

REDOLI

The REDOLi group seeks to improve society through research in the fields of recognition, sustainability and innovation.
Its research activities focus on the development of molecules and nanomaterials for sensors, as well as the development and application of electronic noses and electronic tongues. The group also works on molecules and nanomaterials capable of modulating protein activity, particularly the enzymes polyphenol oxidase and lipase/pancreatin.
Additional research lines include the synthesis and application of Covalent Organic Frameworks (COFs), porous materials for gas capture, microwave-assisted synthesis, life cycle analysis, and the development of nanomaterials and sensors for the agricultural sector.
The group is also committed to advancing more sustainable processes and products, particularly in agriculture and the chemical, materials and food industries. Furthermore, it promotes the dissemination of knowledge related to the bioeconomy, circular economy and climate change, while supporting companies in innovation processes, knowledge identification, knowledge transfer, intellectual property strategies and project development.
CV Prof. Jose Vicente Ros Lis
Jose Vicente Ros Lis is a Full Professor and head of the REDOLí research group at the University of Valencia (UV). He earned his Ph.D. in Chemistry in 2005, receiving the European Doctorate distinction and the Special Award for Doctoral Thesis. His current research interests focus on the development of chemical solutions related to sustainability. His work is distinctly interdisciplinary, as reflected in the development of sensors, nanomaterials, and the study of supramolecular processes, and it also has an applied focus, as evidenced by his 8 patents and numerous industry collaborations. He is the author of 68 articles and 7 book chapters. He has participated in 64 national and international research projects and 4 educational innovation projects, serving as Principal Investigator (PI) on 37 of them.
Research Lines

Recognition: Development of sensors based on changes in optical or electrochemical properties. Development of molecules and materials with the ability to modulate (activate or inhibit) the activity of proteins.

Sustainability: Development of strategies to achieve more sustainable processes and products, particularly in agriculture and the chemical, materials and food industries.

Innovation: Support to companies in innovation processes, identification of knowledge, transformation of knowledge into products, development of protection strategies and projects.
Latest Funding
Escalado y transferencia de la patente internacional ES2912936
- Ref: INNVA1/2024/116
- Period: 2024–2026
- PI: Jose Vicente Ros Lis
Sistema integral avanzado de optimización en el consumo de agua y fertilizante nitrogenado, N-Aqua-fit
- Ref: INNEST/2024/612
- Period: 2024–2026
- PI: Jose Vicente Ros Lis
Síntesis y aplicaciones seleccionadas de nuevos nanomateriales y nanocompuestos porosos multifuncionales
- Ref: PID2021-126304OB-C43
- Period: 2022–2025
- PI: Jose Vicente Ros Lis – Pedro Amorós del Toro
Desarrollo y validación de nanomateriales y sensores para promover la competitividad del sector agroalimentario (N&S4AGRO)
- Ref: AGROALNEXT2022-065
- Period: 2022–2025
- PI: Jose Vicente Ros Lis – Pedro Amorós del Toro
Desarrollo de aplicaciones del agua electrolizada y arrays de sensores de aplicación en acuicultura (E-ACUICULTURA)
- Ref: THINKINAZUL/2021/028
- Period: 2021–2025
- PI: Jose Vicente Ros Lis
Latest Publications
Smart sensing of Leptinotarsa decemlineata infestations using a portable optical array
- Results in Engineering (2026)
- DOI: 10.1016/j.atech.2026.101849
Detection of Tuber melanosporum Using Optoelectronic Technology
- Sensors (2025)
- DOI: 10.3390/s26010230
Development of an optoelectronic tool for the detection of Cotonet de les Valls in citrus crops
- Sensors and Actuators B: Chemical (2025)
- DOI: 10.1016/j.snb.2025.139021
Evaluation of electrolysed water based solutions as a sustainable approach to control phytopathogenic fungi
- Energy Nexus (2025)
- DOI: 10.1016/j.nexus.2025.100566
A rapid synthesis of magnetic-core mesoporous silica-shell nanostructures as potential theranostic agents by means of microwave irradiation and the atrane method
- Nanoscale (2025)
- DOI: 10.1039/D4NR04572F

