[1] F J MORIN. Oxides which show a metal-to-insulator transition at the Neel temperature. Physical Review Letters, 3, 34-36(1959).
[2] Qianqian SHI, Jiang WANG, Guanghua CHENG. Preparation and application of vanadium dioxide thin films. Acta Photonica Sinica, 51, 1016002(2022).
[3] Kai LIU, S LEE, Shan YANG et al. Recent progresses on physics and applications of vanadium dioxide. Materials Today, 21, 875-896(2018).
[4] Fang XU, Pingshi JIN, Hongjie LUO et al. VO2 thermochromic intelligent window: Current situation, challenges and prospects. Journal of Inorganic Materials, 36, 1013-1021(2021).
[5] Huaxin LI, Junyong CHEN, Zhou XIAO et al. Research progress of biomimetic self-assembly for morphology and properties control of nanomaterials. Journal of Inorganic Materials, 36, 695-710(2021).
[6] Xuefei WU. Self-assembly behavior of nanoparticles at water-oil interface(2021).
[7] Yu CHAI, H JAFFAR, B KUSHAAN et al. Direct observation of nanoparticle-surfactant assembly and jamming at the water-oil interface. Science Advances, 6, eabb8675(2020).
[8] T KARISHMA, S PULAK, M SOLAGNA et al. Large area self‐assembled ultrathin polyimine nanofilms formed at the liquid–liquid interface used for molecular separation. Advanced Materials, 32, 1905621(2020).
[9] Han CHEN, Haoran LIU, Xiyun LU et al. Entrapping an impacting particle at a liquid-gas interface. Journal of Fluid Mechanics, 841, 1073-1084(2018).
[10] Feng DANG, K KAZUMI, I HIROAKI et al. Characteristics of multilayered nanostructures of CeO2 nanocrystals self-assembled on an enlarged liquid-gas interface. Crystal Growth & Design, 11, 4129-4134(2011).
[11] R ERAN, R R DAVID, L G PHILLIP et al. Drying-mediated self-assembly of nanoparticles. Nature, 426, 271-274(2003).
[12] Wentao SONG, M NATALIA, M H WOLFGANG et al. Born-Haber cycle for monolayer self-assembly at the liquid-solid interface: assessing the enthalpic driving force. Journal of the American Chemical Society, 135, 14854-14862(2013).
[13] Wei LIU, Qian LI, Jiabin WU et al. Self-assembly of Au nanocrystals into large-area 3-D ordered flexible superlattice nanostructures arrays for ultrasensitive trace multi-hazard detection. Journal of Hazardous Materials, 443, 130124(2023).
[14] Qixing ZHANG, Weiming ZHOU, L IBRAHIM et al. Self-assembly of SiO2 films on aluminum flakes for corrosion protection. Chemical Engineering Communications, 209, 196-205(2022).
[15] P VIVEK, K KLAUS, B KANNAN. Template-free self-assembly of hierarchical ZnO structures from nanoscale building blocks. Chemical Physics Letters, 498, 317-322(2010).
[16] Hua HU, G L RONALD. Marangoni effect reverses coffee-ring depositions. The Journal of Physical Chemistry B, 110, 7090-7094(2006).
[17] D MERCY, D SUSMITA, A W JUSTIN et al. Effect of superhydrophobic surface morphology on evaporative deposition patterns. Applied Physics Letters, 104, 201604(2014).
[18] N AL-MKARAM, R VINOD, K PRAJAKTA et al. pH-modulated self-assembly of colloidal nanoparticles in a dual-droplet inkjet printing process. Journal of Colloid and Interface Science, 529, 234-242(2018).
[19] Jiacheng CAI, Benwen CHEN, Jingbo WU et al. Reconfigurable terahertz rainbow deflector. Applied Physics Letters, 118, 141105(2021).
[20] Wei YAN, Jiyong WANG, Yurui QU et al. Optical control based on metasurface of phase change materials. Acta Physica Sinica, 69, 63-82(2020).
[21] Haonan GE, Runzhang XIE, Jiaxiang GUO et al. Artificial micro-nano structure enhanced long and very long wave infrared detector. Acta Physica Sinica, 71, 13-30(2022).
[22] Ge LI, Donggang XIE, Ziye ZHANG et al. Flexible VO2 films for in-sensor computing with ultraviolet light. Advanced Functional Materials, 32, 2203074(2022).
[23] P MARYAM, H SOUAD, S KHELLIL. Mechanisms of pattern formation from dried sessile drops. Advances in Colloid and Interface Science, 254, 22-47(2018).
[24] Nan WANG, Qun XU. Study on self-assembly behavior of molybdenum disulfide nanosheets and polyethylpyrrolidone, 108-109(2014).
[25] Bingyu LI. Coarse-granulation simulation of amphiphilic polymer self-assembly system(2020).
[26] P PAWEL. Two-dimensional interfacial colloidal crystals. Physical Review Letters, 45, 569-572(1980).
[27] Tan Liu, Shaowei SHI, T P RUSSELL. Liquid/liquid interface self-assembly of nanoparticles: design and construction of structured liquids. Science and Technology Review, 38, 115-126(2020).
[28] Bowen DONG. Preparation and optical properties of doped vanadium dioxide phase change thin films(2022).
[29] J B KANA, J M NDIAKA, G VIGNAUD et al. Thermally tunable optical constants of vanadium dioxide thin films measured by spectroscopic ellipsometry. Optics Communications, 284, 807-812(2011).
[30] Shuyi LI, A N GUNNAR, G G CLAES. Nanothermochromics: Calculations for VO2 nanoparticles in dielectric hosts show much improved luminous transmittance and solar energy transmittance modulation. Journal of Applied Physics, 108, 063525(2010).