首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Coupled-substituted double-layer Aurivillius niobates: structures, magnetism and solar photocatalysis
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Coupled-substituted double-layer Aurivillius niobates: structures, magnetism and solar photocatalysis

机译:偶联替代的双层AURIVILLIUS Niobates:结构,磁性和太阳能光催化

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Development of layered perovskites for sunlight-driven catalysis has gained a lot of attention in contemporary inorganic materials research. While the compositional modifications of three-dimensional perovskites are ubiquitous, they are infrequent in the case of layered perovskites particularly with niobates when the perovskite layer thickness is low. We report here the solid state synthesis of a series of lead-free double-layer Aurivillius niobates, LaBi2Nb1.5M0.5O9 (M = Cr, Mn, Fe, Co), by adopting a heterovalent coupled substitution strategy with SrBi2Nb2O9. Rietveld structure refinements of the compounds using P-XRD data suggest the formation of 3d(n) transition metal incorporated double-layer Aurivillius niobates in the non-centrosymmetric A2(1)am space group, isostructural with the parent. The compounds show optical absorption in the visible region with the absorption tail extending up to similar to 650 nm and band gaps ranging from 2.25-2.94 eV. While the compounds show paramagnetic behaviour with no indication of magnetic phase transition or ordering in the temperature range 5-300 K, the Mn compound stabilizes with a low-spin (LS) configuration in contrast to all others (Cr, Fe and Co compounds), which adopt a high-spin (HS) configuration. The stabilization of the LS configuration (t42g) of the Mn compound occurs with e(g) -> t(2g) electron redistribution due to the suppression of first-order Jahn-Teller (FOJT) distortion by the dominating second-order Jahn-Teller (SOJT) distortion of Nb5+ (4d(0)). The compounds exhibit photocatalytic rhodamine B degradation at pH 2 within 50-110 minutes under natural sunlight-irradiation and remain stable after five consecutive degradation cycles maintaining their activity largely intact. The heterovalent coupled substitution strategy adopted here will open up possibilities for transforming many other UV-active layered niobates into sunlight-active compounds without using toxic Pb or expensive Ag, while the paramagnetic nature of the compounds will be helpful in post-catalytic magnetic separation of the catalysts. It is believed that the electronic instability of the t32ge1g configuration of Mn due to competing FOJT and SOJT effects may have far-reaching consequences in modifying its magneto-structural and electron transport properties.
机译:在当代无机材料研究中,阳光驱动催化分层的普罗夫斯基特的发展已经提高了很多关注。虽然三维Perovskites的组成修饰是普遍存在的,但在钙钛矿层厚度低时,它们在层状钙钛矿的情况下,它们是不常见的。我们在此报告了一系列无铅双层Aurivillius铌酸盐,Labi2NB1.5M0.5O9(M = Cr,Mn,Fe,Co)的固态合成,采用具有Srbi2NB2O9的异常耦合替代策略。使用P-XRD数据的化合物的RIETVELD结构改进表明,在非邻摩擦A2(1)am Space组中,3D(n)过渡金属的形成掺入的双层Aurivillius铌酸盐,与父母同学。该化合物在可见区域中显示光学吸收,吸收尾部延伸至类似于650nm,带间隙范围为2.25-2.94eV。虽然化合物显示了磁相转变或在温度范围内的磁相转变或排序的顺磁性行为,但与所有其他(Cr,Fe和Co化合物相比,Mn化合物稳定用低旋转(LS)构型稳定,采用高旋转(HS)配置。由于主导的二阶JAHN-抑制了一阶JAHN-TEAKER(FOJT)变形,MN化合物的LS构型(T42G)的稳定发生在e(g) - > t(2g)电子再分配。 TAKER(SOJT)NB5 +的失真(4D(0))。该化合物在自然阳光照射下在50-110分钟内在pH 2下在pH 2下进行光催化罗丹明B降解,并在保持其活性的5个连续降解循环后保持稳定。这里采用的异丙耦合替代策略将使许多其他UV活性层状铌酸盐转化为阳光活性化合物的可能性而不使用有毒PB或昂贵的AG,而化合物的顺磁性将有助于催化磁性分离催化剂。据信,由于竞争对手的竞争力和SOJT效应,MN的T32GE1G配置的电子不稳定性可能对改变其磁结构和电子传输性质来具有深远的影响。

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