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首页> 外文期刊>Journal of Applied Polymer Science >Design of electrical conductive poly(lactic acid)/carbon black composites by induced particle aggregation
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Design of electrical conductive poly(lactic acid)/carbon black composites by induced particle aggregation

机译:诱导颗粒聚集的导电聚(乳酸)/炭黑复合材料设计

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The electrical conductivity of ternary composites composed of a biopolymer blend with conductive particles (carbon black [CB]) is induced by the control of particle dispersion in the dispersed phase. If the CB particles have higher chemical affinity for the secondary phase (poly(caprolactone) [PCL]]) than the matrix (poly(lactic acid) [PLA]), especially as the concentration of the PCL phase decreases significantly to 4 wt%, the PCL phase induces the aggregation of CB particles beyond the selective localization, resulting in a shift of the particle percolation threshold to a lower concentration of particles (2.44 wt% CB). Moreover, the mixing ratio between the CB and the PCL phase significantly affects the formation of percolation of particles. When the mixing ratio of CB to PCL is equivalent (1:1), the ternary composite shows high electrical DC conductivity above 1 S/m with 10 wt% CB. The addition of a small amount of PCL induces the formation of particle aggregates with a high aspect ratio, providing more electron transfer pathways due to the multiple points of contact between the particle aggregates (power law scaling exponent of the composites similar to 2.14). Meanwhile, a binary composite (PLA/CB) never reaches high electrical conductivity of 1 S/m and even requires a greater concentration of CB (13 wt% CB for 10(-3) S/m) to accomplish electron transfer because of the small aspect ratio of randomly dispersed particle aggregates (power law scaling exponent similar to 3.20).
机译:通过控制分散相中的颗粒分散体诱导由导电颗粒(炭黑[Cb])的生物聚合物共混物组成的三元复合材料的导电性。如果Cb颗粒对二次相(​​聚(己内酯)[PCL]]的化学亲和力高于基质(聚(乳酸)[PLA]),特别是由于PCL相的浓度显着降低至4wt% ,PCL相诱导超出选择定位的Cb颗粒的聚集,导致颗粒渗透阈值的偏移到较低浓度的颗粒(2.44wt%CB)。此外,Cb和PCL相之间的混合比显着影响颗粒的渗滤形成。当Cb对PCL的混合比率是等同物(1:1)时,三元复合材料显示出高于1 s / m的高电直流电导率,10wt%Cb。添加少量PCL诱导具有高纵横比的颗粒聚集体的形成,而不是由于颗粒聚集体之间的多个接触点(电力法缩放指数与2.14类似的复合材料的功率法缩放指数之间的多个接触点提供了更多的电子转移途径。同时,二元复合物(PLA / CB)从未达到1 s / m的高电导率,甚至需要更大的Cb(13wt%CB,10(-3)S / M)以实现电子转移随机分散的颗粒聚集体的小宽高比(电力法缩放指数与3.20类似)。

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