References
- B. Hayati, N.M. Mahmoodi, A. Maleki, Dendrimer–titania
nanocomposite: synthesis and dye-removal capacity, Res.
Chem. Intermed., 41 (2015) 3743–3757.
- A. Maleki, E. Pajootan, B. Hayati, Ethyl acrylate grafted chitosan
for heavy metal removal from wastewater: equilibrium, kinetic
and thermodynamic studies, J. Taiwan Inst. Chem. Eng.,
51 (2015) 127–134.
- A. Maleki, B. Hayati, F. Najafi, F. Gharibi, S.W. Joo, Heavy
metal adsorption from industrial wastewater by PAMAM/TiO2 nanohybrid: preparation, characterization and adsorption
studies, J. Mol. Liq., 224 (2016) 95–104.
- J. Wang, G. Zhao, Y. Li, H. Zhu, X. Peng, X. Gao, One-step
fabrication of functionalized magnetic adsorbents with large
surface area and their adsorption for dye and heavy metal ions,
Dalton Trans., 43 (2014) 11637–11645.
- L. Mihaly-Cozmuta, A. Mihaly-Cozmuta, A. Peter, C. Nicula,
H. Tutu, D. Silipas, E. Indrea, Adsorption of heavy metal
cations by Na-clinoptilolite: equilibrium and selectivity studies,
J. Environ. Manage., 137 (2014) 69–80.
- M. Xiao, J. Hu, Cellulose/chitosan composites prepared in
ethylene diamine/potassium thiocyanate for adsorption of
heavy metal ions, Cellulose, 24 (2017) 2545–2557.
- D. Huang, D. Wu, Biodegradable dendrimers for drug delivery,
Mater. Sci. Eng., C, 90 (2018) 713–727.
- A. Siriviriyanun, Y.-J. Tsai, S.H. Voon, S.F. Kiew, T. Imae,
L.V. Kiew, C.Y. Looi, W.F. Wong, H.B. Lee, L.Y. Chung,
Cyclodextrin- and dendrimer-conjugated graphene oxide as a
nanocarrier for the delivery of selected chemotherapeutic and
photosensitizing agents, Mater. Sci. Eng., C, 89 (2018) 307–315.
- N.M. Mahmoodi, B. Hayati, M. Arami, F. Mazaheri, Single and
binary system dye removal from colored textile wastewater
by a dendrimer as a polymeric nanoarchitecture: equilibrium
and kinetics, J. Chem. Eng. Data, 55 (2010) 4660–4668.
- B. Hayati, N.M. Mahmoodi, M. Arami, F. Mazaheri, Dye
removal from colored textile wastewater by poly (propylene
imine) dendrimer: operational parameters and isotherm
studies, Clean–Soil Air Water, 39 (2011) 673–679.
- M.R. Kotte, A.T. Kuvarega, M. Cho, B.B. Mamba, M.S. Diallo,
Mixed matrix PVDF membranes with in situ synthesized
PAMAM dendrimer-like particles: a new class of sorbents
for Cu(II) recovery from aqueous solutions by ultrafiltration,
Environ. Sci. Technol., 49 (2015) 9431–9442.
- M.S. Diallo, W. Arasho, J.H. Johnson Jr., W.A. Goddard
III, Dendritic chelating agents. 2. U(VI) binding to poly
(amidoamine) and poly(propyleneimine) dendrimers in
aqueous solutions, Environ. Sci. Technol., 42 (2008) 1572–1579.
- A.N. Golikand, K. Didehban, L. Irannejad, Synthesis and
characterization of triazine-based dendrimers and their
application in metal ion adsorption, J. Appl. Polym. Sci.,
123 (2012) 1245–1251.
- M. Anbia, M. Haqshenas, Adsorption studies of Pb(II) and
Cu(II) ions on mesoporous carbon nitride functionalized with
melamine-based dendrimer amine, Int. J. Environ. Sci. Technol.,
12 (2015) 2649–2664.
- J. Zhao, X. Zhang, X. He, M. Xiao, W. Zhang, C. Lu, A super
biosorbent from dendrimer poly (amidoamine)-grafted
cellulose nanofibril aerogels for effective removal of Cr(VI),
J. Mater. Chem. A, 3 (2015) 14703–14711.
- Y. Xu, D. Zhao, Removal of copper from contaminated soil by
use of poly (amidoamine) dendrimers, Environ. Sci. Technol.,
39 (2005) 2369–2375.
- M.S. Diallo, S. Christie, P. Swaminathan, J.H. Johnson,
W.A. Goddard, Dendrimer enhanced ultrafiltration. 1. Recovery
of Cu(II) from aqueous solutions using PAMAM dendrimers
with ethylene diamine core and terminal NH2 groups, Environ.
Sci. Technol., 39 (2005) 1366–1377.
- S. Chaudhary, A. Gothwal, I. Khan, S. Srivastava, R. Malik,
U. Gupta, Polypropyleneimine and polyamidoamine dendrimer
mediated enhanced solubilization of bortezomib:
comparison and evaluation of mechanistic aspects by
thermodynamics and molecular simulations, Mater. Sci. Eng., C,
72 (2017) 611–619.
- B. Hayati, A. Maleki, F. Najafi, H. Daraei, F. Gharibi,
G. McKay, Synthesis and characterization of PAMAM/CNT
nanocomposite as a super-capacity adsorbent for heavy metal
(Ni2+, Zn2+, As3+, Co2+) removal from wastewater, J. Mol. Liq.,
224 (2016) 1032–1040.
- B. Hayati, A. Maleki, F. Najafi, H. Daraei, F. Gharibi, G. McKay,
Adsorption of Pb2+, Ni2+, Cu2+, Co2+ metal ions from aqueous
solution by PPI/SiO2 as new high performance adsorbent:
preparation, characterization, isotherm, kinetic, thermodynamic
studies, J. Mol. Liq., 237 (2017) 428–436.
- B. Hayati, A. Maleki, F. Najafi, H. Daraei, F. Gharibi, G. McKay,
Super high removal capacities of heavy metals (Pb2+ and Cu2+)
using CNT dendrimer, J. Hazard. Mater., 336 (2017) 146–157.
- E.M. Elsehly, N.G. Chechenin, A.V. Makunin, H.A. Motaweh,
E.A. Vorobyeva, K.A. Bukunov, E.G. Leksina, A.B. Priselkova,
Characterization of functionalized multiwalled carbon
nanotubes and application as an effective filter for heavy metal
removal from aqueous solutions, Chin. J. Chem. Eng., 24 (2016)
1695–1702.
- P. Kesharwani, A. Gothwal, A.K. Iyer, K. Jain, M.K. Chourasia,
U. Gupta, Dendrimer nanohybrid carrier systems: an expanding
horizon for targeted drug and gene delivery, Drug Discovery
Today, 23 (2018) 300–314.
- R.S. Hebbar, A.M. Isloor, K. Ananda, A.F. Ismail, Fabrication
of polydopamine functionalized halloysite nanotube/polyetherimide membranes for heavy metal removal, J. Mater.
Chem. A, 4 (2016) 764–774.
- R.S. DeFever, N.K. Geitner, P. Bhattacharya, F. Ding, P.C. Ke,
S. Sarupria, PAMAM dendrimers and graphene: materials for
removing aromatic contaminants from water, Environ. Sci.
Technol., 49 (2015) 4490–4497.
- N.K. Geitner, B. Wang, R.E. Andorfer, D.A. Ladner, P.C.
Ke, F. Ding, Structure–function relationship of PAMAM
dendrimers as robust oil dispersants, Environ. Sci. Technol., 48
(2014) 12868–12875.
- N.K. Mehra, N.K. Jain, Multifunctional hybrid-carbon
nanotubes: new horizon in drug delivery and targeting, J. Drug
Targeting, 24 (2016) 294–308.
- N.M. Mahmoodi, U. Sadeghi, A. Maleki, B. Hayati, F. Najafi,
Synthesis of cationic polymeric adsorbent and dye removal
isotherm, kinetic and thermodynamic, J. Ind. Eng. Chem.,
20 (2014) 2745–2753.
- M. Yusuf, M.A. Khan, E.C. Abdullah, M. Elfghi, M. Hosomi,
A. Terada, S. Riya, A. Ahmad, Dodecyl sulfate chain anchored
mesoporous graphene: synthesis and application to sequester
heavy metal ions from aqueous phase, Chem. Eng. J., 304 (2016)
431–439.
- A. Mohamed, S. Yousef, M.A. Abdelnaby, T.A. Osman,
B. Hamawandi, M.S. Toprak, M. Muhammed, A. Uheida,
Photocatalytic degradation of organic dyes and enhanced
mechanical properties of PAN/CNTs composite nanofibers,
Sep. Purif. Technol., 182 (2017) 219–223.
- X. Li, N. Xu, H. Li, M. Wang, L. Zhang, J. Qiao, 3D hollow
sphere Co3O4/MnO2-CNTs: its high-performance bi-functional
cathode catalysis and application in rechargeable zinc-air
battery, Green Energy Environ., 2 (2017) 316–328.
- M.U. Khan, K.R. Reddy, T. Snguanwongchai, E. Haque,
V.G. Gomes, Polymer brush synthesis on surface modified
carbon nanotubes via in situ emulsion polymerization, Colloid.
Polym. Sci., 294 (2016) 1599–1610.
- Z.-Q. Duan, X.-B. Gao, T.-P. Li, K. Yao, X.-M. Xie, A facile route
to the hierarchical assembly of Au nanoparticles on carbon
nanotubes through Cu2+ coordination for surface-enhanced
Raman scattering, Chin. Chem. Lett., 28 (2017) 521–524.
- M.A. Salam, A.Y. Obaid, R.M. El-Shishtawy, S.A. Mohamed,
Synthesis of nanocomposites of polypyrrole/carbon nanotubes/
silver nano particles and their application in water disinfection,
RSC Adv., 7 (2017) 16878–16884.
- G. Zhou, J. Luo, C. Liu, L. Chu, J. Ma, Y. Tang, Z. Zeng, S. Luo,
A highly efficient polyampholyte hydrogel sorbent based
fixed-bed process for heavy metal removal in actual industrial
effluent, Water Res., 89 (2016) 151–160.
- D.K. Yadav, S. Srivastava, Carbon nanotubes as adsorbent to
remove heavy metal ion (Mn7+) in wastewater treatment, Mater.
Today:. Proc., 4 (2017) 4089–4094.
- S.U. Yoon, B. Mahanty, H.M. Ha, C.G. Kim, Phenol adsorption
on surface-functionalized iron oxide nanoparticles: modeling
of the kinetics, isotherm, and mechanism, J. Nanopart. Res., 18
(2016) 1–10.
- H. Rao, Z. Lu, W. Liu, Y. Wang, H. Ge, P. Zou, H. He, The
adsorption of bone‐related proteins on calcium phosphate
ceramic particles with different phase composition and its
adsorption kinetics, Surf. Interface Anal., 48 (2016) 1048–1055.
- L. Jia, X. Yao, J. Ma, C. Long, Adsorption kinetics of water vapor
on hypercrosslinked polymeric adsorbent and its comparison
with carbonaceous adsorbents, Microporous Mesoporous
Mater., 241 (2017) 178–184.
- M. Rajabi, O. Moradi, K. Zare, Kinetics adsorption study of
the ethidium bromide by graphene oxide as adsorbent from
aqueous matrices, Int. Nano Lett., 7 (2017) 35–41.
- P.J. Vodianitskaia, J.J. Soares, H. Melo, J.M. Gurgel, Experimental
chiller with silica gel: adsorption kinetics analysis and
performance evaluation, Energy Convers. Manage., 132 (2017)
172–179.
- F. Ebadi Ahsan, M. Montazer, S.H. Amirshahi, M. Ghanbar
Afjeh, T. Harifi, Influence of nano colloidal silver in dyeing of
wool with acid blue 92: isotherm adsorption, kinetic studies and
dyed wool characterization, J. Nat. Fibers, 13 (2016) 204–214.
- N.M. Mahmoodi, B. Hayati, M. Arami, Textile dye removal
from single and ternary systems using date stones: kinetic,
isotherm, and thermodynamic studies, J. Chem. Eng. Data,
55 (2010) 4638–4649.
- L.S. Chan, W.H. Cheung, S.J. Allen, G. McKay, Error analysis of
adsorption isotherm models for acid dyes onto bamboo derived
activated carbon, Chin. J. Chem. Eng., 20 (2012) 535–542.
- N.M. Mahmoodi, B. Hayati, H. Bahrami, M. Arami, Dye
adsorption and desorption properties of mentha pulegium
in single and binary systems, J. Appl. Polym. Sci., 122 (2011)
1489–1499.
- B. Hayati, N.M. Mahmoodi, Modification of activated carbon
by the alkaline treatment to remove the dyes from wastewater:
mechanism, isotherm and kinetic, Desal. Water Treat., 47 (2012)
322–333.
- B. Hayati, M. Arami, A. Maleki, E. Pajootan, Thermodynamic
properties of dye removal from colored textile wastewater by
poly(propylene imine) dendrimer, Desal. Water Treat., 56 (2015)
97–106.
- B. Erdem, M. Erdem, A.S. Özcan, Adsorption of reactive black
5 onto quaternized 2-dimethylaminoethyl methacrylate based
polymer/clay nanocomposites, Adsorption, 22 (2016) 767–776.
- D. Xu, W.D. Wu, H.-J. Qi, R.-X. Yang, W.-Q. Deng, Sulfur rich
microporous polymer enables rapid and efficient removal of
mercury(II) from water, Chemosphere, 196 2018 174–181.
- J. Sun, H. Chen, D. Qi, H. Wu, C. Zhou, H. Yang, Enhanced immobilization
of mercury (II) from desulphurization wastewater by
EDTA functionalized graphene oxide nanoparticles, Environ.
Technol., 41 (2020) 1366–1379.
- T. Javed, N. Khalid, N. Sareecha, M.L. Mirza, Sorption profile
of mercury(II) from aqueous solution onto low-rank Pakistani
coal, Desal. Water Treat., 160 (2019) 276–287.
- D.Z. Husein, Adsorption and removal of mercury ions from
aqueous solution using raw and chemically modified Egyptian
mandarin peel, Desal. Water Treat., 51 (2013) 6761–6769.
- A. Ates, E. Altintig, H. Demirel, M. Yilmaz. Comparative study
on adsorptive removal of Cu, Pb, Zn heavy metals by modified
perlite composites, Desal. Water Treat., 98 (2017) 244–253.
- S. Jafarinejad, M. Faraji, P. Jafari, J. Mokhtari-Aliabad, Removal
of lead ions from aqueous solutions using novel-modified
magnetic nanoparticles: optimization, isotherm, and kinetics
studies, Desal. Water Treat., 92 (2017) 267–274.
- M. Candan, F. Tay, I. Avan, T. Tay, Removal of copper(II) and
nickel(II) ions from aqueous solution using non-living lichen
Ramalina fraxinea biomass: investigation of kinetics and
sorption isotherms, Desal. Water Treat., 75 (2017) 148–157.
- K.F. Lam, K.L. Yeung, G. McKay, A rational approach in the
design of selective mesoporous adsorbents. Langmuir, 22 (2006)
9632–9641.
- A. Ma, T.H. Shek, S.J. Allen, V.K.C. Lee, G. McKay, Removal
of nickel from effluents by chelating ion exchange, J. Chem.
Technol. Biotechnol., 83 (2008) 1623–1632.
- P. Hadi, N. Chao, W. Ouyang, M. Xu, C.S.K. Lin, G. McKay,
Towards environmentally-benign utilization of nonmetallic
fraction of waste printed circuit boards as modifier and
precursor, Waste Manage., 35 (2015) 236–246.