Chenjian Lin
Engineering · Purdue University West Lafayette
Publications
35
Citations
714
Est. group size
~7
Recurring co-author estimate
Active years
53
Publishing since 1974
Chenjian Lin's research focuses on the physical chemistry of materials for solar energy and light-emitting devices, particularly perovskite semiconductors and organic molecular systems. Work spans understanding how charges and energy move through layered (2D and 2D/3D) perovskite structures, how molecules called perylenediimides and related compounds split light energy into multiple charge carriers (a process called singlet fission and charge separation), and how these mechanisms can improve solar cells, LEDs, and quantum sensing devices. Much of the research uses ultrafast spectroscopy and structural analysis to reveal how molecular arrangement and vibrations influence these energy and charge transfer processes.
Publication output grew from none in the late 2010s to a steady average of about 3-4 papers per year over the last five years, with continued activity through 2025-2026.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Mosaic lateral heterostructures in two-dimensional perovskite
Nature · 2026
- Mechanistic Insight into Tunable Spin Relaxation in Two-Dimensional Type-II Ligand-Perovskite Heterostructures
Journal of the American Chemical Society · 2025
- Charge Transfer in 2D Halide Perovskites and 2D/3D Heterostructures
ACS Energy Letters · 2024
- Quantum Sensing of Electric Fields Using Spin-Correlated Radical Ion Pairs
Journal of the American Chemical Society · 2023
- Singlet Fission in Perylene Monoimide Single Crystals and Polycrystalline Films
The Journal of Physical Chemistry Letters · 2023
- Ultrafast Charge Transfer Dynamics in a Slip-Stacked Donor–Acceptor–Acceptor System
The Journal of Physical Chemistry A · 2023
- Accelerating symmetry-breaking charge separation in a perylenediimide trimer through a vibronically coherent dimer intermediate
Nature Chemistry · 2022
- 2,3-Diphenylthieno[3,4-<i>b</i>]pyrazines as Hole-Transporting Materials for Stable, High-Performance Perovskite Solar Cells
ACS Energy Letters · 2022
- π-Stacking-Dependent Vibronic Couplings Drive Excited-State Dynamics in Perylenediimide Assemblies
Journal of the American Chemical Society · 2022
- (Invited) Ultrafast Symmetry-Breaking Charge Separation in Organic Semiconductors
ECS Meeting Abstracts · 2022
- High-Efficiency All-Polymer Solar Cells with Poly-Small-Molecule Acceptors Having π-Extended Units with Broad Near-IR Absorption
ACS Energy Letters · 2021
- Efficient green OLEDs achieved by a terbium(III) complex with photoluminescent quantum yield close to 100%
Science China Chemistry · 2021
- Temperature Tuning of Coherent Mixing between States Driving Singlet Fission in a Spiro-Fused Terrylenediimide Dimer
The Journal of Physical Chemistry B · 2021
- CCDC 1987073: Experimental Crystal Structure Determination
The Cambridge Structural Database · 2021
- CCDC 1987072: Experimental Crystal Structure Determination
The Cambridge Structural Database · 2021
- Journal of the American Chemical Society×5
- ACS Energy Letters×4
- Nature Chemistry×3
- The Cambridge Structural Database×2
- Angewandte Chemie International Edition×1
- Olivia F. Williams
Engineering · Purdue University West Lafayette
- Blake P. Finkenauer
Engineering · Purdue University West Lafayette
- Aamir Mushtaq
Engineering · The Ohio State University
- Akriti Akriti
Engineering · Purdue University West Lafayette
- Alexander Milder
Engineering · The Ohio State 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 20, 2026.
Claim or correct this profile