1.X. Du*, F. Kleitz*, X. Li, H. Huang, X. Zhang, S. Z. Qiao*,Disulfide-bridged organosilica frameworks: Designed synthesis, redox-triggered biodegradation, and nanobiomedical applications" Adv. Funct. Mater.2018, 28, 1707325.
2.X. Du*, C. Zhao, M. Zhou, T. Y. Ma, H. Huang, M. Jaroniec, X. Zhang, S. Z. Qiao*, Hollow carbon nanospheres with tunable hierarchical pores for drug, gene and photothermal synergistic treatment. Small 2017, 13, 1602592.
3. X. Du*, C. Zhao, Y. Luan*, C. Zhang, M. Jaroniec, H. Huang, X. Zhang, S. Z. Qiao*, Dendritic porous yolk@ordered mesoporous shell structured heterogeneous nanocatalysts with enhanced stability. J. Mater. Chem. A2017, 5, 21560.
4. B. Shi,* X. Du*, J.Chen, L. Fu, M. Morsch, A. Lee, Y. Liu, N. Cole, R. Chung, Multifunctional hybrid nanoparticles for traceable drug delivery and intracellular microenvironment controlled multistage drug release in neurons. Small 2017, 13, 1603966
5. M. Zhou, X. Du*, W. Li, X. Li, H. Huang, Q. Liao, B. Shi, X. Zhang, M. Zhang*, One-pot synthesis of redox-triggered biodegradable hybrid nanocapsules with a disulfide-bridged silsesquioxane framework for promising drug delivery. J. Mater. Chem. B 2017, 5, 4455
6. X. Du, X. Li, L. Xiong, X. Zhang*, F. Kleitz, S. Z. Qiao*,Mesoporous silica nanoparticles with organo-bridged silsesquioxane framework as innovative platforms for bioimaging and therapeutic agent delivery.
Biomaterials 2016, 91, 90.
7. X. Du*, X. Li, H. Huang, J. He, X. Zhang, Dendrimer-like hybrid particles with tunable hierarchical pores. Nanoscale 2015, 6173.
8. X. Du, S. Z. Qiao*, Dendritic silica particles with center-radial pore channels: promising platforms for catalysis and biomedicine applications. Small 2015, 11, 392.
9. X. Du, B. Y. Shi, J. Liang, J. Bi. S. Dai, S. Z. Qiao*, Developing functionalized dendrimer-like silica nanoparticles with hierarchical pores as advanced delivery nanocarriers. Adv. Mater. 2013, 25, 5981.
10. X. Du, L. Xiong, Y. Tang, S. Dai, F. Kleitz, S. Z. Qiao*, Intracellular microenvironment-responsive dendrimer-like mesoporous nanohybrids for responsive, traceable, effective and safe intracellular gene delivery. Adv. Funct. Mater. 2014, 24, 7627.
11. X. Du, B. Shi, Y. Tang, S. Dai, S. Z. Qiao*, Label-free dendrimer-like silica nanohybrids for traceable and controlled gene delivery. Biomaterials 2014, 35, 5580.
12. X. Du, B. Y. Shi, L. Xiong, S. Dai, S. Z. Qiao*, ɣ-PGA coated mesoporous ailica nanoparticles with covalently attached prodrug for enhanced cellular uptake and intracellular GSH-responsive release. Adv. Healthcare. Mater. 2015, 4, 771.
13. X. Du, L. Yao, J. He*,One-pot fabrication of noble-metal nanoparticles that are encapsulated in hollow silica nanospheres: dual roles of poly (acrylic acid), Chem. Eur. J. 2012, 18, 7878.
14. X. Du, J. He*, Amino-functionalized silica nanoparticles with center-radially hierarchical mesopores as ideal catalyst carriers. Nanoscale2012, 4, 852.
15. X. Du, J. He*, Facile fabrication of hollow mesoporous silica nanospheres for superhydrophilic and visible/ Near-IR antireflection coatings. Chem. Eur. J. 2011, 17, 8165.
16. X. Du, J. He, A self-templated etching route to surface-rough silica nanoparticles for superhydrophobic coatings. ACS Appl. Mater. Interface 2011, 3, 1269.