聚乙烯化物的电热效应从微不足道到巨大的
Yibo Zhang1, Zhiwei Ye1, Fukun Niu1
1State Key Laboratory of Silicate Materials for Architectures, and School of Materials Science and Engineering, Wuhan University of Technology, Wuhan, China.
Nature communications
|December 17, 2025
概括
聚乙烯化物 (PVDF) 薄膜的固相压力形成会产生微小的β晶体,从而产生巨大的电热效应 (ECE). 这一突破为高效的固态冷却技术提供了可扩展的途径.
科学领域:
- 材料科学 材料科学 材料科学
- 聚合物科学 聚合物科学
- 热力学是一种热力学.
背景情况:
- 聚乙烯化物 (PVDF) 由于其分子结构,通常具有较低的电热效应 (ECE).
- 现有的以PVDF为基础的高ECE的高聚合物是昂贵的,并且在狭窄的温度范围内工作.
研究的目的:
- 开发一种具有成本效益的方法来提高PVDF中的ECE.
- 调查固态压力成型 (SPF) 的潜力,以提高PVDF的冷却能力.
主要方法:
- 使用30MPa以下的固相压力成型 (SPF) 制备PVDF薄膜.
- 对PVDF薄膜进行微结构分析,观察晶体结构和颗粒大小.
- 电热效应 (ECE) 和温度窗口 (Tw) 的描述.
主要成果:
- 通过SPF处理的PVDF薄膜在25°C时表现出12.8K的巨大ECE.
- 实现了60°C的广泛工作温度窗口 (Tw).
- 增强的ECE归因于微小β晶体中的分子链定向和极性双极切换.
结论:
- 固相压力成型通过改变其晶体结构,显著增强了PVDF中的ECE.
- 这种方法为开发可扩展和高效的固态冷却设备提供了一个有希望的途径,使用随时可用的PVDF.
- 这些发现为先进的冷却技术的实际应用铺平了道路.
更多相关视频
相关概念视频
Effects of Temperature on Free Energy
27.9K
The spontaneity of a process depends upon the temperature of the system. Phase transitions, for example, will proceed spontaneously in one direction or the other depending upon the temperature of the substance in question. Likewise, some chemical reactions can also exhibit temperature-dependent spontaneities. To illustrate this concept, the equation relating free energy change to the enthalpy and entropy changes for the process is considered:
27.9K
Heating and Cooling Curves
26.4K
When a substance—isolated from its environment—is subjected to heat changes, corresponding changes in temperature and phase of the substance is observed; this is graphically represented by heating and cooling curves.
For instance, the addition of heat raises the temperature of a solid; the amount of heat absorbed depends on the heat capacity of the solid (q = mcsolidΔT). According to thermochemistry, the relation between the amount of heat absorbed or released by a substance, q, and its...
For instance, the addition of heat raises the temperature of a solid; the amount of heat absorbed depends on the heat capacity of the solid (q = mcsolidΔT). According to thermochemistry, the relation between the amount of heat absorbed or released by a substance, q, and its...
26.4K
Phase Transitions: Melting and Freezing
14.5K
Heating a crystalline solid increases the average energy of its atoms, molecules, or ions, and the solid gets hotter. At some point, the added energy becomes large enough to partially overcome the forces holding the molecules or ions of the solid in their fixed positions, and the solid begins the process of transitioning to the liquid state or melting. At this point, the temperature of the solid stops rising, despite the continual input of heat, and it remains constant until all of the solid is...
14.5K
Joule-Thomson Effect
8.9K
The Joule-Thomson effect, also known as the Joule-Kelvin effect, describes the temperature change of a fluid when it is forced through a valve or porous plug while keeping it in a thermally insulated environment. This experiment is called a throttling process. This is an important effect widely used in refrigeration and the liquefaction of gases.
This experiment forces high-pressure gas through a throttle valve or a porous plug to a lower-pressure region. The gas expands as it passes through to...
This experiment forces high-pressure gas through a throttle valve or a porous plug to a lower-pressure region. The gas expands as it passes through to...
8.9K
Calorimetry
4.2K
When objects at different temperatures are placed in contact with each other but isolated from everything else, they attain thermal equilibrium. A container that prevents heat transfer in or out is called a calorimeter, and the use of a calorimeter to make measurements is called calorimetry. Generally, these measurements involve heat or specific heat capacity. The term "calorimetry problem" is used for any problem where the specified objects are thermally isolated from their...
4.2K
Thermosensation
33.6K
Peripheral thermosensation is the perception of external temperature. A change in temperature (on the surface of the skin and other tissues) is detected by a family of temperature-sensitive ion channels called Transient Receptor Potential, or TRP, receptors. These receptors are located on free nerve endings. Those detecting cold temperatures are closer to the surface of the skin than the nerve endings detecting warmth. These thermoTRP channels, while temperature selective, have relatively...
33.6K


