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Polyamorphism of D-mannitol

机译:D-甘露醇的多晶晶

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Polymorphism is common in the crystalline state but rare and even controversial in the liquid or glassy state. Among molecular substances, only two are major contenders for materials that exhibit the phenomenon, including the famous case of water with its low-and high-density amorphous (LDA and HDA) ices. We report that the same phenomenon exists in another extensively hydrogen-bonded system, D-mannitol. Under the ambient pressure, D-mannitol's supercooled liquid spontaneously transforms to another amorphous phase of lower energy, larger volume (2.1%), and stronger hydrogen bonds. This transition is similar to water's HDA to LDA transition and shows the same anomaly of heat release coupled with volume expansion. In both systems, polyamorphism appears to arise from the competing demands of hydrogen bonds (loose packing) and van derWaals forces (close packing). D-mannitol is expected to play an important role as a new system for investigating polyamorphic transitions and suggests a more general occurrence of the phenomenon than the current literature indicates in systems with extensive hydrogen bonds (network bonds in general). Published by AIP Publishing.
机译:多态性在结晶状态中是常见的,但在液体或玻璃状状态下罕见甚至有争议。在分子物质中,只有两个是表现出现象的材料的主要竞争者,包括具有其低密度无定形(LDA和HDA)冰的着名水的案例。我们报告说,在另一个广泛的氢键合系统,D-甘露醇中存在相同的现象。在环境压力下,D-甘露醇的过冷液体自发地转化为较低能量,较大体积(2.1%)和更强的氢键的另一种非晶相。这种转变与水的HDA类似于LDA过渡,并显示出与体积膨胀相同的热释放异常的异常。在两个系统中,多表晶形来自氢键(松动包装)和范德尔武器力(关闭包装)的竞争需求。 D-甘露醇预计将成为调查多素转变的新系统的重要作用,并表明比目前文献在具有广泛的氢键(一般网络键)的系统中的现象更通用的情况。通过AIP发布发布。

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