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定制抗剪切、云母状纳米薄片。

Tailoring shear-stiff, mica-like nanoplatelets.

机构信息

Universitat Bayreuth, Universitatsstrasse 30, 95447 Bayreuth, Germany.

出版信息

ACS Nano. 2010 Feb 23;4(2):717-24. doi: 10.1021/nn9011829.

Abstract

This work introduces a novel facile method to produce shear-stiff, mica-like nanoplatelets by efficient exfoliation. The essence of this procedure is the nonreversible alteration of the interlamellar reactivity of a synthetic fluorohectorite by simple cation exchange. The possibility of switching from highly hydrated to collapsed interlayers permits a highly efficient exfoliation in the swollen state while providing shear-stiffness in the collapsed state. This method restricts cation exchange in the mica-like nanoplatelets to the outer surfaces, which represents a significant advantage for use in nanocomposites as compared to conventional organoclays which contain up to 40%/wt of organocations. It is expected that this new type of rigid, shear-stiff, clay-based nanoplatelets will be superior for reinforcement when used in composite materials like polymer layered silicate nanocomposites or artificial nacre.

摘要

这项工作介绍了一种通过有效剥离来生产剪切增稠、云母状纳米薄片的新颖简便方法。该方法的本质是通过简单的阳离子交换来改变合成氟羟硅云母的层间反应性。从高水合状态到层间坍塌状态的转变可能性允许在溶胀状态下进行高效剥离,同时在层间坍塌状态下提供剪切增稠性。与传统有机粘土相比,这种方法将阳离子交换限制在云母状纳米薄片的外表面,这在纳米复合材料的应用中是一个显著的优势,因为传统有机粘土中含有高达 40%/wt 的有机阳离子。预计这种新型刚性、剪切增稠的基于粘土的纳米薄片在用于聚合物层状硅酸盐纳米复合材料或人工珍珠母等复合材料时,作为增强材料将具有优势。

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