Научная статья на тему '离心法制备纳米纤维技术研究进展'

离心法制备纳米纤维技术研究进展 Текст научной статьи по специальности «Технологии материалов»

CC BY
36
24
i Надоели баннеры? Вы всегда можете отключить рекламу.
i Надоели баннеры? Вы всегда можете отключить рекламу.

Похожие темы научных работ по технологиям материалов , автор научной работы — 董雅婕 董雅婕, 梅顺齐 梅顺齐, 李臻 李臻, 孔令学 孔令学, 刘超 刘超

iНе можете найти то, что вам нужно? Попробуйте сервис подбора литературы.
i Надоели баннеры? Вы всегда можете отключить рекламу.

Текст научной работы на тему «离心法制备纳米纤维技术研究进展»

UDK 67.02

(Research Progress in Centrifugal spinning of Nanofibers)

mmrn 1, whiM 1*, «1,2, 1,2, mm 1

1 - MlfM^gsm^, 430073;

2 -

* - Corresponding Author 1119055730@qq.com, meishunqi@vip.sina.com

0

^'ftiä^M, AM.W XiS^, f^^M^i^i^o ^

w^m ^ffl^ar, i^mt^Mï^i^

œ^Mim^m

1

1.1

'^^mtm^^m^^fe^^^i 1924 XÈ J. P. Hooper

Vi

IS A./I

a 1 1 «x 5

7-^Sfö;

a i

Mohammad Reza Badrossamay[1]Й 2010 ^ШЖ, ШШШМШШ^&^Щ^^^Щ

шМФ, Ш2Ь-2) , ш^шйт,

К ГЧ

I. 1

(1)

(а)

ш

(2) (Ь)

Ш2 (а) Щ'штшштштт^шт Сь) ж^ш^жшшажм

1-Ж^ШШ; 2-^ШШШ;

1.2

2010 X Kamal Sarkar mi, «¿Ä^O ^itiii^ä, ^MPtlM^o

^SMPEO7№Ä$#mÄ 3000-5000 rpm^g№ÄJi#X $^2^300 nmfäPEO^S, M№^fä«lMiJf#500 nmfäif^S#B0no

^So I^Bt, g/min,

g/hlf, ^STAUX^O ^ 2012

Zachary McEachin, Karen Lozano[4]ffiäiii£itmiX 9000rpm ifmT^ÄJifAXSWi^ XfäX^Ä®Ä 220 nm fä PCL if^io

®4 ^m&^mi^fäxsffl

2013 M 5

ifäiifÄWxX#£, (1) ^ffifäü

art, Masma, f^iio (2)

XM^X,

XO (3) «^Sfäiio

(a) (b)

т 5 (a)

1-%«^; 3-КЙ^; 4-Ш#; 5-^ШМШЖ; 8-^Ш; 9-%

(b)

2 Ш'ЬШШШШ

2.1

2. 1. 1 Щ^ШМЙ^ЖМЖ

Simon Padrón Щ[2]Щ 6 wt%, 8 wt%, 10 wt/Й PEO 6000 rpm

ЖШШ nm, 360 nm, 400 nm ЙЖШШ ^а^М, ЙЖ

ШйжйШП, МЙШПРЕОЙ&Ж, ^ШЙТОЖ^-Ш^*, мшЙЖШШШ

Й^^^ШШШ^То ^Ж10 wt/Й PEO /КШ^ШЙЖШШЙ^^Л 4500 rpm, Ш 6 wt/оЙ PEO/КШ^ШЙЖШШЙ^^ЯШ 2500 rpm.

Mohammad Reza Badrossamay #[1]XX CHC13 t 8 wt%, 10 wt0/c#Sfä PLA i#mX 12000 rpm fä^IX$'J&iA^i, nm, 833 nm fäü^ic 6 wt% PLA

fä CHC13 ÄX 12000 rpm fä$#IX$iJ^iA^SfäX^Ä®A 421 nm X^WXJ I 4 wt% PLA fä CHC13 ÄX 12000 rpm fä^ITKÜSttSIo

Beny Vazquez 1:1 XEi

MS^mA 18%, 21.5%^ 25%fä^ifo 4000 rpmH, 340 nm±|AS

1242 nm, fe^^A 140 nm±|AS474 nm; 8000 rpm H, ^XSX^^®A311 nm ±!AS 1709 nm, fe^^A 156 nm±|AM 939 nmo

x-^art, ^M^S», fea^m»,

n^Sfä^n, aMfäiÄtismii^too ^m&s&w, itm^smsx, m -^^X^^fä^XXX^X Xmm^MM^fä^fX, mfäM^xit^, x ^fä^i^WttSI, I^xSXfflS; ^mfä&SftAH, itmfä^SAA,

iAM^o

2.1.2 m-^fäM^A

mftfäH, M^A^ATX^SÄO M

Mohammad Reza

Badrossamay Ca ÄtX^W

m Ca w^^x^wm Ca m

m, xm^xsfäxtmMA, mmwMX^m^MS^io

2. 2

2.2.1 r^^fä^I

^M^Axm^xM^, x^xx-x^ms, mx®^

XX^iA^S MffiM^MXfäAAM, m^tmfäM^A^M

«i^^XtXc

»9tfa^X 2000 rpm^ITX30 wt%fä Nylon 6 ÖX^I

Ä, ^^fäiA^swttsi, n^mfä^M, ttsimAmx, ¿XSWXSMA

m^o

Simon Padron#[2]X6 wt%fä PEO i#m$#IA 2500 rpm ^MS 6000 rpm^J^iA^XS H, ^SfäX^^®A315 nm MAS 130 nm, fe^A 115 nm ^^S 30 nm.

Zachary МсЕасМп Ш Кагеп Lozano[4]ffl 16 wt%Й РСЬ ШШД 3000 грт 9000

ШШЙТОЖ®Д264 шпШ^М220 пт, ШШД 125 пт

98 пт.

^а^ш^вд, ^Я^ШЙ^Ж

2.2.2 ^М^ЙЖ® Simon Padron

Yao Lu #[10]Д 14wt0/oЙ PAN Й N, ^^ЙШШШЙ 4000 грт Й^ШТ^ШЖ ®^0.4 тт, 0.8 тт Ш 1.0 тт Й^М^&^Ж^Ш, 10 ст Й№М

Ж, 895 пт, 807пт Ш 665 пто

» 11 30G (Й®^ 0. 159тт) Ш 27G (Й®^ 0. 21тт)

30-20G (й®^ 0.6-0. 16тт)

2. 2. 3 ^М^ЖЖЖЙШЖ

ЙЖ'ШМ,

Yao Lu #[10]Д 14wt%Й PAN Й N, 0.4 тт ^М^Ш 4000

гртШШТ, ст, 20 ст Ш 30 ст ШШ

665 пт, 658 пт Ш 647 пт,

ЙШ^Шж, ЯШШжЙШп, ^ШЙЖ®ШЙ

1ШЖМК

2.2.4

3

2014 FibeRio tg^^t^i^Äf-ft Forcespinning®it, Fiber Engine®FX ÄAi^A Fiber Engine®FS l 10 fèo Fiber Engine®FX iMk^M^

2015 x Victor A. Agubra#[13]^^mtT PAN^^Xm^^m^m, ¿xm^^x

200-600 nmo Mm^M^^mtT sn/cf^mA^mra, ^A^MXMÄ^ x^srAaxAM^MimA^m^ÄixiPXiE^x^mii^MmA^mo

![14]

, ïni

2015 xtMfê#iifT-#®iAï^im^fi^Mms[14],

«m, x^x

m, x^Mx^xxM^Xo

mt, ^m^itt^o ^M,

iНе можете найти то, что вам нужно? Попробуйте сервис подбора литературы.

fäSSI, ÂféïiJ&mA^, ^M^X^A 100g/ho

feiixi, rnxm^m^nm ^mA^mimta^x^^Xo ^m^fi^M xisxtt^x (xx 3 kv> Exmtwx^^imA^m, M^«, ^mwxsx^

90%^X, Dennis Edmondson

^m^fi^MfemtimA^m^wisM'X, lAitx^^^t-tfto

4 %

^M^^S^^mm^SMS, ^t^^mm^SMS^Mtnm^®^

mm,

ffifto

2014BHE0010o

Acknowledgement. This paper was supported by the Science and Technology Support Project of HuBei Province: 2014BHE0010.

[1]Badrossamay M R, Mcilwee H A, Goss J A, et al. Nanofiber Assembly by Rotary Jet-Spinning[J]. Nano Letters, 2010, 10(6):2257-61.

[2]Padron S, Fuentes A, Caruntu D, et al. Experimental Study of Nanofiber Production through Forcespinning[J]. Journal of Applied Physics, 2013, 113(2):024318 - 024318-9.

[3]Sarkar K, Gomez C, Zambrano S, et al. Electrospinning to Forcespinning™[J]. Materials Today, 2010, 13(11):12-14.

[4]Mceachin Z, Lozano K. Production and characterization of polycaprolactone nanofibers via forcespinning™ technology[J]. Journal of Applied Polymer Science, 2012, 126(2):473-479.

CN103305947A[P]. 2013.

H,CN201520127798.6[P].2015-8-5.

2014(12):2632-2635.

[8]Vazquez B, Vasquez H, Lozano K. Preparation and characterization of polyvinylidene fluoride nanofibrous membranes by forcespinning™[J]. Polymer Engineering & Science, 2012, 52(10):2260-2265.

WM, ^5. frjfê^ê^fc,

2013, 35(9):82-83.

[10]Lu Y, Li Y, Zhang S, et al. Parameter study and characterization for polyacrylonitrile nanofibers fabricated via centrifugal spinning process[J]. European Polymer Journal, 2013, 49(12):3834-3845.

[11]Krifa M, Hammami M A, Wu H. Occurrence and morphology of bead-on-string structures in centrifugal forcespun PA6 fibers[J]. Journal of the Textile Institute,

2014, 106(3):284-294.

^^(-)[J]. r^ffl^Knan,2016,01:25-33+38.

[13]Agubra V A, Zuniga L, Garza D D L, et al. Forcespinning: A new method for the mass production of Sn/C composite nanofiber anodes for lithium ion batteries[J]. Solid State Ionics, 2016, 286:72-82.

H,CN201510651216.9[P].2015-12-9.

2014(1):61-63.

[16]Lee C, Wood D, Edmondson D, et al. Electrospun uniaxially-aligned composite nanofibers as highly-efficient piezoelectric material[J]. Ceramics International, 2015, 42(2):2734-2740.

18.

H,CN201610224066.8[P].2016-6-8.

References

[1]Badrossamay M R, Mcilwee H A, Goss J A, et al. Nanofiber Assembly by Rotary Jet-Spinning[J]. Nano Letters, 2010, 10(6):2257-61.

[2]Padron S, Fuentes A, Caruntu D, et al. Experimental Study of Nanofiber Production through Forcespinning[J]. Journal of Applied Physics, 2013, 113(2):024318 - 024318-9.

[3]Sarkar K, Gomez C, Zambrano S, et al. Electrospinning to Forcespinning™[J]. Materials Today, 2010, 13(11):12-14.

[4]Mceachin Z, Lozano K. Production and Characterization of Polycaprolactone Nanofibers via Forcespinning™ Technology[J]. Journal of Applied Polymer Science, 2012, 126(2):473-479.

[5]Weiming Y, Shuzhan T, Haoyi L, et al. A Device for Preparing Nanofibers by Micro Separation Differential Flow Centrifugal Spinning, CN103305947A[P]. 2013.

[6]Beijing University of Chemical Technology.An Air Flow Assisted Melt Micro Separation Centrifugal Spinning Device:China,CN201520127798.6[P].2015-8-5.

[7]GuiLei B, JunPing Z, Wen Z, et al. Research Progress in Preparation of Nanofibers by Electrospinning[J]. Contemporary Chemical Industry, 2014(12):2632-2635.

[8]Vazquez B, Vasquez H, Lozano K. Preparation and Characterization of Polyvinylidene Fluoride Nanofibrous Membranes by Forcespinning™[J]. Polymer Engineering & Science, 2012, 52(10):2260-2265.

[9]ZhiMing Z, ShunQi M, Qiao X. Principal Research of Fabrication of Nanofiber by Centralfugal Force Spinning[J]. Manufacturing Automation, 2013, 35(9):82-83.

[10]Lu Y, Li Y, Zhang S, et al. Parameter Study and Characterization for Polyacrylonitrile Nanofibers Fabricated via Centrifugal Spinning Process[J]. European Polymer Journal, 2013, 49(12):3834-3845.

[11]Krifa M, Hammami M A, Wu H. Occurrence and Morphology of Bead-on-String Structures in Centrifugal Forcespun PA6 Fibers[J]. Journal of the Textile Institute,

2014, 106(3):284-294.

[12]HuaiZhong X, HuanHuan C, XiangLong L, et al. Centrifugal Spinning: A High-Efficient Approach to Fabricate Micro-/Nano-fibers(Part 1)[J]. Technical Textiles, 2016,01:25-33+38.

[13]Agubra V A, Zuniga L, Garza D D L, et al. Forcespinning: A New Method for the Mass Production of Sn/C Composite Nanofiber Anodes for Lithium Ion Batteries[J]. Solid State Ionics, 2016, 286:72-82.

[14]Beijing University of Chemical Technology. Device and Method of Micro Separation Electrospinning of Ultra-Gravimetric Polymer

: China,CN201510651216.9[P].2015-12-9.

[15]TianDan S, XiuHong L, ZhiYuan C, et al. The Present Situation and Prospect of Centrifugal Spinning[J]. China Textile Leader, 2014(1):61-63.

[16]Lee C, Wood D, Edmondson D, et al. Electrospun Uniaxially-Aligned Composite Nanofibers as Highly-Efficient Piezoelectric Material[J]. Ceramics International,

2015, 42(2):2734-2740.

[17]Beijing University of Chemical Technology.A Multi-Functional Vacuum Spinning Device: China,CN201610148707.6[P].2016-5-18.

[18]Yantai Sensen Environmental Protection Technology Co.A Centrifugal Spiral Spinning Device: China,CN201610224066.8 [P].2016-6-8.

i Надоели баннеры? Вы всегда можете отключить рекламу.