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Published on: February 12, 2019
Solid-state NMR and hyperpolarization methods for the Research, Development, and Innovation in Costa Rican science
Isaac F Céspedes-Camacho1, Jörg Matysik2
1School of Chemistry, Instituto Tecnológico de Costa Rica, Campus Tecnológico Central, 30101 Cartago, Costa Rica.
Nuclear Magnetic Resonance (NMR) can advance Costa Rican science and technology through interdisciplinary collaborations. Exploring solid-state NMR applications and hyperpolarization methods offers attainable improvements for national research and development.
Area of Science:
- Chemistry
- Physics
- Materials Science
- Biology
Background:
- Interdisciplinary collaboration is crucial for scientific and technological advancement.
- Nuclear Magnetic Resonance (NMR) is a versatile technique enabling cross-disciplinary research.
- Enhancing Costa Rican research and development (R&D) requires expanding the use of advanced scientific tools.
Purpose of the Study:
- To underscore the significance of NMR for Costa Rican science.
- To identify practical solid-state NMR applications suitable for Costa Rica.
- To emphasize the potential of hyperpolarization methods in advancing NMR capabilities.
Main Methods:
- Review of existing literature on NMR applications.
- Analysis of solid-state NMR techniques relevant to national R&D goals.
- Discussion of hyperpolarization advancements and their applicability.
Main Results:
- Solid-state NMR offers diverse applications across multiple scientific fields.
- Hyperpolarization methods significantly enhance NMR sensitivity and scope.
- Selected NMR techniques are attainable and beneficial for Costa Rica's current research landscape.
Conclusions:
- Implementing and expanding NMR, particularly solid-state NMR and hyperpolarization, can significantly boost Costa Rican R&D.
- NMR serves as a pivotal tool for fostering interdisciplinary connections within Costa Rica.
- Strategic adoption of NMR technologies is recommended to drive scientific progress in the country.
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