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Clear transparent cellulose nanopaper prepared from a concentrated dispersion by high-humidity drying

机译:由浓缩分散液经高湿干燥制得的透明透明纤维素纳米纸

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摘要

Optically transparent cellulose nanopaper is a promising candidate for flexible device substrates because of its light weight, surface smoothness, and high dimensional stability with respect to temperature. Conventionally, clear transparent nanopaper has been fabricated from cellulose nanofiber dispersions with quite low concentration: less than 0.5 wt%. However, this diluteness leads to several problems, such as huge energy consumption and long operation time for drying. Therefore, nanopaper should be fabricated from a concentrated dispersion to mitigate these problems. In this study, transparent nanopaper was fabricated from cellulose nanofiber dispersions with various concentrations (0.24–1.81 wt%). Optical experiments revealed that the haze of the transparent nanopaper increased monotonically with cellulose nanofiber dispersion concentration, when the cellulose nanofiber dispersion was prepared from holocellulose pulp and conventional over-drying was applied. Based on our insight into the origin of this increase in the haze of transparent nanopaper, we developed high-humidity drying, which successfully produced clear transparent nanopaper from a concentrated dispersion without prolonged drying time.
机译:光学透明的纤维素纳米纸因其重量轻,表面光滑和相对于温度的高尺寸稳定性而成为柔性器件基板的有希望的候选者。常规地,透明的纳米纸是由纤维素纳米纤维分散体制成的,该分散体具有非常低的浓度:小于0.5 wt%。然而,这种稀释度导致一些问题,例如巨大的能量消耗和干燥操作时间长。因此,纳米纸应由浓缩分散体制成以减轻这些问题。在这项研究中,透明纳米纸是由具有不同浓度(0.24–1.81 wt%)的纤维素纳米纤维分散体制成的。光学实验表明,当用全纤维素纸浆制备纤维素纳米纤维分散液并进行常规的过度干燥时,透明纳米纸的雾度随纤维素纳米纤维分散液浓度单调增加。基于我们对透明纳米纸雾度增加的根源的了解,我们开发了高湿度干燥技术,该技术可以通过浓缩分散体成功生产出透明的透明纳米纸,而无需延长干燥时间。

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