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Transparent sulfur-containing thermoplastic polyurethanes with polyether and polycarbonate soft segments

机译:含透明硫的热塑性聚氨酯,聚醚和聚碳酸酯软段

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New thermoplastic polyether- and polycarbonate-based segmented polyurethanes were synthesized by a catalyzed one-step melt polyaddition from diphenyl sulfide-derivative diol, i.e., 2,2'-[sulfanediylbis(benzene-1,4-diyloxy)]diethanol as a nonconventional chain extender, 1,1'-methanediylbis(4-isocyanatocyclohexane), and 40, 50, and 60 mol% poly(hexane-1,6-diyl carbonate) diol (PHCD) of or poly(oxytetramethylene) diol (PTMO) of as soft segments. The structures and thermal properties of the polymers were examined by FTIR, elemental analysis, differential scanning calorimetry, thermogravimetry (TG), and TG-FTIR. Moreover, their Shore A/D hardness, tensile, physicochemical, adhesive, and optical properties were determined. The obtained colorless, transparent, amorphous materials exhibited elastomeric or plastic properties. The PTMO-based polymers showed lower glass-transition temperatures than those based on PHCD (from -29 to 5 A degrees C vs. from 11 to 43 A degrees C) as well as a higher degree of microphase separation. On the other hand, the polymers with the polycarbonate soft segments revealed better transparency (transmittance at 800 nm: 84-89% vs. 75-82%), higher tensile strength (up to 48.6 MPa vs. up to 28.3 MPa), and hardness in comparison with those with the polyether soft segments. The polymers decomposed in two (in helium) or three (in air) stages and possessed a relatively good thermal stability. Their temperatures of 1% mass loss were contained within the range of 255-274 A degrees C. In inert atmosphere, the values shown by polymers from PTMO were higher than those from PHCD, whereas in oxidative atmosphere, the situation was reversed. The newly synthesized sulfur-containing polymers showed a higher refractive index and adhesive strength to copper than analogous polymers based on butane-1,4-diol as a chain extender.
机译:通过由二苯基硫化物 - 衍生物二醇,即2,2' - [苯二亚胺(苯-1,4-亚氧基)二乙醇作为非转化,通过催化的一步熔融聚酰胺合成新的热塑性聚醚和聚碳酸酯的分段聚氨酯。链增量剂,1,1'-甲基二烷基甲基(4-异氰酸盐己烷)和40,50和60摩尔%聚(己烷-1,6-二碳酸酯)二醇(PHCD)的或聚(氧二甲基)二醇(PTMO)作为软细分。通过FTIR,元素分析,差示扫描量热法,热重率(TG)和TG-FTIR来检查聚合物的结构和热性质。此外,确定它们的肖氏A / D硬度,拉伸,物理化学,粘合剂和光学性质。得到的无色,透明,无定形材料表现出弹性体或塑料性质。基于PTMO的聚合物显示比基于PHCD的玻璃化转变温度较低(从-29-5℃,从11至43℃)以及更高程度的微单分离。另一方面,具有聚碳酸酯软段的聚合物显示出更好的透明度(透射率为800nm:84-89%vs.75-82%),较高的拉伸强度(高达48.6MPa,高达28.3MPa),和与聚醚软链段的那些相比,硬度。聚合物在两个(在氦气)或三个(空中)阶段分解并具有相对良好的热稳定性。它们的温度为1%的质量损失在255-274℃的范围内。在惰性气氛中,来自PTMO的聚合物所示的值高于来自PHCD的值,而在氧化气氛中,情况逆转。新合成的含硫聚合物显示出较高的折射率和铜强度,与基于丁烷-1,4-二醇的类似聚合物,作为链增量剂。

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