• Shape/size controlling syntheses, properties and applications of two-dimensional noble metal nanocrystals. An, B. , Li, M. , Wang, J. , & Li, C. . (2016).Frontiers of Chemical Science and Engineering, 10(3), 360-382.
    Two dimensional (2D) nanocrystals of noble metals (e.g., Au, Ag, Pt) often have unique structural and environmental properties which make them useful for applications in electronics, optics, sensors and biomedicines. In recent years, there has been a focus on discovering the fundamental mechanisms which govern the s......
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  • Hydrophobicity-modulating self-assembled morphologies of α-zein in aqueous ethanol. An, B. , Wu, X. , Li, M. , Chen, Y. , Li, F. , & Yan, X. , et al. (2016).International Journal of Food Science & Technology, 51(12), 2621-2629.
    Protein fibrillation serves a broad range of biological functions from surface colonising to mechanically reinforcing structures; it is also associated with the development of neurodegenerative disorders. Although fibrillation is considered to be an inherent ability of polypeptides to form backbones, relevant studie......
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  • Enhancing reducing ability of α-zein by fibrillation for synthesis of Au nanocrystals with continuous flow catalysis.Chen, Y. , Wu, X. , Lv, L. , Li, F. , Liu, Z. ,  Kong, Q. , Li C. (2016) Journal of Colloid and Interface Science, S0021979716307561.
    Green low-cost synthesis and efficient recyclability are two major hindrances for Au nanocrystals as catalysts applying in diverse industrial reaction processes. By the use of low-cost α-zein (i.e. a major storage protein of corn) as the reductant, capping agent and stabilizer, Au nanocrystals with tunable catalytic......
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  • Single-crystal Au microflakes modulated by amino acids and their sensing and catalytic properties.Li, M., Wu, X., Zhou, J., Kong, Q., & Li, C. (2016). Journal of colloid and interface science, 467, 115-120.
    Single-crystal Au microflakes with the planar area over 103 μm2 (i.e. being accessible to the human eye resolution) were synthesized in an environment-friendly route by directing two-dimensional growth of Au nanocrystals into macroscopic scales with amino acids as both reducing agents and capping agents. Side groups......
  • Modulating Zn(OH)2 rods by marine alginate for templates of hybrid tubes with catalytic and antimicrobial properties. Lv, L., Wu, X., Li, M., Zong, L., Chen, Y., You, J., & Li, C. (2016). ACS Sustainable Chemistry & Engineering, 5(1), 862-868.
    With the help of marine alginate, Zn(OH)2 nanorods were synthesized under mild conditions (e.g., room temperature and atmospheric pressure) through a one-step, green, and scalable method, in which both the morphologies (e.g., nanorods and nanoflakes) and nanoscale sizes of Zn(OH)2 could be precisely controlled by al......
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  • Amyloid-graphene oxide as immobilization platform of Au nanocatalysts and enzymes for improved glucose-sensing activity. Wu, X., Li, M., Li, Z., Lv, L., Zhang, Y., & Li, C. (2017). Journal of colloid and interface science, 490, 336-342.
    Two-dimensional GO nanosheets and one-dimensional lysozyme nanofibrils were hybridized through electrostatic interaction to get a novel amyloid-GO composite, which promised a biocompatible immobilization platform for Au nanocatalysts as well as enzymes. The immobilization platform could load a large and tunable amou......
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  • Alginate-assisted synthesis of hollow micro fi bers assembled by SnO2 nanoparticles. Zhao, Y., Li, M., Qiu, J., Kong, Q., Zhang, Y., & Li, C. (2016). Materials & Design, 101, 317-322.
    A novel alginate-involving method has been developed to prepare hollow SnO2 micro fibers, in which a wet spinning process was combined with pyrolysis oxidation to facilitate scalable production. The resulting hollow SnO2 micro fibers consisted of numerous SnO2 nanoparticles with pure tetragonal phase within the micr......
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  • Modulating structural hierarchies of manganese oxide in morphology and porosity by marine biopolymer for improved supercapacitors. Zong, L., Wu, X., You, J., Li, M., & Li, C. (2016). Electrochimica Acta, 213, 709-716.
    Nanostructured MnO2 is one of the most promising electrode materials for supercapacitors (SCs) on account of its exceptional properties including high theoretical capacitance, natural abundance, environmental safety and low cost. However its merits cannot be fully embodied by its current synthesis approaches, since ......
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