Kim Yi-Yeoun, Schenk Anna S, Ihli Johannes, Kulak Alex N, Hetherington Nicola B J, Tang Chiu C, Schmahl Wolfgang W, Griesshaber Erika, Hyett Geoffrey, Meldrum Fiona C
School of Chemistry, University of Leeds, Woodhouse Lane, Leeds LS2 9JT, UK.
Diamond Light Source, Harwell Science and Innovation Campus, Didcot, Oxfordshire OX11 0DE, UK.
Nat Commun. 2014 Jul 11;5:4341. doi: 10.1038/ncomms5341.
The term mesocrystal has been widely used to describe crystals that form by oriented assembly, and that exhibit nanoparticle substructures. Using calcite crystals co-precipitated with polymers as a suitable test case, this article looks critically at the concept of mesocrystals. Here we demonstrate that the data commonly used to assign mesocrystal structure may be frequently misinterpreted, and that these calcite/polymer crystals do not have nanoparticle substructures. Although morphologies suggest the presence of nanoparticles, these are only present on the crystal surface. High surface areas are only recorded for crystals freshly removed from solution and are again attributed to a thin shell of nanoparticles on a solid calcite core. Line broadening in powder X-ray diffraction spectra is due to lattice strain only, precluding the existence of a nanoparticle sub-structure. Finally, study of the formation mechanism provides no evidence for crystalline precursor particles. A re-evaluation of existing literature on some mesocrystals may therefore be required.
“介晶”一词已被广泛用于描述通过定向组装形成且具有纳米粒子亚结构的晶体。以与聚合物共沉淀的方解石晶体作为合适的测试案例,本文对介晶的概念进行了批判性审视。我们在此证明,常用于确定介晶结构的数据可能经常被误解,而且这些方解石/聚合物晶体并不具有纳米粒子亚结构。尽管形态表明存在纳米粒子,但这些仅存在于晶体表面。仅从溶液中刚取出的晶体记录到高比表面积,这同样归因于固体方解石核心上的一层薄纳米粒子壳。粉末X射线衍射光谱中的线宽仅归因于晶格应变,排除了纳米粒子亚结构的存在。最后,对形成机制的研究未提供晶体前驱体颗粒存在的证据。因此,可能需要对现有关于某些介晶的文献进行重新评估。