LabCompass

Qiushi Ma

Materials Science · Purdue University West Lafayette

Mid career · publishing since 2013Rising activity

Publications

15

Citations

327

Est. group size

Recurring co-author estimate

Active years

13

Publishing since 2013

Research summary
AI-generated

Qiushi Ma studies how electrical charge and energy move through advanced materials on ultrafast timescales, using techniques like terahertz and pump-probe spectroscopy. Much of the work focuses on layered materials such as graphene combined with other thin 2D materials (like MoS2 and PtSe2), as well as porous crystalline materials called metal-organic frameworks, examining how charge transfer and light-driven currents occur in these systems. This research is relevant to developing future ultrafast electronic and optoelectronic devices.

Ultrafast charge and energy transfer in 2D materialsGraphene-based heterostructuresMetal-organic frameworks for charge transportTerahertz and pump-probe spectroscopyPhotoconductivity and optoelectronic materials

Publication output began around 2021 and has grown steadily since, reaching a stable rate of about 2-3 papers per year through 2025.

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

Publication cadence
Publications per year over the last 10 years — averaging 2.2/year recently
171819202021: 1 publication212022: 2 publications222023: 3 publications3232024: 3 publications3242025: 3 publications32526
Recent publications
Publishes in
  • ACS Photonics×2
  • Angewandte Chemie International Edition×1
  • Journal of Photochemistry and Photobiology×1
  • Redox Biology×1
  • The Journal of Physical Chemistry C×1
Similar researchers
By research-topic overlap
  • Jaehoon Ji

    Materials Science · Purdue University West Lafayette

  • Guanghui Cheng

    Materials Science · Purdue University West Lafayette

  • Ziling Li

    Materials Science · The Ohio State University

  • Jisu Jang

    Materials Science · Purdue University West Lafayette

  • Yongjae Cho

    Materials Science · Purdue University West Lafayette

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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