<![CDATA[Solid state synthesis, spectroscopic and X-ray studies of metal complexes of 2-picolinic acid and vapochromic behavior of [Co(Pic) <ce:inf loc='post'>2</ce:inf>(H <ce:inf loc='post'>2</ce:inf>O) <ce:inf loc='post'>2</ce:inf>]·2H <ce:inf loc='post'>2</ce:inf>O]]>
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2(H 2O) 2]·2H 2O]]>

机译:<![CDATA [CDATA [固态合成,金属酸的光谱和X射线研究[CO(PIC) 2 ( H. 2 O]]>

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AbstractThree compounds, [Cu(Pic)2(H2O)](1a),[M(Pic)2(H2O)2]·2H2O] (M=Co(2a),Zn(3a), Pic?=?2-picolinic acid) were obtained by solvent-free synthesis through grinding of metal acetate salt with 2-picolinic acid. Favorable comparison of solvent-free with solution based method of 1b, 2b and 3b was observed. Good resemblance of identity of compounds obtained through the two methods was confirmed by elemental analysis, spectroscopic techniques (UV-Vis and FTIR), TGA and PXRD. The single crystal diffraction data for [Co(Pic)2(H2O)2]·2H2O obtained from the Cambridge structure database (CSD), its PXRD simulated patterns closely matched that of complex2aby solvent-free synthesis. Vapochromic behavior of this complex was studied using colour change, FT-IR, TGA, PXRD and solid state UV-visible spectroscopies. This complex generated specific colour which is also evident in the shifting of the vibrational frequencies (νO-H andνC=O bands). The resulting inclusion compounds have different colours depending on the solvent used. In addition, exposure of the resultant inclusion compounds to ambient environment or heating for a few minutes regenerate the original material without degradation even after exposure/heating cycles as evident from TGA/DTG thermograms.Graphical abstractDisplay Omitted]]>
机译:<![CDATA [ 抽象 三种化合物,[Cu(pic) 2 (h 2 o)] (1a), [m(pic) 2> 2 (H 2 O) 2 ] ·2H 2 o](m = co <​​ce:粗体>(2a), zn (3a)< / Ce:大胆的>,Pic?= 2-鸟苷酸)通过溶剂合成通过用2-吡啶酸研磨金属乙酸盐而获得。观察到溶剂与基于溶液的方法为1B,2B和3B的无溶剂的比较。通过元素分析,光谱技术(UV-VIS和FTIR),TGA和PXRD来确认通过两种方法获得的化合物的身份的良好相似性。 [CO(PIC) 2 (H 2 O)< CE:INF LOC =“POST”> 2> 2 ]·2H 2 O从剑桥结构数据库(CSD)获得,其PXRD模拟模式与复杂的 2a 通过无溶剂合成密切相关。使用颜色变化,FT-IR,TGA,PXRD和固态UV可见光光谱研究该络合物的Vaprocomics行为。这种复杂的特异性颜色在振动频率的移位中也显而易见(νo-h和ν c = o频带)。由所得包容化合物具有不同的颜色,这取决于所用的溶剂。此外,即使在从TGA / DTG热图中明显明显,甚至在暴露/加热循环之后,将所得包含化合物的暴露于周围环境或加热几分钟即使在暴露/加热循环之后,也可以在不降解的情况下再生。 图形抽象 显示省略 ]]>

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