活性炭纤维在防护领域的应用进展

赵世怀1,2, 杨紫博2, 赵晓明1,3, 张旭平2, 张翠翠2, 陶超2

化工新型材料 ›› 2019, Vol. 47 ›› Issue (2) : 15 -17.

PDF (1110KB)
化工新型材料 ›› 2019, Vol. 47 ›› Issue (2) : 15-17.
综述与专论

活性炭纤维在防护领域的应用进展

    赵世怀1,2, 杨紫博2, 赵晓明1,3, 张旭平2, 张翠翠2, 陶超2
作者信息 +

Application of activated carbon fiber in protection field

  • Zhao Shihuai1,2, Yang Zibo2, Zhao Xiaoming1,3, Zhang Xuping2, Zhang Cuicui2, Tao Chao2
Author information +
文章历史 +
PDF (1136K)

摘要

对传统的防护材料进行了简要介绍,对新型防护材料活性炭纤维的加工方法,以及制成的产品特性、用途进行了阐述。活性炭纤维作为一种应用广泛的防护材料,倍受科研人员的关注。

Abstract

The traditional protective materials were briefly introduced,and the processing methods of new protective materials activated carbon fibers,as well as the characteristics and uses of products were described.Activated carbon fiber as a widely used protective material carry much of our country's attention.

关键词

活性炭纤维 / 防护应用 / 吸波 / 医用敷料

Key words

activated carbon fiber / protection application / wave absorbing / medical dressing

引用本文

引用格式 ▾
活性炭纤维在防护领域的应用进展[J]. 化工新型材料, 2019, 47(2): 15-17 DOI:

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] Linsky C B,Roree D T,Dow T.Effects of dressing on wound inflammation and scar tissue,in:dineen p and hildick-smith g,eds the surgical wound[J].Philadelphia Lea & Febiger,1981,12:191-205.
[2] 李承明,黄雅钦,黄明智.明胶在创伤敷料中的应用[J].明胶科学与技术,2003,23(2):57-62.
[3] Huh A J,Kwon Y J.“Nanoantibiotics”:a new paradigm for treating infectious diseases using nanomaterials in the antibiotics resistant era[J].Journal of Controlled Release,2011,156(2):129-131.
[4] Allaker R P,Ren G.Potential impact of nanotechnology on the control of infectious diseases[J].Transactions of the Royal Society of Tropical Medicine & Hygiene,2008,102(1):1-2.
[5] Zhang L,Gu F X,Chan J M,et al.Nanoparticles in medicine:therapeutic applications and developments[J].Clinical Pharmacology & Therapeutics,2008,83(5):761-769.
[6] Bagchi B,Dey S,Bhandary S,et al.Antimicrobial efficacy and biocompatibility study of copper nanoparticle adsorbed mullite aggregates[J].Materials Science & Engineering C,2012,32(7):1897-1905.
[7] Ramani M,Ponnusamy S,Muthamizhchelvan C.From zinc oxide nanoparticles to microflowers:a study of growth kinetics and biocidal activity[J].Materials Science & Engineering C,2012,32(8):2381-2389.
[8] Ashfaq M,Verma N,Khan S.Copper/zinc bimetal nanoparticles-dispersed carbon nanofibers:a novel potential antibiotic material[J].Materials Science & Engineering C Materials for Biological Applications,2016,59:938-947.
[9] 刘维春.利用纳米银与活性炭纤维的结合制作抗菌材料的方法:中国,02129358.9[P].2004-03-10.
[10] Park S J,Jang Y S.Preparation and characterization of activated carbon fibers supported with silver metal for antibacterial behavior[J].J Colloid Interface Sci,200,261(2):238-243.
[11] Tang C,Hu D,Cao Q,et al.Silver nanoparticles-loaded activated carbon fibers using chitosan as binding agent:preparation,mechanism,and their antibacterial activity[J].Applied Surface Science,2017,394:457-465.
[12] Lin Y H,Lin J H,Li T S,et al.Dressing with epigallocatechin gallate-nanoparticles for wound regeneration[J].Wound Repair & Regeneration,2016,24(2):287-301.
[13] 吴红焕,王晓艳,张玲,等.碳纤维吸波材料的研究进展[J].材料导报,2007,21(5):115-117.
[14] Danlée Y,Bailly C,Huynen I.Thin and flexible multilayer polymer composite structures for effective control of microwave electromagnetic absorption[J].Composites Science & Technology,2014,100(21):182-188.
[15] Li N,Hu C,Cao M.Enhanced microwave absorbing performance of CoNi alloy nanoparticles anchored on a spherical carbon monolith[J].Physical Chemistry Chemical Physics Pccp,2013,15(20):7685-7689.
[16] Lee C C,Chen D H.Ag nanoshell-induced dual-frequency electromagnetic wave absorption of Ni nanoparticles[J].Applied Physics Letters,2007,90(19):193102-193103.
[17] 陶振声,范学伟,王倩,等.铁氧体吸波材料的性能与应用[J].磁性材料及器件,2007,38(5):57-60.
[18] 林培豪,潘顺康,王磊,等.磁场热处理对磁性吸波材料微波吸收特性的影响[J].中国有色金属学报,2012,22(4):1113-1118.
[19] Zang Y,Xia S,Li L,et al.Microwave absorption enhancement of rectangular activated carbon fibers screen composites[J].Composites Part B Engineering,2015,77:371-378.
[20] Qiu J,Wu X Y,Qiu T.High electromagnetic wave absorbing performance of activated hollow carbon fibers decorated with CNTs and Ni nanoparticles[J].Ceramics International,2016,42(4):5278-5285.
[21] 杨康.活性炭纤维/玻璃钢复合结构吸波材料的制备及性能[D].天津:天津大学,2007.
[22] 邹田春.活性炭纤维(毡)/环氧树脂吸波复合材料的设计与吸波性能的研究[D].天津:天津大学,2007.
[23] 邹田春,赵乃勤,师春生,等.制备工艺对活性炭纤维微观结构和吸波性能的影响[J].材料导报,2010,24(4):86-89.
[24] 姚斌,马葳葳,夏少旭,等.钩针工艺之于活性炭纤维/环氧树脂电路屏吸波复合材料的设计[J].复合材料学报,2017,34(1):47-52.
[25] 夏少旭,李利伟,史燕妮,等.活性炭纤维结构对电路屏复合材料吸波性能影响研究[J].功能材料,2015,46(24):24053-24056.

基金资助

国家自然科学基金(21476172,21206124);天津市自然科学基金重点项目(12JCZDJC28400);天津市科技特派员项目(16JCTPJC47600);天津市科技计划项目(15PTSYJC00230);分离膜与膜过程国家重点实验室开放课题项目(Z2-201569)

AI Summary AI Mindmap
PDF (1110KB)

1060

访问

0

被引

导航
相关文章

AI思维导图

/