论文标题
带正电荷的添加剂促进无机单晶掺入
Positively Charged Additives Facilitate Incorporation in Inorganic Single Crystals
论文作者
论文摘要
在无机单晶中掺入来宾添加剂提供了一种独特的策略,可以创建具有量身定制特性的纳米复合材料。虽然阴离子添加剂已被广泛用于控制晶体的性质,但它们的有效掺入仍然是一个关键挑战。在这里,我们表明阳离子添加剂是合成纳米复合材料的极好的替代品,在该材料中,它们被证明可以提供高达70 wt的带电氨基酸,聚合物颗粒,金纳米颗粒和无机单晶的银纳米升温器的特殊水平。这种高添加载荷赋予纳米复合材料具有新的功能性能,包括等离子耦合,明亮的荧光和表面增强的拉曼散射(SERS)。阳离子添加剂还显示出胜过其酸性对应物,由于它们在结晶介质中出色的胶体稳定性以及对晶体表面的强亲和力,因此它们在更广泛的晶体系统中具有高度活跃。这项工作表明,尽管经常被忽视,但阳离子添加剂可以使有价值的结晶添加剂创建具有量身定制的构图结构 - 特制关系的复合材料。这种多功能且直接的方法推进了单晶复合材料的领域,并为具有可调功能性能的新混合材料设计和制造提供了令人兴奋的前景。
Incorporation of guest additives within inorganic single crystals offers a unique strategy for creating nanocomposites with tailored properties. While anionic additives have been widely used to control the properties of crystals, their effective incorporation remains a key challenge. Here, we show that cationic additives are an excellent alterative for the synthesis of nanocomposites, where they are shown to deliver exceptional levels of incorporation of up to 70 wt% of positively charged amino acids, polymer particles, gold nanoparticles, and silver nanoclusters within inorganic single crystals. This high additive loading endows the nanocomposites with new functional properties including plasmon coupling, bright fluorescence, and surface-enhanced Raman scattering (SERS). Cationic additives are also shown to outperform their acidic counterparts, where they are highly active in a wider range of crystal systems, owing to their outstanding colloidal stability in the crystallization media and strong affinity for the crystal surfaces. This work demonstrates that although often overlooked, cationic additives can make valuable crystallization additives to create composite materials with tailored composition-structure-property relationships. This versatile and straightforward approach advances the field of single-crystal composites and provides exciting prospects for the design and fabrication of new hybrid materials with tunable functional properties.