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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Crystal and electronic structure, lattice dynamics and thermal properties of Ag(i)(SO _3)R (R = F, CF _3) Lewis acids in the solid state
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Crystal and electronic structure, lattice dynamics and thermal properties of Ag(i)(SO _3)R (R = F, CF _3) Lewis acids in the solid state

机译:Ag(i)(SO _3)R(R = F,CF _3)固态路易斯酸的晶体和电子结构,晶格动力学和热性能

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Trifluoromethansulfonate of silver(I), AgSO _3CF _3 (abbreviated AgOTf), extensively used in organic chemistry, and its fluorosulfate homologue, AgSO _3F, have been structurally characterized for the first time. The crystal structures of both homologues differ substantially from each other. AgOTf crystallizes in a hexagonal system (R3 space group, No.148) with a = b = 5.312(3) ? and c = 32.66(2) ?, while AgSO _3F crystallizes in a monoclinic system in the centrosymmetric P2 _1/m space group (No.11) with a = 5.4128(10) ?, b = 8.1739(14) ?, c = 7.5436(17) ?, and β = 94.599(18)°, adopting a unique structure type (100 K data). There are two types of fluorosulfate anions in the structure; in one type the F atom is engaged in chemical bonding to Ag(i) and in the other type the F atom is terminal; accordingly, two resonances are seen in the ~(19)F NMR spectrum of AgSO _3F. Theoretical analysis of the electronic band structure and electronic density of states, as well as assignment of the mid- and far-infrared absorption and Raman scattering spectra for both compounds, have been performed based on the periodic DFT calculations. AgSO _3F exhibits an unusually low melting temperature of 156°C and anomalously low value of melting heat (ca. 1 kJ mol ~(-1)), which we associate with (i) disorder of its anionic sublattice and (ii) the presence of 2D sheets in the crystal structure, which are weakly bonded with each other via long Ag-O(F) contacts. AgSO _3F decomposes thermally above 250°C, yielding mostly Ag _2SO _4 and liberating SO _2F _2. AgOTf is much more thermally stable than AgSO 3F; it undergoes two consecutive crystallographic phase transitions at 284°C and 326°C followed by melting at 383°C; its thermal decomposition commences above 400°C leading at 500°C to crystalline Ag _2SO _4 and an unidentified phase as major products of decomposition in the solid state.
机译:银(I)的三氟甲磺酸盐,AgSO _3CF _3(缩写为AgOTf),广泛用于有机化学,其氟代硫酸盐同系物AgSO _3F,已在结构上首次得到了表征。两个同系物的晶体结构彼此基本不同。 AgOTf在a = b = 5.312(3)的六边形系统(R3空间群,编号148)中结晶。 c = 32.66(2)?,而AgSO _3F在中心对称的P2 _1 / m空间群(11号)的单斜晶系统中结晶,其中a = 5.4128(10)?,b = 8.1739(14)?,c = 7.5436(17)?和β= 94.599(18)°,采用独特的结构类型(100 K数据)。结构中有两种类型的氟代硫酸根阴离子;一种是F原子与Ag(i)化学键合,另一种是F原子为末端。因此,在AgSO_3F的〜(19)F NMR光谱中可以看到两个共振。基于周期性DFT计算,对两种化合物的电子能带结构和电子态密度进行了理论分析,并确定了这两种化合物的中,远红外吸收光谱和拉曼散射光谱。 AgSO _3F表现出异常低的156°C熔化温度和异常低的熔化热值(约1 kJ mol〜(-1)),这与(i)其阴离子亚晶格紊乱和(ii)存在有关晶体结构中的2D薄片,它们通过长的Ag-O(F)接触而彼此弱结合。 AgSO _3F在250°C以上热分解,主要产生Ag _2SO _4并释放SO _2F _2。 AgOTf比AgSO 3F热稳定得多。它在284℃和326℃经历了两个连续的结晶相变,然后在383℃熔化。其热分解在高于400°C时开始,在500°C时产生结晶Ag _2SO _4,并且是固态分解的主要产物,身份不明的相。

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