• Journal of Synthetic Crystals
  • Vol. 54, Issue 1, 49 (2025)
WANG Zhiqiang1,2, ZHANG Qi3, LIANG Ying4, WANG Wenxin1,*, and CHEN Qi1
Author Affiliations
  • 1School of Marine Science and Engineering, Hainan University, Haikou 570228, China
  • 2School of Materials Science and Engineering, Hainan University, Haikou 570228, China
  • 3School of Chemistry and Chemical Engineering, Hainan University, Haikou 570228, China
  • 4State Key Laboratory of Marine Resource Utilization in South China Sea, Hainan University, Haikou 570228, China
  • show less
    DOI: 10.16553/j.cnki.issn1000-985x.2024.0189 Cite this Article
    WANG Zhiqiang, ZHANG Qi, LIANG Ying, WANG Wenxin, CHEN Qi. Fast Preparation of Fe3O4@C Photonic Crystal Flexible Composite Films by Magnetic Field Assisted Method[J]. Journal of Synthetic Crystals, 2025, 54(1): 49 Copy Citation Text show less
    References

    [1] SHANG S L, ZHANG Q H, WANG H Z, et al. Fabrication of magnetic field induced structural colored films with tunable colors and its application on security materials[J]. Journal of Colloid and Interface Science, 2017, 485: 18-24.

    [2] SHANG S L, ZHANG K Q, HU H F, et al. Magnetic field responsive microspheres with tunable structural colors by controlled assembly of nanoparticles[J]. RSC Advances, 2022, 12(9): 5656-5664.

    [3] GU H C, YE B F, DING H B, et al. Non-iridescent structural color pigments from liquid marbles[J]. Journal of Materials Chemistry C, 2015, 3(26): 6607-6612.

    [4] GONG X B, HOU C Y, ZHANG Q H, et al. Thermochromic hydrogel-functionalized textiles for synchronous visual monitoring of on-demand in vitro drug release[J]. ACS Applied Materials & Interfaces, 2020, 12(46): 51225-51235.

    [5] JIANG Y G, WANG R, FENG L, et al. Tunable alumina 2D photonic-crystal structures via biomineralization of peacock tail feathers[J]. Optical Materials, 2018, 78: 490-494.

    [6] WANG H, ZHANG H, CHEN Z Y, et al. Polymer-based responsive structural color materials[J]. Progress in Materials Science, 2023, 135: 101091.

    [7] XU Z Y, LI L, YIN X, et al. Synchronously thermochromic and shape-shifting liquid crystal elastomers enabled by hierarchical structure control for multidimensional encryption[J]. Advanced Materials Technologies, 2024, 9(9): 2302009.

    [8] WANG T T, ZHAO Y H, YU B, et al. All-dielectric gratings with high-quality structural colors[J]. Nanomaterials, 2023, 13(17): 2414.

    [10] TANG X S, CHEN W W, LIU Z Z, et al. Ultrathin, core-shell structured SiO2 coated Mn2+-doped perovskite quantum dots for bright white light-emitting diodes[J]. Small, 2019, 15(19): 1900484.

    [12] LU Y M, XIA X, GUO Y X, et al. Carbon dots/SiO2 fluorescent photonic crystals for anti-counterfeiting[J]. ACS Applied Nano Materials, 2024, 7(6): 6547-6555.

    [14] BIBETTE J. Monodisperse ferrofluid emulsions[J]. Journal of Magnetism and Magnetic Materials, 1993, 122(1/2/3): 37-41.

    [15] HAN P, CHEN C, HUO X, et al. Synthesis and optical properties of magnetically responsive Fe3O4/PVP/SiO2 colloidal photonic crystals[J]. Applied Physics, 2016, 6(4): 54-62.

    [16] WEI L Y, SHANG S L, ZHENG Y, et al. Iridescent structural colors printing on cellulose fabrics with robust structural coloration[J]. Dyes and Pigments, 2024, 221: 111824.

    [17] SHI D, YANG H, JI S F, et al. Preparation and characterization of core-shell structure Fe3O4@C magnetic nanoparticles[J]. Procedia Engineering, 2015, 102: 1555-1562.

    [18] XIE Y, MENG Y, WANG W X, et al. Bistable and reconfigurable photonic crystals-electroactive shape memory polymer nanocomposite for ink-free rewritable paper[J]. Advanced Functional Materials, 2018, 28(34): 1802430.

    [19] YUE H, ZHAO D J, TEGAFAW T, et al. Core-shell Fe3O4@C nanoparticles as highly effective T2 magnetic resonance imaging contrast agents: in vitro and in vivo studies[J]. Nanomaterials, 2024, 14(2): 177.

    [20] CHEN X F, ZHOU Y, HAN H W, et al. Optical and magnetic properties of small-size core-shell Fe3O4@C nanoparticles[J]. Materials Today Chemistry, 2021, 22: 100556.

    [21] HUANG L C, LIU Y, CHEN H X, et al. Responsive and self-healing supramolecular photonic crystal hydrogels based on host-guest interactions[J]. Journal of Materials Chemistry C, 2022, 10(42): 15989-15995.

    [22] HUANG J, LI Y, JIA X H, et al. Preparation and tribological properties of core-shell Fe3O4@C microspheres[J]. Tribology International, 2019, 129: 427-435.

    [23] DING T, LIU Z, SONG K. Preparation of 3D photonic crystals[J]. Progress in Chemistry, 2008, 20(9): 1283.

    [24] CHEN Y, ZHANG C B, ZHENG Q F, et al. Separation-cooperated assembly of liquid photonic crystals from polydisperse particles[J]. Chemical Communications, 2018, 54(99): 13937-13940.

    [25] ZHANG J F, SUN A H, QIAO X X, et al. Study on electric field induced structural color change of Fe3O4@C hybrid nanoparticles[J]. Materials Research Express, 2014, 1(4): 045037.

    [26] TANG C S, ZHU C, CHENG Q, et al. Desiccation cracking of soils: a review of investigation approaches, underlying mechanisms, and influencing factors[J]. Earth-Science Reviews, 2021, 216: 103586.

    [27] WANG H, SUN Y B, CHEN Q W, et al. Synthesis of carbon-encapsulated superparamagnetic colloidal nanoparticles with magnetic-responsive photonic crystal property[J]. Dalton Transactions, 2010, 39(40): 9565-9569.

    [29] GAO M, CHEUNG C F. Fe3O4/PMMA with well-arranged structures synthesized through magnetic field-assisted atom transfer radical polymerization[J]. Polymers, 2024, 16(3): 353.

    [30] SHAO J G, XIE X C, XI Y J, et al. Characterization of Fe3O4/SiO2 composite core-shell nanoparticles synthesized in isopropanol medium[J]. Glass Physics and Chemistry, 2013, 39(3): 329-335.

    WANG Zhiqiang, ZHANG Qi, LIANG Ying, WANG Wenxin, CHEN Qi. Fast Preparation of Fe3O4@C Photonic Crystal Flexible Composite Films by Magnetic Field Assisted Method[J]. Journal of Synthetic Crystals, 2025, 54(1): 49
    Download Citation