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NIPAAm-DADMAC共聚凝胶的辐射合成及性质研究
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作者 陈宬 张亚龙 伊敏 《同位素》 CAS 2002年第1期8-11,共4页
用辐射共聚的方法合成了NIPAAm-DADMAC共聚凝胶,并对所得凝胶的性质进行了研究。结果表明,适当单体配比、交联剂(Bis)浓度和吸收剂量下可以得到无色透明、富有弹性和高吸水性的共聚凝胶。其强度随NIPAAm含量和吸收剂量的增加而强化并达... 用辐射共聚的方法合成了NIPAAm-DADMAC共聚凝胶,并对所得凝胶的性质进行了研究。结果表明,适当单体配比、交联剂(Bis)浓度和吸收剂量下可以得到无色透明、富有弹性和高吸水性的共聚凝胶。其强度随NIPAAm含量和吸收剂量的增加而强化并达到恒定值,剂量率对其影响不明显;在机械性能提高的同时,共聚物的饱和溶胀比略有下降,但仍不失为较好的吸水材料。实验结果还表明在本体系中只要含有少量的DADMAC,共聚凝胶就会失去NIPAAm特有的温度敏感性。 展开更多
关键词 NIPAAM DADMAC 辐射共聚 共聚凝胶 辐射合成 N N-二甲基二烯丙基氯化铵 N-异丙基丙烯酰胺
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A chemo-mechanical switchable valve on microfluidic chip based on a thermally responsive block copolymer
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作者 Sifeng Mao Xiaohong Hu +6 位作者 Yumi Tanaka Lin Zhou Chenhan Peng Nahoko Kasai Hizuru Nakajima Shungo Kato Katsumi Uchiyama 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第6期3083-3086,共4页
Microfluidic devices have become a powerful tool for chemical and biologic applications.To control different functional parts on the microchip,valve plays a key role in the device.In conventional methods,physio-mechan... Microfluidic devices have become a powerful tool for chemical and biologic applications.To control different functional parts on the microchip,valve plays a key role in the device.In conventional methods,physio-mechanical valves are usually used on microfluidic chip.Herein,we reported a chemo-mechanical switchable valve on microfluidic chip by using a thermally responsive block copolymer.The wettability changes of capillary with copolymer modification on inner surface were investigated to verify the function as a valve.Capillaries with modification of poly-(N-isopropylacrylamide-co-hexafluoroisopropyl acrylate)(P(NIPAAm-co-HFIPA))with a 20%HFIPA was demonstrated capable of control aqueous solution stop or go through.Then short capillaries with copolymer modification were integrated in microchannels as valves.With the temperature changing around lower critical solution temperature(LCST),the integrated chemo-mechanical switchable valve exhibited excellent“OPEN–CLOSE”behavior for microflow control.After optimization of the block copolymer sequences and molar ratio,a switching time as low as 20 s was achieved.The developed micro valve was demonstrated effective for flow control on microchip. 展开更多
关键词 MICROCHIP VALVE Flow control nippam Chemo-mechanical switch Thermo-responsive polymer
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