GIUV2026-018
The PerSISTech group focuses on the design and study of advanced smart materials exhibiting persistent luminescence. By integrating phenomena such as spin crossover and photo-modulated emission, we develop systems capable of responding dynamically to external stimuli like light and temperature. Our research aims to bridge the gap between fundamental photophysics and the next generation of multifunctional sensing technologies, ranging from optical thermometry to magnetic contrast probes.
- o investigate the physicochemical mechanisms of persistent luminescence and spin crossover phenomena in coordination networks and doped materials.
- To design and synthesize novel materials capable of reversibly responding to external stimuli, primarily light and temperature.
- To contribute to energy efficiency through light storage and enhance biomedical diagnostic techniques via high-resolution bioimaging
- Persistent Stimuli-Induced Sensing Technologies.The PERSISTech group focuses on the design and study of advanced smart materials exhibiting persistent luminescence. By integrating phenomena such as spin crossover and photo-modulated emission, we develop systems capable of responding dynamically to external stimuli like light and temperature. Our research aims to bridge the gap between fundamental photophysics and the next generation of multifunctional sensing technologies, ranging from optical thermometry to magnetic contrast probes.
| Name | Nature of participation | Entity | Description |
|---|---|---|---|
| MARIA TERESA DELGADO PEREZ | Director | Universitat de València |
- Physical Chemistry
- Energía
- LUMINISCENCE
- NANOMATERIALS
- MEDICAL IMAGE ANALYSIS
- ELECTRONIC STRUCTURE
- SUSTAINABILITY
- CASSCF/CASPT2
- CONDENSED PHASE ELECTRON SPECTROSCOPY
- MULTIDIMENSIONAL SPECTROSCOPY
- THEORETICAL SPECTROSCOPY
- EXCITED ELECTRONIC STATES
- PHOTOCHEMISTRY
- UV/VIS RADIATION
- GRAPHENE
- SOLID STATE PHYSICS
- PHOTOEMISSION
- TOPOLOGICAL MATERIALS
- TWO-DIMENSIONAL SEMICONDUCTORS
















