LabCompass

Tianqi Wang

Engineering · Purdue University West Lafayette

Mid career · publishing since 2007Rising activity

Publications

342

Citations

7,355

Est. group size

Recurring co-author estimate

Active years

20

Publishing since 2007

Research summary
AI-generated

This researcher works mainly on chemical gas sensors, developing nanomaterials (such as metal oxide composites and heterostructures) that can detect gases like NO2, toluene, ethanol, and triethylamine at room temperature for uses such as air quality monitoring and food spoilage detection. The work also touches on related materials science topics including photocatalysis, hydrogen production, battery materials, and protective coatings. Given the breadth and volume of publications across many co-authored papers, this profile likely reflects a research group or shared name rather than a single narrow research program.

Chemiresistive gas sensors (NO2, TEA, toluene, ethanol)Metal oxide nanomaterials and heterostructuresPhotocatalysis and oxygen vacancy engineeringEnergy materials (batteries, hydrogen evolution)Functional coatings and composite materials

Publication output has grown substantially over the last decade, rising from around 14-28 papers per year in 2017-2021 to roughly 45-48 per year from 2022-2025.

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

Publication cadence
Publications per year over the last 10 years — averaging 37.8/year recently
2017: 28 publications172018: 24 publications182019: 14 publications192020: 19 publications202021: 22 publications212022: 46 publications222023: 45 publications232024: 48 publications48242025: 48 publications48252026: 2 publications26
Recent publications
Publishes in
  • Sensors and Actuators B Chemical×23
  • SSRN Electronic Journal×22
  • International Journal of Nanomedicine×7
  • Journal of Alloys and Compounds×6
  • Ceramics International×6
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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.

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