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扩散驱动体系中氢氧化钴的氢氧化物源依赖性多晶型性和相稳定性

Hydroxide-Source-Dependent Polymorphism and Phase Stability of Cobalt(II) Hydroxides in Diffusion-Driven Systems.

作者信息

Dimble Akshay K, Bagul Nikhil D, Walimbe Prasad C, Kulkarni Preeti S, Kulkarni Sunil D

机构信息

Post Graduate and Research Center, Department of Chemistry, S. P. Mandali's, Sir Parashurambhau College, Tilak Road, Pune, Maharashtra 411 030, India.

Post Graduate and Research Center, Department of Chemistry, MES Abasaheb Garware College, Karve Road, Pune 411 004, India.

出版信息

Langmuir. 2024 Sep 3;40(35):18631-18641. doi: 10.1021/acs.langmuir.4c02149. Epub 2024 Aug 20.

DOI:10.1021/acs.langmuir.4c02149
PMID:39162248
Abstract

Hydroxides of cobalt(II) exist predominantly in two polymorphic forms, namely, the blue-green α-form [α-Co(OH)] and reddish β-form [β-Co(OH)]. These hydroxides have a layered structure with interlayer galleries of around 7 and 4 Å, respectively, for α- and β-Co(OH). In most of the previous studies, both the polymorphs were synthesized separately, and a few of them showed that the α-form gets converted to a thermodynamically more stable β-form via physical processes. In the present work, we have optimized the conditions for the simultaneous synthesis of both polymorphs under identical conditions in the same reactor using the 1D reaction-diffusion framework by employing different outer electrolytes. We found that the polymorph chemistry of Co(OH) depends on the source and concentration of OH rather than other reaction conditions or later physical transformation. The products are characterized to confirm their morphology, structure, and chemical environment. We observed that the use of NaOH and NHOH as the OH precursor leads to α-Co(OH) only; however, with NaOH, a continuous precipitate is formed, and with NHOH, periodic precipitation is formed. On the other hand, with hydrazine (HYZ) as the OH source, Liesegang bands of α-Co(OH) and β-Co(OH) as granules are formed throughout the diffusion reactor. Another intriguing observation on the HYZ system is that at its high concentration, the bands of α-Co(OH) get converted to β-Co(OH). We articulate the reasons and mechanism of those observations.

摘要

钴(II)的氢氧化物主要以两种多晶型形式存在,即蓝绿色的α型[α-Co(OH)]和红色的β型[β-Co(OH)]。这些氢氧化物具有层状结构,α-Co(OH)和β-Co(OH)的层间通道分别约为7 Å和4 Å。在大多数先前的研究中,两种多晶型都是分别合成的,其中一些研究表明,α型通过物理过程会转变为热力学上更稳定的β型。在本工作中,我们利用一维反应扩散框架,通过使用不同的外部电解质,优化了在同一反应器中相同条件下同时合成两种多晶型的条件。我们发现,Co(OH)的多晶型化学取决于OH的来源和浓度,而不是其他反应条件或随后的物理转变。对产物进行了表征,以确认其形态、结构和化学环境。我们观察到,使用NaOH和NHOH作为OH前体仅会生成α-Co(OH);然而,使用NaOH时会形成连续沉淀,使用NHOH时会形成周期性沉淀。另一方面,以肼(HYZ)作为OH源时,在整个扩散反应器中会形成α-Co(OH)和β-Co(OH)颗粒的李赛根带。关于HYZ体系的另一个有趣观察结果是,在其高浓度下,α-Co(OH)带会转变为β-Co(OH)。我们阐述了这些观察结果的原因和机制。

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