TY - JOUR
T1 - Modification of (15,15) 2.034 nm diameter carbon nanotubes with long aliphatic chain and their desalination behavior
AU - Li, Qing
AU - Yang, Dengfeng
AU - Shi, Jinsheng
AU - Wang, Jianhua
AU - Liu, Qingzhi
N1 - Publisher Copyright:
© 2018 Desalination Publications. All rights reserved.
PY - 2018/1
Y1 - 2018/1
N2 - In order to imitate the structure of protein aquaporin-4 to improve salt rejection and to keep high water flux, long aliphatic chains were added at entrance or into interior of 2.034 nm (15,15) armchair carbon nanotubes (CNTs) and reverse osmosis membrane was built by simulation in this paper. The potential of mean force, conductance and axial density distributions of salt and water in CNTs was calculated. Results showed that under 200 MPa, salt rejection could be dramatically improved with high water flux (3.8–5.3 times higher than that of (8,8) unfunctionalized CNTs) when CNTs were modified with opposite groups or zwitterion groups at entrance. Certain numbers of short functional groups at entrance together with long aliphatic chain will improve both water permeation and salt rejection. For example, one pair of short chains (CH2NH3+ and CH2COO–) and four 10-ammonioundecanote groups could make higher water flux than that with only four 10-ammonioundecanote groups and kept 100% salts rejection. CNTs with one pair of undecanoate and decan-1-aminium groups or two 6-ammonio-2-methylundecanedioate groups into interior can also obtain 100% salt rejection.
AB - In order to imitate the structure of protein aquaporin-4 to improve salt rejection and to keep high water flux, long aliphatic chains were added at entrance or into interior of 2.034 nm (15,15) armchair carbon nanotubes (CNTs) and reverse osmosis membrane was built by simulation in this paper. The potential of mean force, conductance and axial density distributions of salt and water in CNTs was calculated. Results showed that under 200 MPa, salt rejection could be dramatically improved with high water flux (3.8–5.3 times higher than that of (8,8) unfunctionalized CNTs) when CNTs were modified with opposite groups or zwitterion groups at entrance. Certain numbers of short functional groups at entrance together with long aliphatic chain will improve both water permeation and salt rejection. For example, one pair of short chains (CH2NH3+ and CH2COO–) and four 10-ammonioundecanote groups could make higher water flux than that with only four 10-ammonioundecanote groups and kept 100% salts rejection. CNTs with one pair of undecanoate and decan-1-aminium groups or two 6-ammonio-2-methylundecanedioate groups into interior can also obtain 100% salt rejection.
KW - Biomimetic modification
KW - Carbon nanotube
KW - Molecular dynamics simulation
KW - Reverse osmosis membrane
UR - https://www.scopus.com/pages/publications/85043762730
U2 - 10.5004/dwt.2018.21720
DO - 10.5004/dwt.2018.21720
M3 - 文章
AN - SCOPUS:85043762730
SN - 1944-3994
VL - 101
SP - 61
EP - 69
JO - Desalination and Water Treatment
JF - Desalination and Water Treatment
ER -