...
首页> 外文期刊>Science Advances >Anisotropic, lightweight, strong, and super thermally insulating nanowood with naturally aligned nanocellulose
【24h】

Anisotropic, lightweight, strong, and super thermally insulating nanowood with naturally aligned nanocellulose

机译:具有天然排列的纳米纤维素的各向异性,轻质,坚固和超绝热的纳米木材

获取原文
   

获取外文期刊封面封底 >>

       

摘要

There has been a growing interest in thermal management materials due to the prevailing energy challenges and unfulfilled needs for thermal insulation applications. We demonstrate the exceptional thermal management capabilities of a large-scale, hierarchal alignment of cellulose nanofibrils directly fabricated from wood, hereafter referred to as nanowood. Nanowood exhibits anisotropic thermal properties with an extremely low thermal conductivity of 0.03 W/m·K in the transverse direction (perpendicular to the nanofibrils) and approximately two times higher thermal conductivity of 0.06 W/m·K in the axial direction due to the hierarchically aligned nanofibrils within the highly porous backbone. The anisotropy of the thermal conductivity enables efficient thermal dissipation along the axial direction, thereby preventing local overheating on the illuminated side while yielding improved thermal insulation along the backside that cannot be obtained with isotropic thermal insulators. The nanowood also shows a low emissivity of <5% over the solar spectrum with the ability to effectively reflect solar thermal energy. Moreover, the nanowood is lightweight yet strong, owing to the effective bonding between the aligned cellulose nanofibrils with a high compressive strength of 13 MPa in the axial direction and 20 MPa in the transverse direction at 75% strain, which exceeds other thermal insulation materials, such as silica and polymer aerogels, Styrofoam, and wool. The excellent thermal management, abundance, biodegradability, high mechanical strength, low mass density, and manufacturing scalability of the nanowood make this material highly attractive for practical thermal insulation applications.
机译:由于普遍存在的能源挑战和对隔热应用的需求未得到满足,对热管理材料的兴趣与日俱增。我们证明了直接由木材(以下称为纳米木材)制成的纤维素纳米原纤维的大规模,分层排列所具有的出色的热管理功能。纳米木材表现出各向异性的热性能,在横向(垂直于纳米原纤维)上的导热系数极低,为0.03 W / m·K,并且由于层次结构,在轴向上的导热系数约为0.06 W / m·K的两倍高。在高度多孔的骨架内排列纳米纤维。导热率的各向异性使得能够沿轴向有效散热,从而防止了受照侧的局部过热,同时沿背面产生了各向同性绝热体无法获得的改善的绝热性能。纳米木还具有在太阳光谱范围内低于5%的低发射率,并具有有效反射太阳热能的能力。此外,纳米木材重量轻但强度高,这是因为在75%应变下,排列的纤维素纳米原纤维之间的有效结合强度高,轴向抗压强度为13 MPa,横向抗压强度为20 MPa,超过了其他隔热材料,例如二氧化硅和聚合物气凝胶,聚苯乙烯泡沫塑料和羊毛。纳米木材具有出色的热管理,丰度,生物降解性,高机械强度,低质量密度和可制造性,使这种材料在实际的隔热应用中极具吸引力。

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