Ultrasonic-assisted dyeing of Nylon-6 nanofibers

被引:34
作者
Jatoi, Abdul Wahab [1 ,2 ]
Ahmed, Farooq [2 ]
Khatri, Muzamil [1 ]
Tanwari, Anwaruddin [3 ]
Khatri, Zeeshan [1 ,2 ]
Lee, Hoik [2 ]
Kim, Ick Soo [1 ]
机构
[1] Shinshu Univ, Nano Fus Technol Res Grp, Div Frontier Fibers, Inst Fiber Engn IFES,ICCER, Tokida 3-15-1, Ueda, Nagano 3868567, Japan
[2] Mehran Univ Engn & Technol, Dept Text Engn, Nanomat Res Grp, Jamshoro 76062, Pakistan
[3] Mehran Univ Engn & Technol, Dept Ind Engn, Jamshoro 76062, Pakistan
关键词
Ultrasonic energy; Nylon; 6; nanofibers; Electrospinning; Disperse dyes; Color yield; CELLULOSE NANOFIBERS; DISPERSE DYES; REACTIVE DYES; COTTON; ENERGY; FABRICATION; DYEABILITY; ACETATE;
D O I
10.1016/j.ultsonch.2017.04.010
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
We first time report ultrasonic dyeing of the Nylon 6 nanofibers with two disperse dyes CI Disperse blue 56 and CI Disperse Red 167:1 by utilising ultrasonic energy during dyeing process. The Nylon 6 nanofibers were fabricated via electrospinning and dyed via batchwise method with and without sonication. Results revealed that ultrasonic dyeing produce higher color yield (K/S values) and substantially reduces dyeing time from 60 min for conventional dyeing to 30 min can be attributed to breakage of dye aggregate, transient cavitation near nanofiber surface and mass transfer within/between nanofibers. Color fastness results exhibited good to very good dye fixation. SEM images exhibit insignificant effect of sonication on morphology of the nanofibers. Our research results demonstrate ultrasonic dyeing as a better dyeing technique for Nylon 6 nanofibers with higher color yield and substantially reduced dyeing time.
引用
收藏
页码:34 / 38
页数:5
相关论文
共 26 条
[1]  
Ahmed F., 2016, ULTRASON SONOCHEM
[2]  
[Anonymous], 1995, CELLULOSICS DYEING
[3]   Facilitated hydrogen storage in NaAlH4 supported on carbon nanoribers [J].
Balde, Cornelis P. ;
Hereijgers, Bart P. C. ;
Bitter, Johannes H. ;
de Jong, Krijn P. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2006, 45 (21) :3501-3503
[4]   The clearing of poly(lactic acid) fibres dyed with disperse dyes using ultrasound. Part 1: Colorimetric analysis [J].
Burkinshaw, S. M. ;
Jeong, D. S. .
DYES AND PIGMENTS, 2008, 77 (01) :171-179
[5]   1.6 V Nanogenerator for Mechanical Energy Harvesting Using PZT Nanofibers [J].
Chen, Xi ;
Xu, Shiyou ;
Yao, Nan ;
Shi, Yong .
NANO LETTERS, 2010, 10 (06) :2133-2137
[6]   Ceramic nanofibers fabricated by electrospinning and their applications in catalysis, environmental science, and energy technology [J].
Dai, Yunqian ;
Liu, Wenying ;
Formo, Eric ;
Sun, Yueming ;
Xia, Younan .
POLYMERS FOR ADVANCED TECHNOLOGIES, 2011, 22 (03) :326-338
[7]   Nanofiber: Synthesis and biomedical applications [J].
Eatemadi, Ali ;
Daraee, Hadis ;
Zarghami, Nosratolah ;
Yar, Hassan Melat ;
Akbarzadeh, Abolfazl .
ARTIFICIAL CELLS NANOMEDICINE AND BIOTECHNOLOGY, 2016, 44 (01) :111-121
[8]   Smart Nanofibers with a Photoresponsive Surface for Controlled Release [J].
Fu, Guo-Dong ;
Xu, Li-Qun ;
Yao, Fang ;
Li, Guo-Liang ;
Kang, En-Tang .
ACS APPLIED MATERIALS & INTERFACES, 2009, 1 (11) :2424-2427
[9]   Ultrasonic preparation of cationic cotton and its application in ultrasonic natural dyeing [J].
Guesmi, A. ;
Ladhari, N. ;
Sakli, F. .
ULTRASONICS SONOCHEMISTRY, 2013, 20 (01) :571-579
[10]   Allantoin-loaded porous silica nanoparticles/polycaprolactone nanofiber composites: fabrication, characterization, and drug release properties [J].
Ke, Ma ;
Wahab, Jatoi Abdul ;
Hyunsik, Bang ;
Song, Kyung-Hun ;
Lee, Jung Soon ;
Gopiraman, Mayakrishnan ;
Kim, Ick Soo .
RSC ADVANCES, 2016, 6 (06) :4593-4600