首页> 外文期刊>Chemistry - A European Journal >Poly(triazine imide) with Intercalation of Lithium and Chloride Ions [(C3N3)2(NHxLi1?x)3LiCl]: A Crystalline 2D Carbon Nitride Network
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Poly(triazine imide) with Intercalation of Lithium and Chloride Ions [(C3N3)2(NHxLi1?x)3LiCl]: A Crystalline 2D Carbon Nitride Network

机译:嵌入锂和氯离子的聚(三嗪酰亚胺)[(C 3 N 3 2 (NH x Li 1?x 3 LiCl]:结晶二维氮化碳网络

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Poly(triazine imide) with intercalation of lithium and chloride ions (PTI/Li+Cl−) was synthesized by temperature-induced condensation of dicyandiamide in a eutectic mixture of lithium chloride and potassium chloride as solvent. By using this ionothermal approach the well-known problem of insufficient crystallinity of carbon nitride (CN) condensation products could be overcome. The structural characterization of PTI/Li+Cl− resulted from a complementary approach using spectroscopic methods as well as different diffraction techniques. Due to the high crystallinity of PTI/Li+Cl− a structure solution from both powder X-ray and electron diffraction patterns using direct methods was possible; this yielded a triazine-based structure model, in contrast to the proposed fully condensed heptazine-based structure that has been reported recently. Further information from solid-state NMR and FTIR spectroscopy as well as high-resolution TEM investigations was used for Rietveld refinement with a goodness-of-fit (χ2) of 5.035 and wRp=0.05937. PTI/Li+Cl− (P63cm (no. 185); a=846.82(10), c=675.02(9) pm) is a 2D network composed of essentially planar layers made up from imide-bridged triazine units. Voids in these layers are stacked upon each other forming channels running parallel to [001], filled with Li+ and Cl− ions. The presence of salt ions in the nanocrystallites as well as the existence of sp2-hybridized carbon and nitrogen atoms typical of graphitic structures was confirmed by electron energy-loss spectroscopy (EELS) measurements. Solid-state NMR spectroscopy investigations using 15N-labeled PTI/Li+Cl− proved the absence of heptazine building blocks and NH2 groups and corroborated the highly condensed, triazine-based structure model.
机译:通过双氰胺在氯化锂的低共熔混合物中的温度诱导缩合反应合成了嵌入锂和氯离子(PTI / Li + Cl -)的聚三嗪酰亚胺和氯化钾作为溶剂。通过使用这种离子热方法,可以克服众所周知的氮化碳(CN)缩合产物结晶度不足的问题。 PTI / Li + Cl -的结构表征是通过使用光谱学方法以及不同衍射技术的互补方法得出的。由于PTI / Li + Cl -的高结晶度,可以使用直接方法从粉末X射线和电子衍射图谱中获得结构溶液。与最近已报道的拟议的完全缩合的基于庚嗪的结构相反,这产生了基于三嗪的结构模型。 Rietveld精炼使用了固态NMR和FTIR光谱以及高分辨率TEM研究获得的更多信息,拟合优度(χ 2 )为5.035,wRp = 0.05937。 PTI / Li + Cl -(P6 3 cm(编号185); a = 846.82(10),c = 675.02(9) pm)是一个2D网络,由基本上由酰亚胺桥连的三嗪单元组成的平面层组成。这些层中的空隙彼此堆叠,形成平行于[001]的通道,并充满Li + 和Cl -离子。通过电子能量损失谱(EELS)测量证实了纳米晶体中存在盐离子以及石墨结构中典型的sp 2 -杂化碳原子和氮原子。使用 15 N标记的PTI / Li + Cl -进行的固态NMR光谱研究证明不存在庚嗪结构单元和NH 2 组并证实了高度缩合的,基于三嗪的结构模型。

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