DUANLAB for M-ART

Materials with Asymmetry, Responsiveness, and Tunability

PUBLICATIONS

The representative works are highlighted. For the full list, please visit [Google Scholar].


1. Chiral-Structured Interfaces in Durable Solar Cells
T. Duan+, S. You+, M. Chen+, W. Yu, Y. Li, P. Guo, J. Berry, J. Luther, K. Zhu*, Y. Zhou*
Chiral-structured heterointerface enables durable perovskite solar cells.
Science, 2024, 384, 878–884.
[DOI:10.1126/science.ado5172]


2. Multiscale Bio-Inspired Design for Solar Cells
T. Duan, P. Guo, S. Feldmann, C.M. Sutter-Fella, Y. Zhou*
Nature-inspired multiscale designs for perovskite solar cells.
Nature Reviews Clean Technology, 2025
[DOI: 10.1038/s44359-025-00086-6]


3. Spontaneous Chiral Self-Assembly
T. Duan+, J. Ai+, X. Cui, X. Feng, Y. Duan*, L. Han*, J. Jiang*, S. Che*
Spontaneous chiral self-assembly of CdSe@CdS nanorods.
Chem (Cell Press), 2021, 7(10), 2695–2707.
[DOI: 10.1016/j.chempr.2021.06.009]


4. Hierarchical Chirality in Halide Semiconductors
T. Duan, Y. Zhou*
Leveraging hierarchical chirality in perovskite(-inspired) halides for transformative device applications.
Advanced Energy Materials, 2023, 13, 2200792.
[DOI: 10.1002/aenm.202200792]


5. Light-Integrated TEM for Perovskites
T. Duan, W. Wang, S. Cai, Y. Zhou*
On-chip light-incorporated in situ transmission electron microscopy of metal halide perovskite materials.
ACS Energy Letters, 2023, 8(7), 3048–3053.
[DOI: 10.1021/acsenergylett.3c00750]


6. Chiral Nanorods in Nematic-like Films
T. Duan+, J. Ai+, Y. Duan*, L. Han*, S. Che*
Self-assembly of chiral nematic-like films with chiral nanorods directed by chiral molecules.
Chemistry of Materials, 2021, 33(15), 6227–6232.
[DOI: 10.1021/acs.chemmater.1c01998]


7. Perovskite Memristors for Edge Computing
T. Duan, J. Zha, N. Lin, Z. Wang*, C. Tan*, Y. Zhou*
The rise of metal halide perovskite memristors for edge computing.
Device (Cell Press), 2023, 1, 100221.
[DOI: 10.1016/j.device.2023.100221]


8. Circularly Polarized LEDs from Chiral QDs
T. Duan, J. Ai, S. Chen, G. He, X. Guo*, L. Han*, S. Che, Y. Duan*
Chiral CdSe/CdS quantum dot (in rod)- light-emitting diodes with circularly polarized electroluminescence.
Nano Research, 2022, 15(10), 9573–9577.
[DOI: 10.1007/s12274-022-4536-7]


🗂 More publications on → [Google Scholar]

Lab Core Values

At M-ART Lab, we are dedicated to the design and exploration of asymmetric, responsive, and tunable materials for next-generation optoelectronic and energy applications.

Our research weaves together chemical synthesis, symmetry-breaking phenomena, and device integration, while cultivating a mindset that values structure, function, and the beauty of scientific asymmetry.

We foster a culture of mutual support and open communication, where every member learns from each other and receives support from the PI. Our lab is committed to not just advancing scientific knowledge, but also encouraging personal and intellectual growth, and nurturing a sense of integrity and purpose in each individual’s journey.