Synthesis of amorphous Ni-P alloy particles by pulse discharge and their catalytic performance
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摘要: 采用脈沖放電技術合成Ni-P合金粉體,研究了合金粉體的結構及其對高氯酸銨熱分解的影響.結果表明,非晶態Ni-P合金粉體是由微粒組成的團聚結構.脈沖放電電壓700、900和1100V對應的弦粒子數依次增大,粉體粒徑依次減小,分別為350~500、250~400和150~300nm.Ni-P合金粉體促進高氯酸銨的低溫和高溫熱分解,與純高氯酸銨相比,高氯酸銨和Ni-P粉體混合物的第1放熱峰(低溫分解峰)溫度降低幅度小于12℃,第2放熱峰(高溫分解峰)溫度降低約53℃;合金粉體粒徑減小,第1放熱峰強度增強,第2放熱峰強度減弱,低溫分解失重從高氯酸銨的15.97%增加到42.78%,高溫分解失重從81.62%降低到47.58%,高溫分解結束時溫度的降低幅度為26~43℃.Abstract: Ni-P alloy particles were synthesized by pulse discharge, and then their microstructure and effect on the thermal decomposition of ammonium perchlorate (AP) were studied. The results show that amorphous Ni-P alloy particles are composed of aggregates. The chord counts increase with increasing discharge voltage, leading to the reduction in diameter of Ni-P particles. The sizes of particles prepared at discharge voltages of 700, 900 and 1 100 V are 350 to 500, 250 to 400 and 150 to 300 nm, respectively. Ni-P alloy particles are beneficial to the thermal decomposition of AP at both low and high temperatures. In comparison with pure AP, Ni-P particles result in a decrease of the first (low temperature decomposition) and second exothermic (high temperature decomposition) peak temperature, and the decrease ranges are within 12℃ and about 53℃, respectively. The first exothermic peak is intensified with a reduction in size of Ni-P particles, but the second exothermic peak becomes weakened. In addition, the mass loss of low-temperature decomposition increases from 15.97% for pure AP to 42.78% for the mixture of AP and Ni-P particles, while the mass loss of high-temperature decomposition decreases from 81.62% to 47.58% and the end of high temperature decomposition is reduced by a range of 26 to 43℃.
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Key words:
- Ni-P alloys /
- amorphous state /
- particles /
- pulse discharge /
- catalytic performance /
- ammonium perchlorate
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