Neu Jens, Nemes Coleen T, Regan Kevin P, Williams Michael R C, Schmuttenmaer Charles A
Department of Chemistry, Yale University, PO Box 208107, 225 Prospect St., New Haven, CT 06520-8107, USA.
Phys Chem Chem Phys. 2017 Dec 20;20(1):276-283. doi: 10.1039/c7cp05479c.
dl-Norvaline is a molecular crystal at room temperature and it undergoes a phase transition when cooled below 190 K. This phase transition is believed to be Martensitic, thus making it of particular interest for molecular machines. In this paper we investigate this phase transition by measuring its terahertz (THz) spectrum over a range of temperatures. Temperature-dependent THz time-domain spectroscopy (THz-TDS) measurements reveal that the transition temperature (T) is 190 K. The influence of nucleation seeds was analyzed by determining the T of molecular crystals with varying grain size. Grains of 5 μm or less result in a lower transition temperature (T = 180 K) compared to larger grains of 125-250 μm (T = 190 K). Additionally, we gain insight into the physical process of the phase transition via temperature-dependent THz-TDS spectra of doped and mixed molecular crystals. The addition of molecular dopants, which differ from dl-norvaline only at the end of the side chain which resides in the hydrophobic layers of the crystal, decreases T. This is consistent with a solid-solid phase transition in which the unit cell shifts along this hydrophobic layer, and it leads us to believe that the phase transition in dl-norvaline is Martensitic in nature.
DL-正缬氨酸在室温下是一种分子晶体,当冷却至190 K以下时会发生相变。这种相变被认为是马氏体相变,因此使其成为分子机器特别感兴趣的对象。在本文中,我们通过在一系列温度范围内测量其太赫兹(THz)光谱来研究这种相变。随温度变化的太赫兹时域光谱(THz-TDS)测量结果表明,转变温度(T)为190 K。通过确定不同晶粒尺寸的分子晶体的T来分析成核籽晶的影响。与125 - 250μm的较大晶粒(T = 190 K)相比,5μm或更小的晶粒导致较低的转变温度(T = 180 K)。此外,我们通过掺杂和混合分子晶体的随温度变化的THz-TDS光谱深入了解了相变的物理过程。仅在位于晶体疏水层中的侧链末端与DL-正缬氨酸不同的分子掺杂剂的添加会降低T。这与一种固-固相变一致,其中晶胞沿该疏水层移动,这使我们相信DL-正缬氨酸中的相变本质上是马氏体相变。