LabCompass

Xiaoli Xiong

Engineering · Purdue University West Lafayette

Mid career · publishing since 2005Rising activity

Publications

173

Citations

4,740

Est. group size

Recurring co-author estimate

Active years

22

Publishing since 2005

Research summary
AI-generated

Xiaoli Xiong develops chemical sensors that detect substances such as dopamine, uric acid, glucose-related compounds, food contaminants, and environmental pollutants, often using engineered nanomaterials like metal-organic frameworks (MOFs), carbon nanotubes, and metal nanoparticles. Much of the work combines materials design with electrochemical or colorimetric detection methods, and some recent projects incorporate machine learning to improve sensor selectivity, as well as related work on electrocatalysis for energy applications like water oxidation and oxygen evolution. This research is aimed at practical applications in food safety, environmental monitoring, and biomedical testing.

Electrochemical and colorimetric sensorsMetal-organic framework (MOF) materialsNanomaterial-based catalysisFood and environmental contaminant detectionMachine learning-assisted sensing

Publication output has grown substantially over the last decade, rising from single digits per year around 2017-2020 to over 30 publications annually in 2024-2025.

Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026

Publication cadence
Publications per year over the last 10 years — averaging 22.0/year recently
2017: 9 publications172018: 11 publications182019: 6 publications192020: 8 publications202021: 10 publications212022: 17 publications222023: 27 publications232024: 32 publications32242025: 31 publications252026: 3 publications26
Recent publications
Publishes in
  • Microchemical Journal×34
  • Food Chemistry×14
  • Sensors and Actuators B Chemical×12
  • Analytica Chimica Acta×6
  • SSRN Electronic Journal×6
Similar researchers
By research-topic overlap

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 20, 2026.

Claim or correct this profile