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首页> 外文期刊>ACS applied materials & interfaces >Thermal Superinsulating Materials Made from Nanofibrillated Cellulose-Stabilized Pickering Emulsions
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Thermal Superinsulating Materials Made from Nanofibrillated Cellulose-Stabilized Pickering Emulsions

机译:由纳米纤化纤维素稳定的皮克林乳液制成的热超真材料

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Thermal superinsulating properties of biobased materials are investigated via the structuration of aerogels through a biphasic system. Highly stable Pickering emulsions are produced using TEMPO-oxidized cellulose nanofibrils (NFC) adsorbed at an oil/water interface. NFCs form an entangled system of clusters of droplets that lead to excellent mechanical properties. The emulsions produced are strong gels that are further used as template to form aerogels. The freeze-dried emulsions result in porous bioaerogels with extremely low densities (0.012-0.030 g/cm(3)). We describe a hierarchical morphology with three levels of porosity: an alveolar organization of larger macropores due to ice crystals, spherical smaller macropores induced by the emulsion template, and mesoporous domains localized at the pore walls level. The low-density bioaerogels have compression moduli as high as 1.5 MPa and can be deformed up to 60% strain before the structure collapse. NFC aerogels have thermal superinsulating properties; the lowest thermal conductivity obtained is 0.018 W/(m.K). In the context of the development of sustainable materials, we demonstrate that NFC-stabilized Pickering emulsions are excellent templates to produce fully biobased, mechanically strong thermal superinsulating materials.
机译:通过双相系统通过气凝胶结构来研究生物化材料的热超真。使用吸附在油/水界面上的速度氧化纤维素纳米纤维(NFC)产生高度稳定的油漆乳液。 NFCS形成一个卵形簇的缠结系统,导致优异的机械性能。产生的乳液是强凝胶,其进一步用作模板以形成气凝胶。冷冻干燥的乳液导致具有极低密度的多孔生物凝胶(0.012-0.030g / cm(3))。我们描述了三种孔隙度的分层形态:由于冰晶晶体,由乳液模板诱导的球形较小的大孔,并在孔壁水平上局部诱导的球形较小的大孔组织。低密度生物凝胶具有高达1.5MPa的压缩模量,并且在结构塌陷之前可以使高达60%的菌株变形。 NFC Aerogels具有热超真结构;获得的最低导热率为0.018 w /(m.k)。在开发可持续材料的背景下,我们证明了NFC稳定的皮克林乳液是生产完全生物化的机械强的热超真化材料的优异模板。

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