Publications
27
Citations
573
Est. group size
—
Recurring co-author estimate
Active years
7
Publishing since 2019
Leilani Lotti Díaz's publication record spans broad landscape and trend analyses across nanoscience, catalysis, energy materials, biomedical sensors, antibacterial resistance, and CRISPR technologies, alongside more specific work on enzyme inhibitor chemistry (proteasome inhibitors). Much of the recent output consists of literature-mapping or perspective-style articles that summarize research and development trends in a given field rather than solely primary experimental studies. This body of work suggests engagement with a wide range of topics at the interface of chemistry, materials science, and biomedical applications, often examining publication trends and emerging directions across these areas.
Publication output has grown markedly over the last decade, rising from little to no activity before 2019 to a peak of 10 publications in 2025, indicating an increasing and currently active publication pace.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Transforming Medicine: Cutting-Edge Applications of Nanoscale Materials in Drug Delivery
ACS Nano · 2025
- Nanoscience in Action: Unveiling Emerging Trends in Materials and Applications
ACS Omega · 2025
- Nanoscale Materials in Biomedical Applications of Sensors: Insights from a Comprehensive Landscape Analysis
ACS Applied Nano Materials · 2025
- Nanotechnology in Action: A Broad Perspective on Nanoscale Materials for Energy Applications
ACS Applied Energy Materials · 2025
- Leveraging Nanoscience for Advancing Heterogeneous Catalysis: An Analysis of the Influence of Nanocatalyst Dimensions
ACS Applied Energy Materials · 2025
- CRISPR Technology: Transforming the Future of Medicine and Diagnostics
Biochemistry · 2025
- Aza-peptide aldehydes and ketones: synthesis and evaluation as human 20S proteasome inhibitors
Future Medicinal Chemistry · 2025
- Design, Synthesis, and Evaluation of Aza-Peptide Michael Acceptors as Human 20S Proteasome Inhibitors: Extension to the Prime Site
ACS Omega · 2025
- CRISPR in therapeutics and diagnostics: Perspectives from landscape analysis
ChemRxiv · 2025
- The AI Revolution in Chemistry: Shaping the Future of Materials and Biomedical Sciences
ChemRxiv · 2025
- Navigating Antibacterial Frontiers: A Panoramic Exploration of Antibacterial Landscapes, Resistance Mechanisms, and Emerging Therapeutic Strategies
ACS Infectious Diseases · 2024
- Nanoscale materials at work: Mapping emerging applications in energy, medicine, and beyond
ChemRxiv · 2024
- Navigating Antibacterial Frontiers: Landscape Analysis of Antibiotics, Resistance Mechanisms and Emerging Therapeutic Strategies
ChemRxiv · 2024
- Non-noble metal driven catalysis : An exploration of the materials and applications
ChemRxiv · 2024
- Nanoscale Materials in Biomedical Applications of Sensors: Insights from a Comprehensive Landscape Analysis
ChemRxiv · 2024
- ChemRxiv×13
- ACS Omega×4
- ACS Applied Energy Materials×2
- ACS Nano×1
- Journal of Agricultural and Food Chemistry×1
- Juan C. Arango
Energy · Purdue University West Lafayette
- Jun Hu
Energy · Purdue University West Lafayette
- Yujie Liu
Energy · The Ohio State University
- Dawoon Jang
Energy · The Ohio State University
- Kaustav Chatterjee
Energy · Indiana University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
Claim or correct this profile