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Integrating Biomaterials into Microsystems: Formation and Characterization of Nanostructured Titania

机译:将生物材料整合到微系统中:纳米结构二氧化钛的形成与表征

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We demonstrate the facile fabrication of crack-free nanostructured crystalline titania into microsystems. Titania layers were formed by reacting Ti thin films, deposited by evaporation and sputtering, with aqueous H202. Cracks were observed in titania layers formed on blanket Ti films but absent on arrays of patterned Ti pads below a threshold dimension. Nanostructured titania formed from sputtered and evaporated Ti films consists of aligned fibrous and sponge-like nanoporous morphologies, respectively. Rat fibroblasts L-cells cultured on these titania fibers remain viable up to 3 days. These observations demonstrate the feasibility of this technique to integrate nanostructured titania into NanolMicro-Electromechanical systems (NIMEMS) devices.
机译:我们证明了无裂纹的纳米结构结晶二氧化钛微系统的制造。通过使通过蒸发和溅射沉积的Ti薄膜与含水H 2 O 2反应形成二氧化钛层。在覆盖的Ti膜上形成的二氧化钛层中观察到裂纹,但是在低于阈值尺寸的图案化的Ti垫的阵列上不存在裂纹。由溅射和蒸发的Ti膜形成的纳米结构二氧化钛分别由排列的纤维状和海绵状纳米孔形态组成。在这些二氧化钛纤维上培养的大鼠成纤维细胞L细胞可存活长达3天。这些观察结果证明了该技术将纳米结构二氧化钛整合到NanolMicro-Electromechanical Systems(NIMEMS)器件中的可行性。

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