Robbins Andrew B, Drakopoulos Stavros X, Martin-Fabiani Ignacio, Ronca Sara, Minnich Austin J
Division of Engineering and Applied Science, California Institute of Technology, Pasadena, CA 91125.
Department of Materials, Loughborough University, Loughborough LE11 3TU, United Kingdom.
Proc Natl Acad Sci U S A. 2019 Aug 27;116(35):17163-17168. doi: 10.1073/pnas.1905492116. Epub 2019 Aug 12.
Thermally conductive polymer crystals are of both fundamental and practical interest for their high thermal conductivity that exceeds that of many metals. In particular, polyethylene fibers and oriented films with uniaxial thermal conductivity exceeding 50 [Formula: see text] have been reported recently, stimulating interest into the underlying microscopic thermal transport processes. While ab initio calculations have provided insight into microscopic phonon properties for perfect crystals, such properties of actual samples have remained experimentally inaccessible. Here, we report the direct observation of thermal phonons with mean free paths up to 200 nm in semicrystalline polyethylene films using transient grating spectroscopy. Many of the mean free paths substantially exceed the crystalline domain sizes measured using small-angle X-ray scattering, indicating that thermal phonons propagate ballistically within and across the nanocrystalline domains; those transmitting across domain boundaries contribute nearly one-third of the thermal conductivity. Our work provides a direct determination of thermal phonon propagation lengths in molecular solids, yielding insights into the microscopic origins of their high thermal conductivity.
导热聚合物晶体因其高导热率而具有基础研究价值和实际应用价值,其导热率超过了许多金属。特别是,最近有报道称聚乙烯纤维和取向膜的单轴热导率超过50[公式:见正文],这激发了人们对潜在微观热传输过程的兴趣。虽然从头算计算已经深入了解了完美晶体的微观声子特性,但实际样品的此类特性在实验中仍无法获得。在这里,我们报告了使用瞬态光栅光谱法在半结晶聚乙烯薄膜中直接观察到平均自由程高达200 nm的热声子。许多平均自由程大大超过了使用小角X射线散射测量的晶畴尺寸,这表明热声子在纳米晶畴内和跨纳米晶畴进行弹道传播;那些穿过畴界的热声子对热导率的贡献近三分之一。我们的工作直接测定了分子固体中热声子的传播长度,深入了解了其高导热率的微观起源。