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首页> 外文期刊>Bulletin of the Korean Chemical Society >Preparation and Thermal Performance of Fullerene-Based Lead Salt
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Preparation and Thermal Performance of Fullerene-Based Lead Salt

机译:富勒烯基铅盐的制备及热性能

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C_(60) is widely investigated because of its unique structure. But its applications in solid propellant seem to be relatively neglected. C_(60) has more outstanding features than carbon black which is widely used as a catalyst ingredient of solid propellant. To combine the advantages of fullerene and lead salts, another good composite in propellant catalysts, we synthesized a kind of fullerene phenylalanine lead salt (FPL) and explored its thermal performances by differential thermal analysis (DTA) and thermogravimetry analysis (TGA). The results show it undergoes four exothermic processes started from 408 K. Combined TGA and X-ray diffractometer (XRD), the decomposition mechanism of FPL was derived by TG-IR and comparing IR spectra of FPL and its residues after burned to 327 °C, 376 °C and 424 °C, respectively. Effect of FPL on the decomposition characteristic of hexogen (RDX), a type of explosive in propellant, has been investigated using DTA at different heating rate, which shows the decomposition temperatures of the explosive are all reduced by more than 20 K. The corresponding activation energy (E_a) is decreased by 30 kJ·mol~(-1). So FPL has potential application as a combustion catalyst in solid propellant.
机译:C_(60)由于其独特的结构而被广泛研究。但是它在固体推进剂中的应用似乎相对被忽略了。与广泛用作固体推进剂催化剂成分的炭黑相比,C_(60)具有更突出的特性。为了结合富勒烯和铅盐的优点,富勒烯和铅盐是推进剂催化剂中的另一种良好的复合材料,我们合成了一种富勒烯苯丙氨酸铅盐(FPL),并通过差热分析(​​DTA)和热重分析(TGA)探索了其热性能。结果表明,从408 K开始经历了四个放热过程。结合TGA和X射线衍射仪(XRD),通过TG-IR推导了FPL的分解机理,并比较了燃烧至327°C后FPL及其残留物的红外光谱分别为376°C和424°C。使用DTA在不同的加热速率下研究了FPL对一种推进剂炸药—生成剂炸药—己二酸酯(RDX)分解特性的影响,这表明炸药的分解温度都降低了20 K以上。相应的活化能量(E_a)降低30 kJ·mol〜(-1)。因此,FPL作为固体推进剂的燃烧催化剂具有潜在的应用前景。

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