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首页> 外文期刊>ChemPlusChem >Dimethylsilanone Generation from Pyrolysis of Polysiloxanes Filled with Nanosized Silica and Ceria/Silica
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Dimethylsilanone Generation from Pyrolysis of Polysiloxanes Filled with Nanosized Silica and Ceria/Silica

机译:从填充含有纳米型二氧化硅和二氧化硅/二氧化硅的聚硅氧烷热解的二甲基硅酮

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Temperature-programmed desorption mass spectrometry (TPDMS) was used to study the pyrolysis of PDMS and its composites with nanosized silica and ceria/silica. The results suggest that the elusive organosilicon compound, dimethylsilanone, is generated from PDMS over a broad temperature range (in some cases starting at 70 degrees C). The presence of nano-oxides catalyzes this process. Ions characteristic of the fragmentation of dimethylsilanone under electron ionization are assigned with the aid of DFT structure calculations. Possible reaction mechanisms for dimethylsilanone generation are discussed in the context of the calculated kinetic parameters. Observed accompanying products of PDMS pyrolysis, such as tetramethylcyclodisiloxane and hexamethylcyclotrisiloxane, indicate that multiple channels are involved in the dimethylsilanone release.
机译:温度编程的解吸质谱(TPDMS)用于研究PDMS的热解及其与纳米二氧化硅和二氧化硅/二氧化硅的复合材料。 结果表明,难以使用的有机硅化合物,二甲基硅氧烷在宽温度范围内的PDMS(在70℃下开始)。 纳米氧化物的存在催化该方法。 通过DFT结构计算分配电子电离下二甲基硅烷酮的碎片的特征。 在计算的动力学参数的背景下讨论了二甲基硅烷酮产生的可能反应机制。 观察到PDMS热解的伴随产物,例如四甲基环二硅氧烷和六甲基环氯氧烷,表明多个通道参与二甲基硅烷释放。

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