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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Chemically modified oximato complexes of titanium(IV) isopropoxide as new precursors for the sol-gel preparation of nano-sized titania: Crystal and molecular structure of [Ti{ONC_(10)H_(16)}_4· 2CH_2Cl_2]
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Chemically modified oximato complexes of titanium(IV) isopropoxide as new precursors for the sol-gel preparation of nano-sized titania: Crystal and molecular structure of [Ti{ONC_(10)H_(16)}_4· 2CH_2Cl_2]

机译:化学修饰的异丙氧基钛(IV)的肟酸酯配合物,作为纳米二氧化钛溶胶凝胶制备的新前体:[Ti {ONC_(10)H_(16)} _ 4·2CH_2Cl_2]的晶体和分子结构

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摘要

Reactions of [Ti(OPri)_4] with various oximes, in anhydrous refluxing benzene yielded complexes of the type [Ti{OPr i}_(4-n){L}_n], where, n = 1-4 and LH = (CH_3)_2CNOH (1-4), C_9H_(16)CNOH (5-8) and C_9H_(18)CNOH (9-12). The compounds were characterized by elemental analyses, molecular weight measurements, FAB-mass, FT-IR and NMR (1H, 13C{1H}) spectral studies. The FAB-mass spectra of mono- (1), and di- (2), (6), (10) substituted products indicate their dimeric nature and that of tri- (3) and tetra- (4), (8) substituted derivatives suggest their monomeric nature. Crystal and molecular structure of [Ti{ONC _(10)H_(16)}_4·2CH_2Cl_2] (8A) suggests that the oximato ligands bind the metal in a dihapto η~2-(N, O) manner, leading to the formation of an eight coordinated species. Thermogravimetric curves of (3), (6) and (10) exhibit multi-step decomposition with the formation of TiO2 as the final product in each case, at 900 °C. Low temperature (~600 °C) sol-gel transformations of (2), (3), (4), (6), (7) and (8) yielded nano-sized titania (a), (b), (c), (d), (e) and (f), respectively. Formation of anatase phase in all the titania samples was confirmed by powder XRD patterns, FT-IR and Raman spectroscopy. SEM images of (a), (b), (c), (d), (e) and (f) exhibit formation of nano-grains with agglomer like surface morphologies. Compositions of all the titania samples were investigated by EDX analyses. The absorption spectra of the two representative samples, (a) and (f) indicate an energy band gap of 3.17 eV and 3.75 eV, respectively.
机译:[Ti(OPri)_4]与各种肟在无水回流苯中的反应生成类型为[Ti {OPr i} _(4-n){L} _n]的配合物,其中n = 1-4,LH = (CH_3)_2CNOH(1-4),C_9H_(16)CNOH(5-8)和C_9H_(18)CNOH(9-12)。通过元素分析,分子量测量,FAB质量,FT-IR和NMR(1H,13C {1H})光谱研究对化合物进行表征。单(1)和二(2),(6),(10)取代产物的FAB质谱表明其二聚体性质以及三(3)和四(4),(8)的二聚体性质取代的衍生物表明其单体性质。 [Ti {ONC _(10)H_(16)} _ 4·2CH_2Cl_2](8A)的晶体和分子结构表明,肟基配体以二配位η〜2-(N,O)的方式结合金属,从而导致形成八个协调物种。 (3),(6)和(10)的热重曲线显示了多步分解过程,在每种情况下,在900°C下都形成了TiO2作为最终产物。 (2),(3),(4),(6),(7)和(8)的低温(〜600°C)溶胶-凝胶转变产生纳米级的二氧化钛(a),(b),( c),(d),(e)和(f)。通过粉末XRD图谱,FT-IR和拉曼光谱证实了所有二氧化钛样品中都形成了锐钛矿相。 (a),(b),(c),(d),(e)和(f)的SEM图像显示出具有类似团聚体表面形态的纳米颗粒的形成。通过EDX分析研究所有二氧化钛样品的组成。两个代表性样品(a)和(f)的吸收光谱分别表明能带隙为3.17 eV和3.75 eV。

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