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22.    Chiral Graphene Quantum Dots Enhanced Drug Loading into Small Extracellular Vesicles

Y. Zhang, G. Kim, Y. Zhu, C. Wang, R. Zhu, X. Lu, H.-C. Chang and Y. Wang,

ACS Nano,2023, 17, 11, 10191–10205.

21.    Blocking tau transmission by biomimetic graphene nanoparticles

R. Zhu, K. M. Makwana, Y. Zhang, B. H. Rajewski, J. R. Del Valle and Y. Wang,

Journal of Materials Chemistry B, 2023, 11, 7378-7388.

20.    Nanoparticle-assisted detection of nucleic acids in a polymeric nanopore with a large pore size

Y. Zhang, X. Chen, C. Wang, H.-C. Chang and X. Guan,

Biosensors and Bioelectronics, 2022, 196, 113697.

19.    Nanopore stochastic sensing based on non-covalent interactions

X. Chen, Y. Zhang, P. Arora and X. Guan,

Anal. Chem., 2021, 93, 10974-10981.

18.    Simultaneous detection of multiple proteases using a non-array nanopore platform

X. Chen, Y. Zhang and X. Guan,

Nanoscale, 2021, 13, 13658-13664.

17.    Analysis with biological nanopore: On-pore, off-pore strategies and application in biological fluids

Y. Wang, Y. Zhang, X. Chen, X. Guan and L. Wang,

Talanta, 2021, 223, 121684.

16.    Joint entropy-assisted graphene oxide-based multiplexing biosensing platform for simultaneous detection of multiple proteases

Y. Zhang, X. Chen, S. Yuan, L. Wang and X. Guan,

Anal. Chem., 2020, 92, 15042-15049.

15.    Chemically functionalized conical PET nanopore for protein detection at the single-molecule level

Y. Zhang, X. Chen, C. Wang, G. M. Roozbahani, H.-C. Chang and X. Guan,

Biosensors and Bioelectronics, 2020, 165, 112289.

14.    Nanopore detection of metal ions: current status and future directions

G. M. Roozbahani, X. Chen, Y. Zhang, L. Wang and X. Guan,

Small Methods, 2020, 4, 2000266.

13.    Enzymatic reaction-based nanopore detection of zinc ions

G. M. Roozbahani, Y. Zhang, X. Chen, M. H. Soflaee and X. Guan,

Analyst, 2019, 144, 7432-7436.

12.    Rapid and sensitive detection of the activity of ADAM17 using a graphene oxide-based fluorescence sensor

Y. Zhang, X. Chen, G. M. Roozbahani and X. Guan,

Analyst, 2019, 144, 1825-1830.

11.    Salt-Mediated nanopore detection of ADAM-17

X. Chen, Y. Zhang, G. Mohammadi Roozbahani and X. Guan,

ACS Applied Bio Materials, 2019, 2, 504-509.

10.    A near-infrared small molecule acceptor based on the quinoidal form for organic solar cells

S.-X. Sun, J.-W. Xu, X.-L. Chen, Y.-W. Zhang, Y. Chen, D.-Y. Chen, T.-H. Ren and R. Xing,

Functional Materials Letters, 2019, 12, 1950003.

9.      Nanopore label‐free detection of single‐nucleotide deletion in Baxα/BaxΔ2

X. Chen, L. Wang, G. M. Roozbahani, Y. Zhang, J. Xiang and X. Guan,

Electrophoresis, 2018, 39, 2410-2416.

8.      Graphene oxide-based biosensing platform for rapid and sensitive detection of HIV-1 protease

Y. Zhang, X. Chen, G. M. Roozbahani and X. Guan,

Anal. Bioanal. Chem., 2018, 410, 6177-6185.

7.      Computation-assisted nanopore detection of thorium ions

G. M. Roozbahani, X. Chen, Y. Zhang, O. Juarez, D. Li and X. Guan,

Anal. Chem., 2018, 90, 5938-5944.

6.      Label-free detection of DNA mutations by nanopore analysis

X. Chen, G. M. Roozbahani, Z. Ye, Y. Zhang, R. Ma, J. Xiang and X. Guan,

ACS Appl. Mater. Interfaces, 2018, 10, 11519-11528.

5.      Displacement chemistry-based nanopore analysis of nucleic acids in complicated matrices

L. Wang, X. Chen, S. Zhou, G. M. Roozbahani, Y. Zhang, D. Wang and X. Guan,

Chem. Commun. (Cambridge, U. K.), 2018, 54, 13977-13980.

4.      Peptide-mediated nanopore detection of uranyl ions in aqueous media

G. M. Roozbahani, X. Chen, Y. Zhang, R. Xie, R. Ma, D. Li, H. Li and X. Guan,

ACS Sensors, 2017, 2, 703-709.

3.      Understanding the halogenation effects in diketopyrrolopyrrole-based small molecule photovoltaics

S.-X. Sun, Y. Huo, M.-M. Li, X. Hu, H.-J. Zhang, Y.-W. Zhang, Y.-D. Zhang, X.-L. Chen, Z.-F. Shi, X. Gong, Y. Chen and H.-L. Zhang,

ACS Appl. Mater. Interfaces, 2015, 7, 19914-19922.

2.      Extraction of uranium and thorium from nitric acid solution by TODGA in ionic liquids

Y. Zhang, Z. Liu, F. Fan, L. Zhu and Y. Shen,

Sep. Sci. Technol., 2014, 49, 1895-1902.

1.      Synthesis of task-specific ionic liquids with grafted diglycolamide moiety. Complexation and stripping of lanthanides

W. Yun, Z. Youwen, F. Fuyou, L. Huimin, H. Peizhuo and S. Yinglin,

J. Radioanal. Nucl. Chem., 2014, 299, 1213-1218