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Flow-directed assembly of nanostructured thin films from suspensions of anisotropic titania particles

机译:纳米结构化薄膜的流动组装来自各向异性钛颗粒的悬浮液

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Nanostructured thin films are fabricated by directing the assembly of anisotropic titanium dioxide particles from a colloidal suspension by fixed blade flow coating. The titania particles (equatorial radius a = 24 ± 4 nm, polar radius b - 130 ± 31 nm, aspect ratio b/a = 5.4 ± 0.9) undergo an isotropic-nematic (I-N) transition at a volume fraction φ* ~ 0.40. For φ > φ* the deposited film has three structures depending on the substrate velocity, v. At a blade angle α = 25° and a gap d = 200 μm, nanoparticles orient either isotropically in the direction of the coating flow (v≥ 350 μm s~(-1)), exhibit partially oriented "wavy" structures (100 < v < 300 nm s~(-1)), or are isotropically oriented (v < 100 /urn s~(-1)). Below the I-N transition (φ < φ*), nanoparticles assemble into domains of uniform orientation with dimensions that increase with increasing v. Increasing the blade angle shifts these structural transitions to lower substrate velocities, consistent with an increasing extensional component of the flow. Established scaling relationships describe the film height dependence on φ and v. Overall, these results enable nanostructured films to be deposited with desired thickness and structure.
机译:纳米结构的薄膜是通过指导固定叶片流涂层从胶体悬浮液中指导各向异性二氧化钛颗粒的组装来制造的。钛颗粒(赤道半径A = 24±4 nm,极性半径B-130±31 nm,长宽比B/A = 5.4±0.9)在体积分数φ* 〜0.40处进行各向同性纽维型(I-N)过渡。对于φ>φ*,沉积的膜具有三个结构,具体取决于底物速度,v。以叶片角α= 25°和gap d =200μm,纳米颗粒在涂层流的方向上(V≥350 μmS〜(-1)),表现出部分定向的“波浪状”结构(100

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