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Photoregulative phase change biomaterials showing thermodynamic and mchanical stabilities

机译:Photoregulative相变生物材料热力学和mchanical稳定性

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摘要

Azobenzenes are great photochromic molecules for switching the physical properties of various materials via trans–cis isomerization. However, the UV light resulted cis-azobenzene is metastable and thermodynamically gets back to trans-azobenzene after ceasing UV irradiation, which causes an unwanted property change of azobenzene-containing materials. Additionally, thermal and mechanical conditions would accelerate this process dramatically. In this present work, a new type of azobenzene-containing surfactant is designed for the fabrication of photoresponsive phase change biomaterials. With a “locked” cis-azobenzene conformation, the resulting biomaterials could maintain their disordered state after ceasing UV light, which exhibit great resistance to thermal and piezo conditions. Interestingly, the “locked” cis-azobenzene could be unlocked by Vis light in high efficiency, which opens a new way for the design of phase change materials only responding to light. By showing stable cis-azobenzene maintained physical state, the newly fabricated biomaterials provide new potential for the construction of advanced materials, like self-healing materials, with less use of long time UV irradiation for maintaining their disordered states.
机译:偶氮苯光致变色分子是至关重要的切换不同的物理性质通过trans-cis异构化材料。紫外线是cis-azobenzene热力学亚稳和回来trans-azobenzene停止紫外线照射后,会导致一个不必要的属性改变的吗azobenzene-containing材料。热能和机械条件大大加速这一过程。现在的工作,一种新型的azobenzene-containing表面活性剂是设计制造的光敏生物材料的相变。“锁定”cis-azobenzene构象,产生的生物材料可以保持他们无序状态停止紫外线后,表现出巨大的热阻力和压电条件。可以解锁cis-azobenzene Vis光效率高,开辟了新的途径相变材料的设计只回应光。保持身体状态,新制作的生物材料提供新的可能建设先进的材料,像自修复材料,用更少的使用很长时间维持他们的时间紫外线照射无序状态。

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