首页> 外文期刊>Journal of Applied Polymer Science >Effect of hydrophobically modified extracted starch nanocrystal on the properties of LDPE/ thermoplastic starch (TPS)/PE‐g‐MA nanocomposite
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Effect of hydrophobically modified extracted starch nanocrystal on the properties of LDPE/ thermoplastic starch (TPS)/PE‐g‐MA nanocomposite

机译:疏水改性提取淀粉纳米晶对LDPE/热塑性淀粉(TPS)/PE-g-MA纳米复合材料性能的影响

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Abstract In the current study, the key role of incorporation of starch nanocrystals (SNC) and modified acetylated starch nanocrystals (ASNC) on mechanical, physical, and biological properties of low‐density polyethylene/thermoplastic starch/polyethylene‐grafted‐maleic anhydride (LDPE/TPS/PE‐g‐MA) blend was individually investigated. To achieve this, SNC was successfully extracted from waxy maize starch by chemical treatment utilizing acid hydrolysis. The results of solubility of the modified specimens showed that the hydrophilicity of ASNC was well reduced by dispersion enhancement in non‐polar solvents, which was also proved by increasing considerably the contact angle, after modification, 37.9° ± 3.5° to 59.9° ± 3.1°. It was noticed that the mechanical properties of the ASNC nanocomposites were significantly affected by the filler type and content. Furthermore, by adding 3.0 wt ASNC (3ASNC), the ultimate tensile strength of the nanocomposite was considerably enhanced from 9.0 ± 0.1 to 12.0 ± 0.3 MPa; it may be due to homogeneous dispersion of the ASNC. Moreover, the water absorption capacity was remarkably enhanced from 0.1 for the pure polymer, low‐density polyethylene (LDPE), to 1.9 for modified nanocomposite (3.0 wt ASNC) and 4.1 for unmodified nanocomposite (5 wt SNC). In addition, the degradation rate of 3ASNC nanocomposite was improved by 1 compared with LDPE. In conclusion, LDPE/TPS/PE‐g‐MA nanocomposite reinforced by ASNC shows excellent potential as a promising candidate for polyethylene packaging applications, thanks to the combination of biodegradability and superior mechanical properties.
机译:摘要 研究了淀粉纳米晶(SNC)和改性乙酰化淀粉纳米晶(ASNC)掺入对低密度聚乙烯/热塑性淀粉/聚乙烯接枝马来酸酐(LDPE/TPS/PE-g-MA)共混物力学、物理和生物学性能的关键作用。为此,利用酸水解的化学处理方法,成功地从糯玉米淀粉中提取了SNC。改性试样的溶解度结果表明,在非极性溶剂中,分散增强可以较好地降低ASNC的亲水性,改性后的接触角显著增加,从37.9°±3.5°增至59.9°±3.1°。结果表明,ASNC纳米复合材料的力学性能受填料类型和含量的影响显著。此外,通过添加3.0 wt% ASNC(3ASNC),纳米复合材料的极限拉伸强度从9.0 ± 0.1显著提高到12.0 ± 0.3 MPa;这可能是由于ASNC的均匀分散。此外,纯聚合物低密度聚乙烯(LDPE)的吸水能力显著提高,从0.1%提高到改性纳米复合材料(3.0 wt% ASNC)的1.9%和未改性纳米复合材料(5 wt% SNC)的4.1%。此外,与LDPE相比,3ASNC纳米复合材料的降解率提高了1%。综上所述,ASNC增强的LDPE/TPS/PE‐g-MA纳米复合材料具有优异的生物降解性和优异的力学性能,显示出优异的潜力,是聚乙烯包装应用的有前途的候选材料。

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