Environmental Engineering Reference
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[27] yu J, dong l, Wu C, Wu l, Xing J. Hydroxyfullerene as a novel coating for solid-phase microextraction fiber with sol-gel technology.
J Chromatogr A 2002;978 (1-2):37-48.
[28] bondavalli P, legagneux P, Pribat d. Carbon nanotubes based transistors as gas sensors: state of the art and critical review. sens
Actuators b Chem 2009;140 (1):304-318.
[29] su F, lu C, Cnen W, bai H, Hwang JF. Capture of Co 2 from flue gas via multiwalled carbon nanotubes. sci Total Environ 2009;407
(8):3017-3023.
[30] llobet E. Gas sensors using carbon nanomaterials: a review. sens Actuators b Chem 2013;179:32-45.
[31] stadermann M, Mcbrady Ad, dick b, Reid vR, Noy A, synovec RE, bakajin o. Ultrafast gas chromatography on single-wall carbon
nanotube stationary phases in microfabricated channels. Anal Chem 2006;78 (16):5639-5644.
[32] Hussain CM, saridara C, Mitra s. Microtrapping characteristics of single and multi-walled carbon nanotubes. J Chromatogr A 2008;1185
(2):161-166.
[33] Hussain CM, saridara C, Mitra s. Carbon nanotubes as sorbents for the gas phase pre-concentration of semivolatile organics in a micro-
trap. Analyst 2008;133 (8):1076-1082.
[34] Hussain CM, saridara C, Mitra s. Modifying the sorption properties of multi-walled carbon nanotubes via covalent functionalization.
Analyst 2009;134 (9):1928-1933.
[35] li Q, yuan d. Evaluation of multi-walled carbon nanotubes as gas chromatographic column packing. J Chromatogr A 2003;1003
(1-2):203-209.
[36] speltini A, Merli d, Quartarone E, Profumo A. separation of alkanes and aromatic compounds by packed column gas chromatography
using functionalized multi-walled carbon nanotubes as stationary phases. J Chromatogr A 2010;1217 (17):2918-2924.
[37] saridara C, Mitra s. Chromatography on self-assembled carbon nanotubes. Anal Chem 2005;77 (21):7094-7097.
[38] Karwa M, Mitra s. Chromatography of self-assembled singe walled carbon nanotubes. Anal Chem 2006;78 (6):2064-2070.
[39] Hussain CM, saridara C, Mitra s. self-assembly of carbonnanotubes via ethanol chemical vapor deposition for thesynthesis of gas
chromatography columns. Anal Chem 2010;82 (12):5184-5188.
[40] safavi A, Maleki N, doroodmand MM. single-walled carbon nanotubes as stationary phase in gas chromatographic separation and
determination of argon, carbon dioxide and hydrogen. Chim Acta 2010;675 (2):207-212.
[41] Reid vR, stadermann M, bakajin o, synovec RE. Talanta 2009;77 (4):1420-1425.
[42] Glausch A, Hirsch A, lamparth I, schurig v. Retention behaviour of polychlorinated biphenyls on polysiloxane-anchored C60 in gas
chromatography. J Chromatogr A 1998;809 (1-2):252-257.
[43] li y, Chen y, Xiang R, Ciuparu d, Pfefferle ld, Horváth C, Wilkins JA. Incorporation of single-wall carbon nanotubes into an organic
polymer monolithic stationary phase for mu-HPlC and capillary electrochromatography. Anal Chem 2005;77:1398-1406.
[44] Chambers sd, Holcombe TW, svec F, Fréchet JMJ. Effect of multi-walled carbon nanotubes incorporation into benzyl methacrylate
monolithic columns in capillary liquid chromatography. Porous polymer monoliths functionalized through copolymerization of a
C 60   fullerene-containing methacrylate monomer for highly efficient separations of small molecules. Anal Chem 2011;83 (24):
9478-9484.
[45] Chambers sd, svec F, Fréchet JMJ. Incorporation of carbon nanotubes in porous polymer monolithic capillary columns to enhance the
chromatographic separation of small molecules. J Chromatogr A 2011;1218 (18):2546-2552.
[46] Aqel A, yusuf K, Al-othman ZA, badjah-Hadj-Ahmed Ay, Alwarthan AA. Analyst 2012;137 (18):4309-4317.
[47] Hinds bJ, Chopra N, Rantell T, Andrews R, Gavalas v, bachas lG. Aligned multiwalled carbon nanotube membranes. science 2004;303
(5654):62-65.
[48] Holt JK, Park HG, Wang y, stadermann M, Artyukhin Ab, Grigoropoulos CP, Noy A, bakajin o. Fast mass transport through sub-
2-nanometer carbon nanotubes. science 2006;312 (5776):1034-1037.
[49] Noy A, Park HG, Fornasiero F, Holt JK, Grigoropoulos CP, bakajin o. Nanofluidics in carbon nanotubes. Nano Today 2007;2
(6):22-29.
[50] Hylton K, Chen y, Mitra s. Carbon nanotube mediated microscale membrane extraction. J Chromatogr A 2008;1211 (1-2):43-48.
[51] sae-Khow o, Mitra s. Carbon nanotube immobilized composite hollow fiber membranes for pervaporative removal of volatile organics
from water. J Phys Chem C 2010;114 (39):16351-16356.
[52] vashist sK, Zheng d, Al-Rubeaan K, luong JHT, sheu F-s. Advances in carbon nanotube based electrochemical sensors for bioanalyti-
cal applications. biotechnol Adv 2011;29 (2):169-188.
[53] Jacobs Cb, Peairs MJ, venton bJ. Review: carbon nanotube based electrochemical sensors for biomolecules. Anal Chim Acta 2010;662
(2):105-127.
[54] Chikkadi K, Roman C, durrer l, süss T, Pohle R, Hierold C. scalable fabrication of individual sWNT chem-FETs for gas sensing. Proc
Eng 2012;47:1374-1377.
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