Modulation of nanoparticle separation by initial contact angle in coffee ring effect

Micro and Nano Systems Letters - Tập 6 Số 1 - 2018
Johan Yi1, Hwapyeong Jeong1, Jaesung Park2
1Mechanical Engineering, POSTECH, Pohang, Republic of Korea
2School of Interdisciplinary Bioscience and Bioengineering, POSTECH, Pohang, Republic of Korea

Tóm tắt

Từ khóa


Tài liệu tham khảo

Deegan RD et al (1997) Capillary flow as the cause of ring stains from dried liquid drops. Nature 389:827

Deegan RD et al (2000) Contact line deposits in an evaporating drop. Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics 62(1 Pt B):756–765

Deegan RD (2000) Pattern formation in drying drops. Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics 61(1):475–485

Shen X, Ho CM, Wong TS (2010) Minimal size of coffee ring structure. J Phys Chem B 114(16):5269–5274

Pirrung MC (2002) How to make a DNA chip. Angew Chem Int Ed Engl 41(8):1276–1289

Jing J et al (1998) Automated high resolution optical mapping using arrayed, fluid-fixed DNA molecules. Proc Natl Acad Sci USA 95(14):8046–8051

Dugas V, Broutin J, Souteyrand E (2005) Droplet evaporation study applied to DNA chip manufacturing. Langmuir 21(20):9130–9136

Soltman D, Subramanian V (2008) Inkjet-printed line morphologies and temperature control of the coffee ring effect. Langmuir 24(5):2224–2231

Takhistov P, Chang H-C (2002) Complex stain morphologies. Ind Eng Chem Res 41(25):6256–6269

Choi S et al (2010) Coffee-ring effect-based three dimensional patterning of micro/nanoparticle assembly with a single droplet. Langmuir 26(14):11690–11698

Vakarelski IU et al (2009) Assembly of gold nanoparticles into microwire networks induced by drying liquid bridges. Phys Rev Lett 102(5):058303

Diao J, Cao Q (2011) Gold nanoparticle wire and integrated wire array for electronic detection of chemical and biological molecules. AIP Adv 1(1):012115

Diao J, Xia M (2009) A particle transport study of vertical evaporation-driven colloidal deposition by the coffee-ring theory. Colloids Surf A 338(1–3):167–170

Shao L et al (2014) Gold nanoparticle wires for sensing DNA and DNA/protein interactions. Nanoscale 6(8):4089–4095

Wen-Tao L, Jia-Jie D (2015) Colloidally deposited nanoparticle wires for biophysical detection. Chin Phys B 24(12):127308

Jeong H et al (2014) Nanoparticle separation using Marangoni flow in evaporating droplets. In: Solid-state sensors, actuators and microsystems workshop Hilton Head Island, South Carolina

Wong TS et al (2011) Nanochromatography driven by the coffee ring effect. Anal Chem 83(6):1871–1873

Li Y et al (2017) Rapid assembly of large scale transparent circuit arrays using PDMS nanofilm shaped coffee ring. Adv Func Mater 27(11):1606045

Hu H, Larson RG (2005) Analysis of the microfluid flow in an evaporating sessile droplet. Langmuir 21(9):3963–3971

Hu H, Larson RG (2002) Evaporation of a sessile droplet on a substrate. J Phys Chem B 106(6):1334–1344

Hu H, Larson RG (2005) Analysis of the effects of Marangoni stresses on the microflow in an evaporating sessile droplet. Langmuir 21(9):3972–3980

Hu H, Larson RG (2006) Marangoni effect reverses coffee-ring depositions. J Phys Chem B 110(14):7090–7094

Jeong H et al (2018) Analysis of extracellular vesicles using coffee ring. ACS Appl Mater Interfaces 10(27):22877–22882