Dechao Chen
Affiliations: | Griffith University |
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Parents
Sign in to add mentorShiding Miao | grad student | 2013-2016 | Hefei University of Technology |
Mark A Buntine | grad student | 2016-2019 | Curtin University |
Guohua Jia | grad student | 2016-2019 | Curtin University |
Qin Li | post-doc | Griffith University |
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Publications
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Shahbazi S, Chen D, Jia G, et al. (2021) Preliminary studies into fluorescent semiconductor nanorods for the detection of latent fingermarks: Size matters, shape matters. Science & Justice : Journal of the Forensic Science Society. 61: 180-186 |
Wang A, Wang W, Chen J, et al. (2020) Dominant polar surfaces of colloidal II-VI wurtzite semiconductor nanocrystals enabled by cation exchange. The Journal of Physical Chemistry Letters |
Shahbazi S, Boseley R, Grant B, et al. (2020) Luminescence detection of latent fingermarks on non-porous surfaces with heavy-metal-free quantum dots Forensic Chemistry. 18: 100222 |
Wang S, Yu J, Zhang M, et al. (2019) Stable, Strongly Emitting Cesium Lead Bromide Perovskite Nanorods with High Optical Gain Enabled by an Intermediate Monomer Reservoir Synthetic Strategy. Nano Letters |
Cai R, Du Y, Yang D, et al. (2019) Free-standing 2D nanorafts by assembly of 1D nanorods for biomolecule sensing. Nanoscale |
Pang Y, Zhang M, Chen D, et al. (2019) Why Do Colloidal Wurtzite Semiconductor Nanoplatelets Have an Atomically Uniform Thickness of Eight Monolayers? The Journal of Physical Chemistry Letters. 3465-3471 |
Chen D, Wang A, Li H, et al. (2019) Colloidal quasi-one-dimensional dual semiconductor core/shell nanorod couple heterostructures with blue fluorescence. Nanoscale |
Shahbazi S, Grant B, Chen D, et al. (2019) Red-Near Infrared Luminescence Detection of Latent Fingermarks with Heavy-Metal-Free Quantum Dots Chemrxiv |
Javaid S, Li Y, Chen D, et al. (2019) Spontaneous Formation of Heterodimer Au–Fe7S8 Nanoplatelets by a Seeded Growth Approach The Journal of Physical Chemistry C. 123: 10604-10613 |
Wang A, Hu X, Wang F, et al. (2019) Large lateral sized two-dimensional Cu2-xS nanoplates formed by Ostwald ripening Materials Letters. 237: 88-91 |