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使用三氟甲磺酸铝从己内酯与纤维素和无机填料聚合并直接模塑而成的可生物降解聚(ε-己内酯)复合材料的生物基含量。

Biobased contents of biodegradable poly(epsilon-caprolactone) composites polymerized and directly molded using aluminium triflate from caprolactone with cellulose and inorganic filler.

作者信息

Kunioka Masao, Inuzuka Yoshifumi, Ninomiya Fumi, Funabashi Masahiro

机构信息

National Institute of Advanced Industrial Science and Technology (AIST), Higashi 1-1-1, Tsukuba, Ibaraki 305-8565, Japan.

出版信息

Macromol Biosci. 2006 Jul 14;6(7):517-23. doi: 10.1002/mabi.200600037.

Abstract

Poly(epsilon-caprolactone) (PCL) composite samples were prepared by polymerization and direct molding. The starting compound was epsilon-caprolactone monomer liquid combined with cellulose and inorganic fillers, using aluminium triflate as a catalyst at 80 degrees C, for 6 or 24 h. Cylinder-shaped PCL composite samples with a homogeneously dispersed cellulose filler were prepared with (-)M(n) = 4 600 ((-)M(w)/(-)M(n) = 2.9). The mechanical properties of the PCL composite samples were studied using compression test methods. The strength of a PCL composite with 50 wt.-% cellulose filler (10.8 MPa) was found to be lower than the PCL sample without fillers (19.2 MPa). The biobased content of the PCL composite with 50 wt.-% cellulose filler (51.67%) measured using accelerated mass spectrometry (AMS) was slightly higher than the carbon ratio of cellulose in the starting powder samples (41.3 mol-%). The biobased content of the polymer composite powders by AMS was found not to be affected by the presence of inorganic fillers, such as talc. The rate and extent of biodegradation, caused by Amano Lipase PS, of the PCL composite sample with cellulose filler (40% degradation in 4 d) was the same as that of a PCL sample without the cellulose filler.

摘要

聚(ε-己内酯)(PCL)复合样品通过聚合和直接成型制备。起始化合物是ε-己内酯单体液体与纤维素和无机填料的混合物,使用三氟甲磺酸铝作为催化剂,在80℃下反应6或24小时。制备了具有均匀分散的纤维素填料的圆柱形PCL复合样品,其(-)M(n)=4600((-)M(w)/(-)M(n)=2.9)。使用压缩测试方法研究了PCL复合样品的机械性能。发现含有50 wt.-%纤维素填料的PCL复合材料的强度(10.8 MPa)低于无填料的PCL样品(19.2 MPa)。使用加速质谱法(AMS)测量的含有50 wt.-%纤维素填料的PCL复合材料的生物基含量(51.67%)略高于起始粉末样品中纤维素的碳比(41.3 mol-%)。发现通过AMS测量的聚合物复合粉末的生物基含量不受滑石等无机填料存在的影响。由天野脂肪酶PS引起的含纤维素填料的PCL复合样品的生物降解速率和程度(4天内降解40%)与无纤维素填料的PCL样品相同。

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