Publications
- Lu, M.; Gu, Z.; Feng, K.; Gao, Y.; Jin, Z.* Confined Crystallization in the Self-Assembled Nanostructures of Cellulose Nanocrystals and Polyethylene Glycol. ACS Sustainable Chem. Eng. 2022, 10 (9), 3007–3015.
- Feng, K.; Dong, C.; Gao, Y.; Jin, Z.* A Green and Iridescent Composite of Cellulose Nanocrystals with Wide Solvent Resistance and Strong Mechanical Properties. ACS Sustainable Chem. Eng. 2021, 9 (19), 6764–6775.
- Gu, Z.; Lu, M.; Feng, K.; Jin, Z.* The different composites of cellulose nanocrystals with d- or l-histidine. Nanoscale 2021, 13 , 8174-8180.
- Dong, C.; Fan, H.; Tang, F.; Gao, X.; Feng, K.; Wang, J.; Jin, Z.* Mussel Byssus Cuticle-Inspired Ultrastiff and Stretchable Triple-crosslinked Hydrogels. J. Mater. Chem. B. 2021, 9 , 373-380.
- Zhang, Q.; Fan, H.; Zhang, L.; Jin, Z.* Nanodiscs Generated from the Solvent Exchange of a Block Copolymer. Macromolecules 2020, 53 (16), 7025–7033.
- Tang, F.; Gao, X.; Jin, Z.* Pre-leaching strategy for tuning porosity and composition to generate Co2P/Co@P/N-doped carbon towards highly efficient bifunctional oxygen electrocatalysis. Electrochimica Acta 2020, 337 , 135807.
- Feng, K.; Gao, X.; Gu, Z.; Jin, Z.* Improving homogeneity of iridescent cellulose nanocrystal films by surfactant-assisted spreading self-assembly. ACS Sustainable Chem. Eng. 2019, 7 (23), 19062-19071.
- Gao, X.; Tang, F.; Jin, Z.* Pt–Cu bimetallic nanoparticles loaded in the lumen of halloysite nanotubes. Langmuir 2019, 35 (45), 14651-14658.
- Tang, F.; Liu, L.; Wang, H.; Gao, X.; Jin, Z.* The combination of metal-organic frameworks and polydopamine nanotubes aiming for efficient one-dimensional oxygen reduction electrocatalys. J. Colloid Interface Sci. 2019, 552, 351-358.
- X. W. Han, F. Tang, Z. X. Jin*, Free-standing polydopamine films generated in the presence of different metallic ions: the comparison of reaction process and film properties, RSC Advances, 2018, 8, 18347.
- Y. L. Gao, Z. X. Jin*, Iridescent Chiral Nematic Cellulose Nanocrystal/Polyvinylpyrrolidone Nanocomposite Films for Distinguishing Similar Organic Solvents, ACS Sustanable Chem. Eng. 2018, DOI: 10.1021/ acssuschemeng. 7b04899
- S. Y. Li, F. Tang, H. X. Wang, J. R. Feng and Z. X. Jin*, Au–Ag and Pt–Ag bimetallic nanoparticles@halloysite nanotubes: morphological modulation, improvement of thermal stability and catalytic performance, RSC Advances, 2018, 8, 10237.
- H. L. Fan, J. H. Wang, and Z. X. Jin*, Tough, Swelling-Resistant, Self-Healing, and Adhesive Dual-Cross-Linked Hydrogels Based on Polymer−Tannic Acid Multiple Hydrogen Bonds, Macromolecules 2018, 51(5), 1696-1705.
- F. Tang, H. T. Lei, S. J. Wang, H. X. Wang and Z. X. Jin*, A novel Fe–N–C catalyst for efficient oxygen reduction reaction based on polydopamine nanotubes, Nanoscale, 2017,9, 17364-17370.
- H. L. Fan, J. H. Wang, Q. Y. Zhang and Z. X. Jin*, Tannic acid-based multifunctional hydrogels with facile adjustable adhesion and cohesion contributed by polyphenol supramolecular chemistry, ACS Omega 2017, 2, 6668-6676.
- Z. H. Wang, F. Tang, H. L. Fan, L. Wang and Z.X. Jin*, Polydopamine Generates Hydroxyl Free Radicals under Ultraviolet Light Illumination. Langmuir 2017, 33, 5938.
- Z. H. Wang, J. Li, F. Tang, J. Lin and Z. X. Jin*, Polydopamine nanotubes-templated synthesis of TiO2 and its photocatalytic performance under visible light. RSC Advances, 2017, 7, 23535.
- H. L. Fan, L. Wang, X. D. Feng, Y. Z. Bu, D. C. Wu and Z. X. Jin*, Supramolecular Hydrogel Formation Based on Tannic Acid. Macromolecules 2017, 50, 666.
- J. R. Feng, H. L. Fan, D. A. Zha, L. Wang and Z. X. Jin*, Characterizations of the Formation of Polydopamine-coated Halloysite Nanotubes in Various pH Environments, Langmuir 2016, 32, 10377.
- Z. X. Jin* and H. L. Fan, The Modulation of Melanin-like Materials: Methods, Characterization and Applications. Polymer International 2016, 65, 1258.
- L. L. Li, H. L. Fan, L. Wang and Z. X. Jin*, Does Halloysite Behave Like an Inert Carrier for Doxorubicin? RSC Advances 2016, 6, 54193.
- J. H. Xue, W. C. Zheng, L. Wang and Z. X. Jin*, Scalable Fabrication of Polydopamine Nanotubes Based on Curcumin Crystals, ACS Biomaterials Science & Engineering 2016, 2, 489.
- J. H. Xue, Y. Z. Xu and Z. X. Jin*, Interfacial Interaction in Anodic Aluminum Oxide Templates Modifies Morphology, Surface area and Crystallization of Polyamide-6 Nanofibers, Langmuir 2016, 32, 2259.
- W. C. Zheng, H. L. Fan, L. Wang and Z. X. Jin*, Oxidative self-polymerization of dopamine in acidic environment, Langmuir 2015, 31, 11671.
- H. L. Fan and Z. X. Jin*, Hierarchical porous polycaprolactone microspheres generated in a simple pathway combining nanoprecipitation and hydrolysis, Chem. Commun. 2015, 51, 15114.
- H. L. Fan, X. Yu, Y. Liu, Z. J. Shi, H. H. Liu, Z. X. Nie, D. C. Wu and Z. X. Jin*,Folic acid/polydopamine nanofibers show enhanced ordered-stacking via π-π interaction, Soft Matter 2015, 11, 4621.
- P. L. Hou, H. L. Fan and Z. X. Jin*, Spiral and mesoporous block polymer nanofibers generated in confined nanochannels, Macromolecules 2015, 48, 272.
- Z. X. Jin* and H. L. Fan, Self-assembly of nanostructured block copolymer nanoparticles, Soft Matter 2014, 10, 9212.
- X. Yu, H. L. Fan, L. Wang and Z. X. Jin*, Formation of polydopamine nanofibers with the aid of folic acid, Angew. Chem. Int. Ed. 2014, 53, 12600.
- X. Yu, H. L. Fan, Y. Liu, Z. J. Shi and Z. X. Jin*, Characterization of carbonized polydopamine nanoparticles suggests ordered supramolecular structure of polydopamine, Langmuir 2014, 30, 5497.
- H. L. Fan and Z. X. Jin *, Selective swelling of block copolymer nanoparticles: size, nanostructure and composition, Macromolecules 2014, 47, 2674.
- H. L. Fan and Z. X. Jin *, Freezing polystyrene-b-poly(2-vinylpyridine) micelle nanoparticles with different nanostructures and sizes, Soft Matter, 2014, 10, 2848.
- L. Wang, S. L. Mei, Z. X. Jin*, The influences of cooperative swelling and coordination on patterned decoration of gold on block copolymer nanospheres, Macromol. Chem. Phys. 2013, 214, 2579.
- S. L. Mei, L. Wang, X. D. Feng, Z. X. Jin*, Swelling of block copolymer nanoparticles---a process combining deformation and phase separation, Langmuir 2013, 29, 4640.
- S. L. Mei, Z. X. Jin*, Mesoporous block-copolymer nanospheres prepared by selective swelling, Small 2013, 9, 322.
- S. L. Mei, X. D. Feng, Z. X. Jin*, Polymer nanofibers by controllable infiltration of vapour swollen polymers into cylindrical nanopores, Soft Matter, 2013, 9, 945
- X. D. Feng, S. L. Mei, Z. X. Jin*, Wettability transition induced transformation and entrapment of polymer nanostructures in cylindrical nanopores, Langmuir 2011, 27, 14240.
- S. L. Mei, X. D. Feng, Z. X. Jin*, Fabrication of Polymer Nanospheres Based on Rayleigh Instability in Capillary Channels, Macromolecules 2011, 44, 1615.
- L. Zhang, D. A. Zha, T. T. Du. S. L. Mei, Z. J. Shi, Z. X. Jin *, Formation of superhydrophobic microspheres of poly(vinylidene fluoride-hexafluoropropylene) /graphene composite via gelation, Langmuir 2011, 27, 8943.
- D. A. Zha, S. L. Mei, Z. Y. Wang, H. J. Li, Z. J. Shi and Z. X. Jin*, Superhydrophobic polyvinylidene fluoride/graphene porous materials, Carbon 2011, 49, 5166.
- K. K. Zhao, Z. Y. Wang, Z. J. Shi, Z. N. Gu, Z. X. Jin*, Filling double-walled carbon nanotubes with WO3 and W nanowires via confined chemical reactions, J. Nanosci. Nanotechnol. 2011, 11, 2278.
- H. L. Fan, L. L. Wang, K. K. Zhao, N. Li, Z. J. Shi, Z. G. Ge, and Z. X. Jin*, Fabrication, Mechanical Properties, and Biocompatibility of Graphene-Reinforced Chitosan Composites, Biomacromolecules 2010, 11, 2345.
- Q. C. Zhao, J. Yin, X. D. Feng, Z. J. Shi, Z. G. Ge and Z. X. Jin*, A biocompatible chitosan composite containing phosphotungstic acid modified single-walled carbon nanotubes, J. Nanosci. Nanotechno. 2010, 10, 7126.
- X. D. Feng, Z. X. Jin*, Spontaneous Formation of Nanoscale Polymer Spheres, Capsules, or Rods by Evaporation of Polymer Solutions in Cylindrical Alumina Nanopores, Macromolecules 2009, 42, 569.
- Q. C. Zhao, X. D. Feng, S. L. Mei and Z. X. Jin*, Carbon nanotube assisted high loading and controlled release of polyoxometalates in biodegradable multilayer thin film, Nanotechnology 2009, 20, 105101.
- Z. G. Ge, Z. X. Jin and T. Cao, Manufacture of degradable polymeric scaffolds for bone regeneration, Biomed. Mater. 2008, 3, 22001.
- Z. X. Jin*, Z. Y Wang, Z. J. Shi, H. J. Lee, Y. W. Park and K. Akagi, The hierarchical microstructure of helical polyacetylene nanofibers, Curr. App. Phys. 2007, 7, 367.
- H. J. Lee, Z. X. Jin, A. N. Aleshin, J.Y. Lee, M. J. Goh, K. Akagi, Y. S. Kim, D.W. Kim, Y. W. Park, Dispersion and current-voltage characteristics of helical polyacetylene single fiber, J. Am. Chem. Soc. 2004, 126, 16722.
- Z. X. Jin, S. H. Goh, G. Q. Xu, Y. W. Park, Dynamic mechanical properties of multi-walled carbon nanotube/poly(acrylic acid)-surfactant complex , Synth. Met. 2003, 135 (Sp. Iss.), 735-736.
- Z. X. Jin, K.P Pramoda, G. Q. Xu, S.H Goh, Poly(vinylidene fluoride)-assisted melt-blending of multi-walled carbon nanotube/poly(methyl methacrylate) composites, Mater. Res. Bull., 2002, 37, 271.
- Z. X. Jin, L. Huang, S. H. Goh, G. Q. Xu, W. Ji, Size-dependent optical limiting behavior of multi-walled carbon nanotubes, Chem. Phys. Lett., 2002, 352, 328.
- Z. X. Jin, K. P Pramoda, G. Q. Xu, S. H Goh, Dynamic mechanical behavior of melt-processed multi-walled carbon nanotube/poly (methyl methacrylate) composites, Chem. Phys. Lett., 2001, 337, 43.
- Z. X. Jin, L. Huang, S. H. Goh, G. Q. Xu, W. Ji, Characterization and nonlinear properties of a poly(acrylic acid)-surfactant-multi-walled carbon nanotube complex, Chem. Phys. Lett., 2000, 332, 461.
- Z. X. Jin, X. Sun, G. Q. Xu, S. H. Goh, Nonlinear optical properties of some polymer/multi-walled carbon nanotube composites, Chem. Phys. Lett., 2000, 318, 505.
- Z. X. Jin, G. Q. Xu, S. H. Goh, A preferentially ordered accumulation of bromine on multi-wall carbon nanotube, Carbon 2000, 38, 1135.