Ziller S, von Bülow J F, Dahl S, Lindén M
Department of Inorganic Chemistry II, Ulm University, Albert-Einstein-Allee 11, 89081 Ulm, Germany.
Haldor Topsøe A/S, Haldor Topsøe Allé 1, DK-2800 Kgs, Lyngby, Denmark.
Dalton Trans. 2017 Apr 5;46(14):4582-4588. doi: 10.1039/c7dt00109f.
Manganese oxides from the compound family of layered birnessites have attracted interest for their use as cathode materials in Li-ion batteries, as supercapacitors, and as water oxidation catalysts. Furthermore, birnessites are also excellent precursors for low-temperature syntheses of manganese oxide-based materials such as LiMnO (spinel and hollandite). Most syntheses leading to highly crystalline birnessites either require hydrothermal conditions for extended periods of time ranging from days to months or a high post-treatment temperature (400-500 °C). Here, we present a novel sol-gel synthesis route leading to the formation of highly crystalline birnessites within one hour without the need for any post-treatment to enhance crystallinity. Small birnessite crystals form virtually immediately upon mixing of the reactants, albeit initially of lower crystallinity. The size of the fully developed monoclinic birnessite platelets is in the micrometer-range with a thickness of about 20-50 nm. Under the studied conditions, the presence of Li, Na, and K is necessary for the formation of well-crystallized birnessites, and the crystal size can be tuned by variation of the synthesis time. This is suggested to be linked to an increase of the Na content in the birnessite with increasing synthesis time.
层状水钠锰矿化合物家族中的氧化锰因其在锂离子电池中用作阴极材料、作为超级电容器以及作为水氧化催化剂而备受关注。此外,水钠锰矿也是低温合成锰氧化物基材料(如LiMnO(尖晶石和钡硬锰矿))的优良前驱体。大多数合成高结晶度水钠锰矿的方法要么需要长时间(从几天到几个月)的水热条件,要么需要较高的后处理温度(400 - 500°C)。在此,我们提出一种新颖的溶胶 - 凝胶合成路线,可在一小时内形成高结晶度的水钠锰矿,无需任何后处理来提高结晶度。小的水钠锰矿晶体在反应物混合后几乎立即形成,尽管最初结晶度较低。完全发育的单斜水钠锰矿片晶尺寸在微米范围内,厚度约为20 - 50纳米。在所研究的条件下,Li、Na和K的存在对于形成结晶良好的水钠锰矿是必要的,并且晶体尺寸可以通过改变合成时间来调节。这被认为与随着合成时间增加水钠锰矿中Na含量的增加有关。