...
首页> 外文期刊>Physical chemistry chemical physics: PCCP >The low-temperature dynamics of recovered ice XII as studied by differential scanning calorimetry: a comparison with ice V
【24h】

The low-temperature dynamics of recovered ice XII as studied by differential scanning calorimetry: a comparison with ice V

机译:差示扫描量热法研究回收冰XII的低温动力学:与冰V的比较

获取原文
获取原文并翻译 | 示例

摘要

Samples of ice XII made on isobaric heating of high-density amorphous ice (HDA) were recovered at 77 K and characterized by X-ray diffraction. Studies by differential scanning calorimetry (DSC) revealed, in addition to the intense exotherm from the ice XII --> cubic ice transition, on heating at 30 K min(-1) a reversible endothermic step with an onset temperature (T-onset) of 130 +/- 1 K, an increase in heat capacity (DeltaC(p)) of 1.9 +/- 0.2 J K-1 mol(-1), and a width of 10 +/- 1 K. The effects of the annealing temperature (T-anneal) for a fixed annealing time (t(anneal)), and of t(anneal) for a fixed T-anneal on the enthalpy and entropy relaxations and recovery have been ascertained, and these are phenomenologically similar to those of a glass. Ice XII samples made at 77 K on pressurizing of hexagonal ice via HDA show an additional thermal effect, namely an irreversible exotherm centered at 133 (125) K on heating at 30 (10) K min(-1), which is attributed to stress/strain release. For comparison, recovered ice V samples were studied by DSC in the same manner. These also show, in addition to the exotherm from the ice V --> cubic ice transition, on first heating at 30 K min(-1) a reversible endothermic step with Tonset of 130 +/- 1 K, DeltaC(p) of 1.7 +/- 0.2 J K-1 mol(-1), and width of 20 +/- 1 K, and annealing effects similar to those of ice XII. For ice V the existence of a temperature-dependent equilibrium between proton order and disorder, with proton order increasing with decreasing temperature, had been ascertained by Lobban et al. (J. Chem. Phys., 2000, 112, 7169). We thus interpret the endothermic step in unannealed ice V to kinetic unfreezing of proton order-disorder, the equilibrium line being attained by proton order --> disorder transition, and the effects of annealing to enthalpy and entropy loss during annealing by approaching the proton order disorder equilibrium, and on their subsequent recovery on reheating, in line with Handa et al. ( J. Phys. 1987, 48, C1- 435). The endothermic DSC features of ice XII are interpreted in the same manner, by relaxation of the frozen-in proton order-disorder towards equilibrium via proton order! disorder transition. For ice XII ( ice V) the maximal value of recovered configurational entropy corresponds to 0.17 J K-1 mol(-1) (0.22 J K-1 mol(-1)) after annealing at 115 K for 120 min (111 K for 90 min) which is 5.0% (6.5%) of the maximal value of 3.37 J K-1 mol(-1) for complete proton order --> disorder transition. We further report the DSC features of low-density amorphous ice recorded on heating at 30 K min(-1), with T-onset of an endothermic step at 134 +/- 2 K DeltaC(p) of 0.7 +/- 0.1 J K-1 mol(-1), and we show the similarities of this endothermic feature to those of ice XII. [References: 52]
机译:在77 K下回收通过等密度加热高密度非晶冰(HDA)制成的冰XII样品,并通过X射线衍射对其进行表征。通过差示扫描量热法(DSC)进行的研究表明,除了冰XII的强烈放热->立方冰转变之外,在30 K min(-1)加热时,可逆吸热步骤的起始温度为(T起始) 130 +/- 1 K,热容(DeltaC(p))增加1.9 +/- 0.2 J K-1 mol(-1),宽度增加10 +/- 1K。固定退火时间(t(退火))的退火温度(T-退火),以及固定T退火的t(退火)的焓和熵的弛豫和恢复已经确定,这些在现象学上类似于那些一杯。通过HDA对六角形冰加压时在77 K下制得的XII冰样品显示出额外的热效应,即在30(10)K min(-1)加热下以133(125)K为中心的不可逆放热。 /应变释放。为了比较,通过DSC以相同方式研究了回收的冰V样品。这些结果还表明,除了冰V→立方冰转变的放热外,首次以30 K min(-1)加热时,Tonset为130 +/- 1 K的可逆吸热步骤,DeltaC(p)为1.7 +/- 0.2 J K-1 mol(-1),宽度为20 +/- 1 K,退火效果与XII冰相似。对于冰V,Lobban等人已经确定了质子有序和无序之间存在温度相关的平衡,并且质子有序随着温度的降低而增加。 (J.Chem.Phys。,2000,112,7169)。因此,我们将未退火的冰V中的吸热步骤解释为质子有序无序的动力学解冻,通过质子有序获得平衡线->无序转变,以及通过接近质子有序退火对退火过程中焓和熵损失的影响。与Handa等人的研究一致。 (J.Phys.1987,48,C1-435)。冰XII的吸热DSC特征以相同的方式解释,通过使质子有序的冻结质子有序-无序趋向平衡而放松!无序过渡。对于冰XII(冰V),在115 K退火120分钟(111 K退火)后,恢复的构型熵的最大值对应于0.17 J K-1 mol(-1)(0.22 J K-1 mol(-1))。 90分钟),这是完整质子顺序->无序过渡的3.37 J K-1 mol(-1)最大值的5.0%(6.5%)。我们进一步报告了在30 K min(-1)加热下记录的低密度无定形冰的DSC特征,在134 +/- 2 K的吸热台阶的T发作DeltaC(p)为0.7 +/- 0.1 J K-1 mol(-1),我们展示了该吸热特征与冰XII的相似性。 [参考:52]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号