- Previous Article
- Next Article
- Table of Contents
Clean Technology, Vol.18, No.4, 331-340, December, 2012
기능성 콜로이드 입자의 제조기술 및 이의 응용
Synthesis Technology of Functional Colloid Particles and Its Applications
E-mail:
초록
최근 콜로이드 산업에서 기능성 입자의 수요가 증가함에 따라 입자의 제조방법은 상당한 발전을 이루었다. 이러한 발전은 동적/정적 미세유체 시스템을 도입함으로써 이루어졌으며 입자의 크기, 형태, 다공성, 표면의 거칠기 또는 기능성 등 물리적, 화학적인 형상제어를 가능하게 해주었다. 이러한 형상제어를 통하여 만들어진 기능성 입자는 의료진단, 광소자, 바이오 산업으로 응용될 수 있다. 뿐만 아니라, 기능성 콜로이드 입자의 자가조립을 유도함으로써 규칙적인 정렬부터 불규칙적인 새로운 형태의 기능성을 갖는 물질을 얻을 수 있고, 자연계에서 일어나는 현상을 모사함으로써 본질적인 연구도 가능하게 해주었다. 그리하여 본 총설에서는 최근 각광받고 있는 기능성 콜로이드 입자의 제조방법에 대해 설명하고 이의 응용 가능성을 소개하였다.
Synthetic methods of colloids have been significantly developed in industry due to their significant demand for preparation of functional particles. Recently, dynamic/static microfluidic system has emerged as a promising route to the synthesis of the particles, providing precise control of physical and chemical properties such as size, shape, porosity, surface roughness, and surface functionality. These formed particles can be potentially used in various applications including medical diagnostics, photonic device, and biological industry. In addition, these particles provide a novel route to create new materials via their directed self-assembly, and it enable to study and predict the natural phenomenon by mimicking of the nature. Therefore, we describe recent progress for functional colloid particles and its applications.
- Peppas NA, Hilt JZ, Khademhosseini A, Langer R, Adv. Mater., 18(11), 1345 (2006)
- Niu ZW, He JB, Russell TP, Wang QA, Angew.Chem. Int. Edit., 49, 10052 (2010)
- Wang YP, Byrne JD, Napier ME, DeSimone JM, Adv. Drug. Deliver. Rev., 64, 1021 (2012)
- Sacanna S, Pine DJ, Curr. Opin. Colloid.In., 16, 96 (2011)
- Derveaux S, Stubbe BG, Braeckmans K, Roelant C, Sato K, Demeester J, De Smedt SC, Anal. Bioanal.Chem., 391, 2453 (2008)
- Xia YN, Gates B, Li ZY, Adv. Mater., 13(6), 409 (2001)
- Dendukuri D, Doyle PS, Adv. Mater., 21(41), 4071 (2009)
- Mason TG, Bibette J, Langmuir, 13(17), 4600 (1997)
- Asua JM, J. Polym. Sci. A: Polym. Chem., 42(5), 1025 (2004)
- Xu SQ, Nie ZH, Seo M, Lewis P, Kumacheva E, Stone HA, Garstecki P, Weibel DB, Gitlin I, Whitesides GM, Angew. Chem. Int. Edit., 44, 724 (2005)
- Hwang S, Choi CH, Lee CS, Macromol. Res., 20(4), 422 (2012)
- Choi CH, Yi H, Hwang S, Weitz DA, Lee CS, Lab Chip., 11, 1477 (2011)
- Jung JH, Choi CH, Hwang TS, Lee CS, Biochip. J., 3, 44 (2009)
- Choi CH, Jung JH, Hwang TS, Lee CS, Macromol. Res., 17(3), 163 (2009)
- Choi CH, Jung JH, Kim DW, Chung YM, Lee CS, Lab Chip., 8, 1544 (2008)
- Kim SH, Abbaspourrad A, Weitz DA, J. Am. Chem. Soc., 133(14), 5516 (2011)
- Prasad N, Perumal J, Choi CH, Lee CS, Kim DP, Adv. Funct. Mater., 19(10), 1656 (2009)
- Dendukuri D, Pregibon DC, Collins JT, Hatton A, Doyle PS, Nat. Mater., 5, 365 (2006)
- Dendukuri D, Gu SS, Pregibon DC, Hatton TA, Doyle PS, Lab Chip., 7, 818 (2007)
- Rolland JP, Maynor BW, Euliss LE, Exner AE, Denison GM, DeSimone JM, J. Am. Chem. Soc., 127(28), 10096 (2005)
- Choi CH, Lee J, Yoon K, Tripathi A, Stone HA, Weitz DA, Lee CS, Angew.Chem. Int. Edit., 49, 7748 (2010)
- Jeong JM, Son JW, Choi CH, Lee CS, Clean Technol., 18(3), 295 (2012)
- Choi CH, Jeong JM, Kang SM, Lee CS, Lee J, Adv. Mater., 24(37), 5078 (2012)
- Kim SH, Sim JY, Lim JM, Yang SM, Angew. Chem. Int. Edit., 49, 3786 (2010)
- Sacanna S, Rossi L, Pine DJ, J. Am. Chem. Soc., 134(14), 6112 (2012)
- Yin SN, Wang CF, Yu ZY, Wang J, Liu SS, Chen S, Adv. Mater., 23(26), 2915 (2011)
- Groschel AH, Schacher FH, Schmalz H, Borisov OV, Zhulina EB, Walther A, Muller AHE, Nat. Commun., 3, 1 (2012)
- Chen Q, Whitmer JK, Jiang S, Bae SC, Luijten E, Granick S, Science, 331(6014), 199 (2011)
- Sacanna S, Irvine WTM, Chaikin PM, Pine DJ, Nature., 464, 575 (2010)
- Groschel AH, Walther A, Lobling TI, Schmelz J, Hanisch A, Schmalz H, Muller AHE, J. Am. Chem. Soc., 134(33), 13850 (2012)
- Hwang DK, Oakey J, Toner M, Arthur JA, Anseth KS, Lee S, Zeiger A, Van Vliet KJ, Doyle PS, J. Am. Chem. Soc., 131(12), 4499 (2009)
- Lewis CL, Cho CH, Lin Y, Lee CS, Yi H, Anal. Chem., 82, 5851 (2010)
- Appleyard DC, Chapin SC, Doyle PS, Anal. Chem., 83, 193 (2011)
- Liang FX, Shen K, Qu XZ, Zhang CL, Wang QA, Li JL, Liu JG, Yang ZZ, Angew. Chem. Int. Edit., 50, 2379 (2011)
- Tanaka T, Okayama M, Minami H, Okubo M, Langmuir, 26(14), 11732 (2010)
- Kim SH, Lee SY, Yang SM, Angew. Chem. Int. Edit., 49, 2535 (2010)
- Nie ZH, Li W, Seo M, Xu SQ, Kumacheva E, J. Am. Chem. Soc., 128(29), 9408 (2006)
- Wang JY, Wang YP, Sheiko SS, Betts DE, DeSimone JM, J. Am. Chem. Soc., 134(13), 5801 (2012)