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Toward Submicrometer c-Oriented Nanoporous Films with Unidimensional Pore Network: AFI Film Morphology Control by Precursor Mixture Manipulation

机译:朝着具有一维孔网的亚微米c取向纳米多孔膜:通过前体混合物处理进行AFI膜形态控制

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摘要

c-Oriented, continuous AlPO4-5 and CoAPO-5 films with an average thickness of as low as 500 nm were synthesized by seeded growth. Growth behavior was controlled by appropriate manipulation of the precursor mixture without altering hydrothermal temperature. Employing crystalline seeds and precrystallization of the precursor mixture under proper conditions yielded a controllable and uniform growth of prism-shaped oriented crystals over the entire substrate surface. Systematically altering the water content affected growth direction, which was continuously tuned between in-plane and c-out-of-plane. The AFI films synthesized by the present work being the first thin, oriented, and well-intergrown ones represent promising materials for fabricating high-flux, unidimensional-pore membranes, for hosting and organizing molecules and clusters, and for growing arrays of monodisperse and ultrathin nanostructures. such as carbon nanotubes, inside the AFI channels targeting highly efficient optoelectronic devices.
机译:通过种子生长合成了c取向的连续AlPO4-5和CoAPO-5薄膜,平均厚度低至500 nm。通过适当控制前体混合物来控制生长行为,而不改变水热温度。在适当的条件下使用晶种和前体混合物的预结晶可在整个基板表面上产生可控且均匀的棱柱形取向晶体生长。系统地改变水分含量会影响生长方向,该方向在面内和面外连续调整。通过本工作合成的AFI薄膜是第一个薄的,定向的和良好结合的薄膜,代表了用于制造高通量,一维孔膜,用于容纳和组织分子和簇以及用于生长单分散和超薄阵列的有前途的材料。纳米结构。 AFI通道内的碳纳米管(例如碳纳米管)瞄准高效的光电器件。

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