论文标题
表面化学对纳米颗粒掺入方解石单晶的影响
Effect of surface chemistry on incorporation of nanoparticles within calcite single crystals
论文作者
论文摘要
将添加剂纳入方解石晶体可以使一个非母体嵌入无机基质中并获得新的功能材料。到目前为止,很少考虑参数来评估添加剂的效率。从自然中汲取灵感,我们在携带不同官能团(Plus-X)的荧光二氧化硅纳米颗粒的存在下种植了方解石晶体,以研究表面化学对添加剂纳入的影响。加上X使我们能够保持所有粒子特性,包括大小,同时改变暴露的官能团,从而改变Zeta-potity。对晶体形态的影响,晶体内的Plus-X的负载和分布已通过不同的显微镜技术评估。我们的数据表明,羟基官能化颗粒在方解石单晶内部更有效地捕获,而不会变形晶体结构和抑制生长。
Inclusion of additives into calcite crystals allows one to embed non-native proprieties into the inorganic matrix and obtain new functional materials. Up to now, few parameters have been taken into account to evaluate the efficiency of inclusion of an additive. Taking inspiration from Nature, we grew calcite crystals in the presence of fluorescent silica nanoparticles carrying different functional groups (PluS-X) to investigate the effect of surface chemistry on the inclusion of the additives. PluS-X allowed us to keep constant all the particle characteristics, including size, while changing exposed functional groups and thus Zeta-potential. The effect on crystal morphology, the loading and distribution of PluS-X within the crystals have been evaluated with different microscopy techniques. Our data indicate that hydroxyl functionalized particles are entrapped more efficiently inside calcite single crystals without distortion of the crystal structure and inhibition of the growth.