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Tunable Mechanical Response from a Crystal Undergoing Topochemical Dimerization: Instant Explosion at a Faster Rate and Chemical Storage of a Harvestable Explosion at a Slower Rate

机译:从接受Topochemical二聚化的晶体的可调谐机械响应:以较慢的速率为更快的速率和可收购爆炸的速率和化学储存的即时爆炸

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摘要

Strain developed in crystals in response to stimuli causes mechanical response. Methods to tune such mechanical response is important for practical applications. Crystals of a monomer having azide and alkyne units pre-organized in a ready-to-react orientation, undergo thermal topochemical dimerization and show rate-dependent mechanical response. When the reaction rate is fast, the crystals explode violently. When the reaction rate is slow, the crystals absorb water from the surroundings contemporaneously with the reaction to form the dimer-hydrate in a single-crystal-to-single-crystal (SCSC) manner. Crystals of the dimer-hydrate upon dehydration also undergo explosion. Thus, at slow reaction rate, the strain gets stored in crystals by hydration and the explosion can be harvested, at will, by dehydration. Use of this rate-dependent explosion in the automatic activation of a remedial electrical circuit in case of a sudden rise in temperature has been demonstrated.
机译:响应于刺激而在晶体中产生的菌株会导致机械反应。 调整这种机械响应的方法对于实际应用很重要。 具有叠氮化物和炔烃单元的单体的晶体,其在即用反应取向中预先组织,经历热TOOCHEMICAL二聚化并显示速率依赖性机械反应。 当反应速率快速时,晶体剧烈爆炸。 当反应速率缓慢时,晶体同时吸收来自周围环境的水,反应以单晶 - 单晶(SCSC)方式形成二聚体水合物。 脱水后二聚体水合物的晶体也经历了爆炸。 因此,在缓慢的反应速率下,通过水合储存菌株并通过脱水将爆炸物储存。 在对温度突然上升的情况下,使用这种速率依赖性爆炸在改造电路的自动激活中。

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