ÿ“… Submitted: 31/01/2023

๐Ÿงช WP1 โ€“ ๐Ÿ‘ฅ Solvay, UPV, ESPCI, University of Maastricht

Summary: This deliverable evaluates the environmental, economic, and social impacts of hydrogen production, and defines protocols to test MOF-based photocatalysts.

๐Ÿ“„ [Download Full Document]

D7.1 โ€“ Plan for Dissemination, Exploitation, and Communication

๐Ÿ“… Submitted: 28/04/2023

๐Ÿ“ฃ WP7 โ€“ ๐Ÿ‘ฅ Euroquality (EQY)

๐Ÿ“„ [Download Full Document]

Summary: This document outlines the dissemination and communication strategy, target audiences, and key outreach metrics for MOF2H2.

Confidential Deliverables

Only short descriptions are provided due to the confidential nature of the content.

D2.1 โ€“ Synthesis and Characterization of Promising MOF Phases

๐Ÿ“… Submitted: 31/10/2023

๐Ÿงช WP2 โ€“ ๐Ÿ‘ฅ ESPCI

Summary: Reports on MOF synthesis methods and stability screening to identify candidates for hydrogen production.

D2.2 โ€“ Metal Nanoparticle Co-Deposition on First-Generation MOF

๐Ÿ“… Submitted: 31/05/2024

๐Ÿงช WP2 โ€“ ๐Ÿ‘ฅ UPV

Summary: Explores how different deposition techniques improve nanoparticle integration on MOFs.

D2.3 โ€“ Film Deposition of the First-Generation MOF

๐Ÿ“… Submitted: 27/06/2024

๐Ÿงช WP2 โ€“ ๐Ÿ‘ฅ ESPCI

Summary: Evaluates binder materials and techniques to optimize MOF film adhesion and functionality.

D3.1 โ€“ MOFs Electronic Properties and Catalytic Mechanisms

๐Ÿ“… Submitted: 30/08/2024

๐Ÿงช WP3 โ€“ ๐Ÿ‘ฅ TECH

Summary: Investigates the electronic structures and catalytic efficiency of MOFs, including metal substitutions.

D3.2 โ€“ MNP/MOF Structure-Activity Relationship and Final Models

๐Ÿ“… Submitted: 31/01/2025

๐Ÿงช WP3 โ€“ ๐Ÿ‘ฅ CNRS, UPV, TECH

Summary: Combines experiments and modelling to understand how metal nanoparticles affect MOF performance.

D4.1 โ€“ Metal/Ligand Substitution Towards the Refined MOF

๐Ÿ“… Submitted: 31/07/2024

๐Ÿงช WP4 โ€“ ๐Ÿ‘ฅ CNRS-IMAP/ESPCI

Summary: Examines how varying ligands and metals can enhance MOF photocatalytic properties.