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相关概念视频

Molecular and Ionic Solids02:54

Molecular and Ionic Solids

17.9K
Crystalline solids are divided into four types: molecular, ionic, metallic, and covalent network based on the type of constituent units and their interparticle interactions.
Molecular Solids
Molecular crystalline solids, such as ice, sucrose (table sugar), and iodine, are solids that are composed of neutral molecules as their constituent units. These molecules are held together by weak intermolecular forces such as London dispersion forces, dipole-dipole interactions, or hydrogen bonds, which...
17.9K
Atomic Spectroscopy: Effects of Temperature01:27

Atomic Spectroscopy: Effects of Temperature

477
Atomization, converting samples into gas-phase atoms and ions, is essential for atomic spectroscopy. The flame temperature required for atomization affects the efficiency of the atomic spectroscopic methods by increasing the atomization efficiency and the relative population of the excited and ground states.
At thermal equilibrium, the relative populations of excited and ground state atoms can be estimated using the Maxwell–Boltzmann distribution. For example, an increase in temperature...
477
Raman Spectroscopy: Overview01:20

Raman Spectroscopy: Overview

632
The underlying principle of Raman spectroscopy is based on the interaction between light and matter, specifically molecules' inelastic scattering of photons. When a monochromatic beam of light, typically from a laser source, interacts with a sample, most scattered light has the same frequency as the incident light. This is known as Rayleigh scattering.
However, a small fraction of the scattered light exhibits a frequency shift due to the exchange of energy between the incident photons and...
632

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相关实验视频

Updated: Sep 19, 2025

Chemical Synthesis of Porous Barium Titanate Thin Film and Thermal Stabilization of Ferroelectric Phase by Porosity-Induced Strain
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Chemical Synthesis of Porous Barium Titanate Thin Film and Thermal Stabilization of Ferroelectric Phase by Porosity-Induced Strain

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在现场高温拉曼光谱和模拟以关联结构演变与二元酸系统中的粘度.

Meiqin Sheng1, Jinglin You1, Xiang Xia1

  • 1State Key Laboratory of Advanced Special Steel & Shanghai Key Laboratory of Advanced Ferrometallurgy & School of Materials Science and Engineering, Shanghai University, Shanghai 200444, China.

Analytical chemistry
|June 2, 2025
PubMed
概括

这项研究揭示了化酸结构如何随着成分和温度而变化. 较高的温度和氧化含量导致结构更简单,融粘度降低.

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High-Contrast and Fast Photorheological Switching of a Twist-Bend Nematic Liquid Crystal
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Orientational Transition in a Liquid Crystal Triggered by the Thermodynamic Growth of Interfacial Wetting Sheets
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科学领域:

  • 材料科学 材料科学 材料科学
  • 物理化学 物理化学
  • 地质化学 地质化学

背景情况:

  • 了解化酸酸的结构对于控制它们的特性至关重要.
  • 之前的研究已经探索了类似的系统,但缺乏K2O·nTiO2融中的物种分布的详细定量分析.

研究的目的:

  • 量化确定氧物种在化K2O·nTiO2中的分布 (n = 0.5,1,2,3,4,6).
  • 为了研究融化结构,温度和粘度之间的相关性.
  • 阐明K2O含量在修改泰坦酸融体结构中的作用.

主要方法:

  • 在现场使用高温拉曼光谱来分析样.
  • 量子化学 (QC) 的初始计算被用来建模氧集群.
  • 沃伊格特函数解卷用于光谱数据的定量分析.

主要成果:

  • 高n (≥4) 的融主要含有[TiO4]和[TiO5]物种,少量[TiO6]八面体.
  • 随着K2O含量增加 (n < 4),[TiO4]四面体主导了融化结构.
  • 融化粘度随着温度和K2O含量增加而降低.

结论:

  • 化K2O·nTiO2的结构演变强烈依赖于摩尔比 n.
  • 在融中的物种化与其宏观性质粘度之间存在明显的关系.
  • 这项研究为基于酸盐的融材料的结构性质关系提供了基本的见解.