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Exfoliation and Restacking of Lepidocrocite-type Layered Titanates Studied by Small-Angle X-ray Scattering

机译:小角X射线散射研究鳞齿铁矿型层状钛酸盐的剥落与再堆积

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The exfoliation of the lepidocrocite-type layered titanate K_(0.8)[Ti_(1.73)Li_(0.27)O4] (KLTO) in aqueous solution and the restacking of exfoliated nanosheets was investigated by small-angle X-ray scattering (SAXS). Suspensions with completely exfoliated titania nanosheets of 1 nm thickness were obtained after protonation of KLTO to HTi_(1.6)O_(3.7) (HTO), followed by addition of tetrabutyl ammonium hydroxide (TBAOH) to a molar ratio TBAOH/ HTO = 1. Restacking of nanosheets into small stacks of 2-4 units occurred at TBAOH/HTO ratios of 1.6 or higher. The separation distance between the sheets was found to be reversible and very sensitive to the pH and ionic strength of the solution and increased up to 12 nm. The experimental data indicate that the separation distance between restacked nanosheets scaled with the Debye length of the solution. This suggests that the stacks are organized via electrostatic interactions due to the presence of a diffuse double layer of positively charged ions between the negatively charged nanosheets.
机译:通过小角X射线散射(SAXS)研究了鳞铁矿型层状钛酸酯K_(0.8)[Ti_(1.73)Li_(0.27)O4](KLTO)在水溶液中的剥离和剥离纳米片的重堆积。在将KLTO质子化为HTi_(1.6)O_(3.7)(HTO),然后加入氢氧化四丁铵(TBAOH)使其摩尔比为TBAOH / HTO = 1后,获得了厚度为1 nm的完全剥落的二氧化钛纳米片的悬浮液。在TBAOH / HTO比为1.6或更高时,纳米片会成2-4个小堆叠。发现片之间的分离距离是可逆的,并且对溶液的pH和离子强度非常敏感,并且增加到12 nm。实验数据表明,重新堆叠的纳米片之间的分离距离与溶液的德拜长度成比例。这表明由于在带负电的纳米片之间存在带正电的离子的扩散双层,所以通过静电相互作用来组织堆叠。

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