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Porous, crystalline, covalent organic frameworks

机译:多孔,结晶,共价有机骨架

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Covalent organic frameworks (COFs) have been designed and successfully synthesized by condensation reactions of phenyl diboronic acid {C6H4[B(OH)(2)](2)} and hexahydroxytriphenylene [C18H6(OH)(6)]. Powder x-ray diffraction studies of the highly crystalline products (C3H2BO)(6)center dot(C9H12)(1) (COF-1) and C9H4BO2 (COF-5) revealed expanded porous graphitic layers that are either staggered (COF-1, P6(3)/mmc) or eclipsed (COF-5, P6/mmm). Their crystal structures are entirely held by strong bonds between B, C, and O atoms to form rigid porous architectures with pore sizes ranging from 7 to 27 angstroms. COF-1 and COF-5 exhibit high thermal stability (to temperatures up to 500 degrees to 600 degrees C), permanent porosity, and high surface areas (711 and 1590 square meters per gram, respectively).
机译:通过苯基二硼酸{C6H4 [B(OH)(2)](2)}与六羟基三亚苯基[C18H6(OH)(6)]的缩合反应,设计并成功合成了共价有机骨架(COF)。高结晶产物(C3H2BO)(6)中心点(C9H12)(1)(COF-1)和C9H4BO2(COF-5)的粉末X射线衍射研究表明,膨胀的多孔石墨层要么交错(COF-1) ,P6(3)/ mmc)或黯淡(COF-5,P6 / mmm)。它们的晶体结构完全由B,C和O原子之间的强键保持,从而形成孔径范围为7至27埃的刚性多孔结构。 COF-1和COF-5具有很高的热稳定性(最高温度可达500到600摄氏度),永久孔隙率和高表面积(分别为每克711和1590平方米)。

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