私密直播全婐app免费大渔直播,国产av成人无码免费视频,男女同房做爰全过程高潮,国产精品自产拍在线观看

相關(guān)鏈接
聯(lián)系方式
  • 通信地址:浙江理工大學(xué),材料與紡織學(xué)院,先進(jìn)紡織材料與制備技術(shù)教育部重點實驗室
  • 郵編:310018
  • 電話:0571-86843071
  • 傳真:0571-86843082
  • Email:342099315@qq.com
當(dāng)前位置:> 首頁 > 論文著作 > 正文
Comprehensive Insight into Degradation Mechanism of Green Biopolyester Nanocomposites Using Functionalized Cellulose Nanocrystals
作者:Jiaying Zhu, Yuxiang Chen, Hou-Yong Yu, Ying Guanb, Ying Zhou, Xiaogang Yang
關(guān)鍵字:Cellulose nanocrystals, PHBV, Nanocomposites, Thermal properties, In vitro degradation
論文來源:期刊
發(fā)表時間:2019年

Cellulose nanoparticles (CNPs) have been widely reported to improve the crystallization rate, mechanical and thermal properties as well as degradation behavior of poly (3 hydroxybutyrate-co-3-hydroxyvalerate) (PHBV). Unfortunately, few studies have focused on the relationship between surface functional groups of CNPs and hydrogen bond interactions on the degradation rate and the mechanistic understanding of PHBV nanocomposites. To demonstrate degradation pathways, three types of CNPs with different amounts of surface hydroxyl groups were designed and then incorporated into PHBV to control the thermal stability, mechanical properties, and especially various degradation behavior by modulating the hydrogen bonding interactions with PHBV, achieving modulated degradation rate of nanocomposites. Furthermore, possible mechanisms describing the thermal, in vitro hydrolytic, and soil degradation of PHBV nanocomposites with various CNPs were proposed. In particular, PHBV nanocomposites reinforced by cellulose nanocrystal citrates (CN-C) with more hydroxyl groups exhibited better properties and degradation behavior than cellulose nanocrystal formates (CN-F) and cellulose nanocrystals (CN). For the possible thermal degradation mechanisms, interfacial hydrogen bond interactions hindered the formation of the six-membered ester ring on PHBV, which improved the thermal stability of the nanocomposites during the degradation process. The rigid hydrogen-bonded networks between the highly crystalline CNPs and PHBV acted as barrier layers, protecting the ester groups on PHBV from being attacked by hydronium ion from the phosphate buffer saline (PBS) solution. The microorganisms in the soil degrade and digest amorphous domains during the soil degradation process. With modulated degradation rates, high-performance and green nanocomposites could be suitable for biomedical and packaging materials.


主站蜘蛛池模板: 潮州市| 平果县| 牙克石市| 浦县| 潮州市| 临朐县| 云浮市| 泰州市| 和顺县| 山丹县| 宣城市| 洪泽县| 汉沽区| 灵山县| 台湾省| 兴山县| 新巴尔虎左旗| 资溪县| 巴林右旗| 南江县| 贵定县| 张家口市| 彭州市| 探索| 竹山县| 花莲市| 清流县| 东兴市| 六盘水市| 桓仁| 扎鲁特旗| 建德市| 汉寿县| 陆良县| 旬阳县| 油尖旺区| 江都市| 利川市| 榕江县| 监利县| 仁怀市|