Department of Materials and Environmental Chemistry, Stockholm University, Stockholm, Sweden.
State Key Laboratory of Green Chemical Engineering and Industrial Catalysis, Sinopec Shanghai Research Institute of Petrochemical Technology, Shanghai, China.
Nat Chem. 2023 Apr;15(4):483-490. doi: 10.1038/s41557-022-01131-8. Epub 2023 Jan 30.
Rapid phase elucidation of polycrystalline materials is essential for developing new materials of chemical, pharmaceutical and industrial interest. Yet, the size and quantity of many crystalline phases are too small for routine X-ray diffraction analysis. This has become a workflow bottleneck in materials development, especially in high-throughput synthesis screening. Here we demonstrate the application of serial rotation electron diffraction (SerialRED) for high-throughput phase identification of complex polycrystalline zeolite products. The products were prepared from a combination of multiple framework T atoms ([Si,Ge,Al] or [Si,Ge,B]) and a simple organic structure-directing agent. We show that using SerialRED, five zeolite phases can be identified from a highly complex mixture. This includes phases with ultra-low contents undetectable using X-ray diffraction and phases with identical crystal morphology and similar unit cell parameters. By automatically and rapidly examining hundreds of crystals, SerialRED enables high-throughput phase analysis and allows the exploration of complex synthesis systems. It provides new opportunities for rapid development of polycrystalline materials.
多晶材料的快速相阐明对于开发具有化学、制药和工业价值的新材料至关重要。然而,许多晶相的大小和数量太小,无法进行常规的 X 射线衍射分析。这已经成为材料开发中的工作流程瓶颈,特别是在高通量合成筛选中。在这里,我们展示了连续旋转电子衍射(SerialRED)在高通量鉴定复杂多晶沸石产物中的应用。这些产物是由多种骨架 T 原子([Si、Ge、Al]或[Si、Ge、B])和简单的有机结构导向剂组合而成。我们表明,使用 SerialRED,可以从高度复杂的混合物中鉴定出五种沸石相。其中包括使用 X 射线衍射无法检测到的超低含量的相以及具有相同晶体形态和相似晶胞参数的相。通过自动快速检查数百个晶体,SerialRED 实现了高通量的相分析,并允许探索复杂的合成系统。它为多晶材料的快速发展提供了新的机会。