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通过X射线吸收和核磁共振光谱法对固体磷酸钛(IV)材料进行合成与结构表征。

Synthesis and structural characterisation of solid titanium(IV) phosphate materials by means of X-ray absorption and NMR spectroscopy.

作者信息

Rusanova-Naydenova Daniela, Trublet Mylène, Klysubun Wantana, Cholsuk Chanakan, Iuga Dinu, Dupree Ray, Antzutkin Oleg N, Persson Ingmar

机构信息

SunCarbon AB, P. O. Box 726, SE-941 28 Piteå, Sweden.

Department of Corrosion, RISE KIMAB, Isafjordsgatan 28A, SE-164 40 Kista, Sweden.

出版信息

Dalton Trans. 2022 May 31;51(21):8192-8207. doi: 10.1039/d2dt00902a.

DOI:10.1039/d2dt00902a
PMID:35583237
Abstract

Solid titanium phosphate, TiP, materials hold great promise for wastewater treatment for removal of metal ions and complexes. A series of TiP materials, synthesised at mild conditions and short reaction times, have been structurally characterised using solid-state X-ray absorption spectroscopy, phosphorus and titanium K edge XANES and EXAFS, and P and Ti NMR spectroscopy. The titanium K edge EXAFS data of α-Ti(HPO)·HO (α-TiP) revealed octahedral coordination of oxygens around titanium. Repeated washing of primary β-/γ-TiP with hydrochloric acid results in formation of a weakly ordered solid, TiO(OH)(HPO)·HO, TiP1-H. The structure of TiP1-H is shown by Ti EXAFS to be a titanyl compound, containing a short TiO bond. The analogous data for linked titanium phosphate compounds (LTP) disclosed that inter-linkage occurs between α-TiP and titanyl phosphate units, supported by P-P NOESY NMR data. Ti NMR and Ti pre-edge XANES show evidence of two different titanium environments in LTP, one very similar to that observed in TiP1-H and a second more symmetric octahedral environment. Data are discussed in terms of induced acidic hydrolyses of titanium(IV) and phosphate counterpart during washings with hydrochloric acid and water. A straightforward relation between synthesis parameters/post synthetic treatment and structural re-arrangement in the materials is established.

摘要

固体磷酸钛(TiP)材料在去除金属离子和络合物的废水处理方面具有巨大潜力。一系列在温和条件和短反应时间下合成的TiP材料,已通过固态X射线吸收光谱、磷和钛的K边XANES和EXAFS以及P和Ti NMR光谱进行了结构表征。α-Ti(HPO₄)₂·H₂O(α-TiP)的钛K边EXAFS数据显示钛周围的氧呈八面体配位。用盐酸反复洗涤初级β-/γ-TiP会导致形成一种弱有序固体TiO(OH)(HPO₄)·H₂O,即TiP1-H。Ti EXAFS表明TiP1-H的结构是一种钛氧基化合物,含有短的TiO键。连接的磷酸钛化合物(LTP)的类似数据表明,α-TiP和磷酸钛氧基单元之间发生了连接,这得到了P-P NOESY NMR数据的支持。Ti NMR和Ti预边XANES显示LTP中有两种不同的钛环境证据,一种与TiP1-H中观察到的非常相似,另一种是更对称的八面体环境。根据盐酸和水洗涤过程中钛(IV)和磷酸盐对应物的诱导酸性水解对数据进行了讨论。建立了材料合成参数/合成后处理与结构重排之间的直接关系。

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