CHINESE JOURNAL OF ENERGETIC MATERIALS
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宽温度范围纳米多孔硅/高氯酸钠热分解特性
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作者单位:

(1. 中北大学化工与环境学院, 山西 太原030051; 2. 中国五洲工程设计集团有限公司, 北京 100053; 3. 陕西应用物理化学研究所, 陕西 西安 710061; 4. 西安物化巨能爆破器材有限责任公司, 陕西 西安 710061)

作者简介:

付琼(1984-),女,博士研究生,主要从事复合含能材料的相关研究。e-mail: wonderful0517@163.com 通信联系人: 刘玉存(1961-),男,教授,主要从事含能材料有机合成研究。e-mail: lyc2ct@sina.com

通讯作者:

刘玉存(1961-),男,教授,主要从事含能材料有机合成研究。e-mail: lyc2ct@sina.com

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Thermal Decomposition of Nano Porous Silicon/NaClO4 in a Wide Temperature Range
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Affiliation:

(1. School of Chemical Engineering and Environment North University of China, Taiyuan 030051, China; 2. The First Design Institute China Wuzhou Engineering Group, Beijing 100053, China; 3. Shanxi Applied Physics-Chemistry Research Institute, Xi′an 710061, China; 4. Xi′an WuhuaJuneng Blasting Equipment Co., LTD., Xi′an 710061, China)

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    摘要:

    以纳米多孔硅粉(nPS)为燃烧剂, 高氯酸钠(NaClO4)为氧化剂制备nPS/NaClO4复合含能材料, 利用差示扫描量热-热重(DSC-TG)法研究其在宽温度范围(25~1200 ℃)的热分解特性。为了更全面地了解该复合含能材料的热分解特性, 同时研究了nPS、NaClO4、Si/NaClO4、nPS/NaCl复合材料热分解特性。结果显示, 氧气气氛下硅氢键在400.0 ℃发生断裂, 而其在氩气氛围下的断裂温度为820.0 ℃。NaClO4在581.0 ℃分解放热, 总失重量为68.31%。nPS/NaCl复合材料在883.3 ℃出现最强放热峰, 放热量为567.0 J·g-1。硅氢键的存在使nPS/NaClO4放热量达到359.5 J·g-1, 与Si/NaClO4相比, 增大了15.3 J·g-1。综合热分析测试结果, 推测出nPS/NaClO4复合含能材料的热分解机理: O2使硅氢键提前断裂并参与放热反应, 800 ℃后未断裂的硅氢键与NaCl发生反应最终生成Si。固体燃烧产物的XRD图谱证明了该推论的合理性。

    Abstract:

    The composite energetic material nPS/NaClO4 was prepared by using nano porous silicon (nPS) as reducing agent and sodium perchlorate (NaClO4) as oxidizer. And its thermal decomposition was analyzed by differential scanning calorimetry (DSC)-thermogravimetric (TG) analysis in a wide temperature range from 25 ℃ to 1200 ℃. To better understand the properties of nPS/NaClO4, the thermal decomposition of nPS, NaClO4, Si/NaClO4, nPS/NaCl were analyzed, respectively. Results show that the Si—H bonds was broken around 400.0 ℃ in the oxygen atmosphere, and 820.0 ℃ in the argon atmosphere. The exothermic decomposition peak for NaClO4 was 587.8 ℃ with the total mass loss of 68.31%. The exothermic decomposition peak for nPS/NaCl composite material was 883.3 ℃ with heat release of 567.0 J·g-1. The heat releasing for nPS/NaClO4 reached 359.5 J·g-1, 15.3 J·g-1 more than that of Si/NaClO4 under the same condition, which may be due to the existence of Si—H bonds. Based on the analysis of thermal test results, thermal decomposition mechanism for nPS/NaClO4 composite energetic material may be as follows: the cleavage of the Si—H bonds is in advance for the existence of O2, which participates in the exothermic reaction. The remaining Si—H bonds after 800 ℃ react with NaCl and generate Si. The XRD spectra of solid combustion product of nPS/NaClO4 allow a convincing check of the validity of the mechanistic assumptions.

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付琼,刘玉存,张志军,等.宽温度范围纳米多孔硅/高氯酸钠热分解特性[J].含能材料, 2016, 24(4):357-362. DOI:10.11943/j. issn.1006-9941.2016.04.008.
FU Qiong, LIU Yu-cun, ZHANG Zhi-jun, et al. Thermal Decomposition of Nano Porous Silicon/NaClO4 in a Wide Temperature Range[J]. Chinese Journal of Energetic Materials, 2016, 24(4):357-362. DOI:10.11943/j. issn.1006-9941.2016.04.008.

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  • 收稿日期: 2015-06-23
  • 最后修改日期: 2015-09-18
  • 录用日期: 2015-09-21
  • 在线发布日期: 2016-03-29
  • 出版日期: 2016-04-15