Department of Chemistry, University of California, Berkeley, Berkeley, CA 94720, USA.
Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.
Science. 2020 Aug 7;369(6504):674-680. doi: 10.1126/science.aaz4304.
We mapped the metal sequences within crystals of metal-oxide rods in multivariate metal-organic framework-74 containing mixed combinations of cobalt (Co), cadmium (Cd), lead (Pb), and manganese (Mn). Atom probe tomography of these crystals revealed the presence of heterogeneous spatial sequences of metal ions that we describe, depending on the metal and synthesis temperature used, as random (Co, Cd, 120°C), short duplicates (Co, Cd, 85°C), long duplicates (Co, Pb, 85°C), and insertions (Co, Mn, 85°C). Three crystals were examined for each sequence type, and the molar fraction of Co among all 12 samples was observed to vary from 0.4 to 0.9, without changing the sequence type. Compared with metal oxides, metal-organic frameworks have high tolerance for coexistence of different metal sizes in their rods and therefore assume various metal sequences.
我们绘制了多元金属-有机骨架-74 中金属氧化物棒晶体内部的金属序列,其中包含钴 (Co)、镉 (Cd)、铅 (Pb) 和锰 (Mn) 的混合组合。对这些晶体的原子探针层析成像揭示了存在不均匀的空间金属离子序列,我们根据所用金属和合成温度将其描述为随机(Co、Cd、120°C)、短重复(Co、Cd、85°C)、长重复(Co、Pb、85°C)和插入(Co、Mn、85°C)。每种序列类型都检查了三个晶体,在所有 12 个样品中观察到 Co 的摩尔分数在 0.4 到 0.9 之间变化,而不改变序列类型。与金属氧化物相比,金属有机骨架对其棒状结构中不同金属尺寸的共存具有很高的容忍度,因此可以采用各种金属序列。