高等学校化学学报 ›› 2009, Vol. 30 ›› Issue (10): 2071.

• 研究论文 • 上一篇    下一篇

CdHgTe纳米晶/聚乙烯醇近红外纳米纤维的制备

孙海珠1,2, 张皓2, 鞠婕2, 张俊虎2, 李敏杰2, 唐玥2, 杨柏2   

  1. 1. 东北师范大学化学学院, 长春130024;
    2. 吉林大学超分子结构与材料国家重点实验室, 长春 130012
  • 收稿日期:2009-04-27 出版日期:2009-10-10 发布日期:2009-10-10
  • 通讯作者: 孙海珠, 主要从事无机纳米粒子与聚合物复合材料的制备与性能研究. E-mail: sunhz335@nenu.edu.cn; 杨柏, 主要从事聚合物有序结构与光功能材料研究. E-mail: byangchem@jlu.edu.cn
  • 基金资助:

    国家“九七三”计划(批准号: 2007CB936402)、国家自然科学基金(批准号: 20804008, 20704014)、高等学校全国优秀博士学位论文作者专项资金(批准号: 200734)、吉林省科技发展项目(批准号: 20082212)和长春应化所高分子物理与化学国家重点实验室开放课题资助.

Preparation of CdHgTe Nanocrystal and Poly(vinyl alcohol) Nanofibers with Near Infrared Emission

SUN Hai-Zhu1,2*, ZHANG Hao2, JU Jie2, ZHANG Jun-Hu2, LI Min-Jie2, TANG Yue2, YANG Bai2*   

  1. 1. College of Chemistry, Northeast Normal University, Changchun 130024, China;
    2. State Key Laboratory of Supramolecular Structure and Materials, Jilin Univeristy, Changchun 130012, China
  • Received:2009-04-27 Online:2009-10-10 Published:2009-10-10
  • Contact: SUN Hai-Zhu, E-mail: sunhz335@nenu.edu.cn; YANG Bai, E-mail: byangchem@jlu.edu.cn
  • Supported by:

    国家“九七三”计划(批准号: 2007CB936402)、国家自然科学基金(批准号: 20804008, 20704014)、高等学校全国优秀博士学位论文作者专项资金(批准号: 200734)、吉林省科技发展项目(批准号: 20082212)和长春应化所高分子物理与化学国家重点实验室开放课题资助.

摘要:

采用一步法制备了性质稳定的CdHgTe纳米晶, 将其与聚乙烯醇水溶液共混, 通过静电纺丝方法获得了CdHgTe纳米晶/聚乙烯醇纳米纤维. 改变聚乙烯醇水溶液的浓度可以使纤维的直径在200~400 nm范围内可调. 所制备的纳米纤维在近红外区域具有很强的荧光, 而且发光峰位与原水相纳米晶的峰位基本一致, 这是采用其它方法制备纳米晶与聚合物的复合材料难以实现的. 通过与聚乙烯醇的复合, 纳米晶的热稳定性得到进一步增强, 在120 ℃下将纳米纤维加热2 h, 其形貌和发光性质都未发生明显的变化.

关键词: 纳米晶; 聚合物; 纳米纤维; 近红外发光

Abstract:

Stable CdHgTe nanocrystals(NCs) were prepared via one-step in water. The nanofibers of CdHgTe NCs and poly(vinyl alcohol)(PVA) were obtained from electrospinning the mixing solution of CdHgTe NC and PVA. The diameter of the nanofibers were tuned from 200—400 nm by varying the mass fraction(4%—12%) of PVA solution. The best morphology of the nanofiber was got in the mass fraction range from 8%—10%. The nanofibers had strong photoluminescence in the range of near infrared(NIR) wavelength. Above all, they maintained the original peak position of the NCs in water, which was very difficult for the NC and polymer composites prepared using other methods. Moreover, the stability of the NCs was further improved. They showed a thermal stability at the temperature of 120 ℃, which was much higher than that(80 ℃) of in water.

Key words: Nanocrystal; Polymer; Nanofiber; Near infrared emission

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