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有机磷酸盐对短程有序铁纳米相的结构和组成的影响。

Impact of organic phosphates on the structure and composition of short-range ordered iron nanophases.

作者信息

Chen Zhengzheng, Perez Jeffrey Paulo H, Smales Glen J, Blukis Roberts, Pauw Brian R, Stammeier Jessica A, Radnik Jörg, Smith Andrew J, Benning Liane G

机构信息

GFZ German Research Center for Geosciences Telegrafenberg 14473 Potsdam Germany

Department of Earth Sciences, Freie Universität Berlin Malteserstraße 74-100 12249 Berlin Germany.

出版信息

Nanoscale Adv. 2024 Apr 11;6(10):2656-2668. doi: 10.1039/d3na01045g. eCollection 2024 May 14.

Abstract

Organic phosphates (OP) are important nutrient components for living cells in natural environments, where they readily interact with ubiquitous iron phases such as hydrous ferric oxide, ferrihydrite (FHY). FHY partakes in many key bio(geo)chemical reactions including iron-mediated carbon storage in soils, or iron-storage in living organisms. However, it is still unknown how OP affects the formation, structure and properties of FHY. Here, we document how β-glycerophosphate (GP), a model OP ligand, affects the structure and properties of GP-FHY nanoparticles synthesized by coprecipitation at variable nominal molar P/Fe ratios (0.01 to 0.5). All GP-FHY precipitates were characterized by a maximum solid P/Fe ratio of 0.22, irrespective of the nominal P/Fe ratio. With increasing nominal P/Fe ratio, the specific surface area of the GP-FHY precipitates decreased sharply from 290 to 3 m g, accompanied by the collapse of their pore structure. The Fe-P local bonding environment gradually transitioned from a bidentate binuclear geometry at low P/Fe ratios to monodentate mononuclear geometry at high P/Fe ratios. This transition was accompanied by a decrease in coordination number of edge-sharing Fe polyhedra, and the loss of the corner-sharing Fe polyhedra. We show that Fe(iii) polymerization is impeded by GP, and that the GP-FHY structure is highly dependent on the P/Fe ratio. We discuss the role that natural OP-bearing Fe(iii) nanophases have in biogeochemical reactions between Fe-P and C species in aquatic systems.

摘要

有机磷酸盐(OP)是自然环境中活细胞的重要营养成分,在自然环境中,它们很容易与普遍存在的铁相相互作用,如水合氧化铁、水铁矿(FHY)。水铁矿参与许多关键的生物(地球)化学反应,包括土壤中铁介导的碳储存,或生物体中的铁储存。然而,OP如何影响水铁矿的形成、结构和性质仍然未知。在这里,我们记录了β-甘油磷酸酯(GP),一种模型OP配体,如何在可变的名义摩尔P/Fe比(0.01至0.5)下通过共沉淀合成的GP-FHY纳米颗粒的结构和性质。所有GP-FHY沉淀物的最大固体P/Fe比均为0.22,与名义P/Fe比无关。随着名义P/Fe比的增加,GP-FHY沉淀物的比表面积从290急剧下降到3 m²/g,同时其孔隙结构坍塌。Fe-P局部键合环境从低P/Fe比下的双齿双核几何结构逐渐转变为高P/Fe比下的单齿单核几何结构。这种转变伴随着边共享铁多面体配位数的减少和角共享铁多面体的丧失。我们表明,GP阻碍了Fe(III)的聚合,并且GP-FHY结构高度依赖于P/Fe比。我们讨论了天然含OP的Fe(III)纳米相在水生系统中Fe-P和C物种之间的生物地球化学反应中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6d6/11093260/d0900c3642ef/d3na01045g-f1.jpg

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