Expansion and adaptation of the M5B12O25(OH) structure type to incorporate di- and trivalent transition metal cations

Leonard C. Pasqualini, Martina Tribus, H. Huppertz
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Abstract

Abstract Five transition metal borates were synthesized in a Walker-type module under high-pressure/high-temperature conditions of 8–9 GPa and 800–1200 °C. They all exhibit the same interpenetrating, anionic borate network B12O2616−, crystallizing in the space group I41/acd, and therefore show high similarities to the borates Ti5B12O26 and Ga5B12O25(OH). Cr5B12O25(OH) and V5B12O25(OH) are isotypic to Ga5B12O25(OH), whereas Mn5Mn0.83B12O26 and Fe5Fe0.14B12O24.3(OH)1.7 feature the partial occupation of an additional, cuboctahedral cavity in the structure. This is due to a partial reduction of the cations to the oxidation state +2, as presented with the novel compound Mn5MnB12O22(OH)4, which only features Mn2+ for charge compensation. These structures feature a twelvefold coordination of manganese and iron.
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扩展和调整 M5B12O25(OH) 结构类型,以纳入二价和三价过渡金属阳离子
摘要 在 8-9 GPa 和 800-1200 ℃ 的高压/高温条件下,通过沃克型模块合成了五种过渡金属硼酸盐。它们都表现出相同的互穿阴离子硼酸盐网络 B12O2616-,在空间群 I41/acd 中结晶,因此与硼酸盐 Ti5B12O26 和 Ga5B12O25(OH) 具有高度相似性。Cr5B12O25(OH) 和 V5B12O25(OH) 与 Ga5B12O25(OH) 同型,而 Mn5Mn0.83B12O26 和 Fe5Fe0.14B12O24.3(OH)1.7 的特点是在结构上部分占据了一个额外的立方八面体空腔。这是由于阳离子部分还原为氧化态 +2,如新型化合物 Mn5MnB12O22(OH)4,其电荷补偿特征仅为 Mn2+。这些结构的特点是锰和铁的十二倍配位。
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