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Strategies for Achieving Balance between Detonation Performance and Crystal Stability of High-Energy-Density Materials

机译:实现高能密度材料爆轰性能与晶体稳定性之间平衡的策略

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摘要

Performance-stability contradiction of high-energy-density materials (HEDMs) is a long-standing puzzle in the field of chemistry and material science. Bridging the gap that exists between detonation performance of new HEDMs and their stability remains a formidable challenge. Achieving optimal balance between the two contradictory factors is of a significant demand for deep-well oil and gas drilling, space exploration, and other civil and defense applications. Herein, supercomputers and latest quantitative computational strategies were employed and high-throughput quantum calculations were conducted for 67 reported HEDMs. Based on statistical analysis of large amounts of physico-chemical data, in-crystal interspecies interactions were identified to be the one that provokes the performance-stability contradiction of HEDMs. To design new HEDMs with both good detonation performance and high stability, the proposed systematic and comprehensive strategies must be satisfied, which could promote the development of crystal engineering of HEDMs to an era of theory-guided rational design of materials.
机译:高能密度材料(HEDM)的性能稳定性矛盾是化学和材料科学领域的一个长期难题。弥合新型HEDM的爆炸性能与其稳定性之间的差距仍然是一个巨大的挑战。实现这两个矛盾因素之间的最佳平衡是对深井油气钻探,太空探索以及其他民防应用的巨大需求。本文中,采用了超级计算机和最新的定量计算策略,并对67种已报道的HEDM进行了高通量量子计算。基于对大量理化数据的统计分析,晶种间相互作用被认为是引起HEDM性能-稳定性矛盾的原因。为了设计兼具良好爆震性能和高稳定性的新型HEDM,必须满足所提出的系统和综合策略,这可以将HEDM的晶体工程发展推向理论指导的材料合理设计的时代。

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