[1] Das R., Ali M.E., Hamid S.B.A., Ramakrishna S., Chowdhury Z.Z.,
Carbon Nanotube Membranes for Water Purification: A Bright Future in Water Desalination. Desalination,
336: 97-109 (2014).
[6] Madaeni S.S., Akbarzadeh Arbatan T.,
Preparation and Characterization of Microfiltration Membrane Embedded with Silver Nano-Particles. Iranian Journal of Chemistry and Chemical Engineering (IJCCE),
29(4): 105-111 (2010).
[8] Lau W.J., Ismail A.F., Misdan N., Kassim M.A.,
A Recent Progress in Thin Film Composite Membrane: A Review. Desalination,
287: 190-199 (2012).
[10] Tofighy M.A., Shirazi Y., Mohammadi T., Pak A.,
Salty Water Desalination Using Carbon Nanotubes Membrane. Chemical Engineering Journal,
168(3): 1064-1072 (2011).
[11] Beigmoradi R.S., Mohebbi-Kalhori D.,
Engineering of Oriented Carbon Nanotubes in Composite Materials. Beilstein J Nanotechnol,
9: 415–435 (2018).
[12] Taleshi F., Yousefi M.,
Removal of Cd2+ from Aqueous Solution by Nickel Oxide/CNT Nanocomposites. Iran. J. Chem. Chem. Eng. (IJCCE), 38(1): 141-145 (2019).
[13] بیگمرادی ر، "
خالص سازی و مشخصه سازی نانو لوله های کربنی". دانشگاه اصفهان، پایان نامه کارشناسی ارشد (1388).
[14] Roy K., Mukherjee A., Maddela N.R., Chakraborty S., Shen B., Li M., Du D., Peng Y., Lu F., García Cruzatty L.C.,
Outlook on The Bottleneck of Carbon Nanotube in Desalination and Membrane-Based Water Treatment—A Review. Journal of Environmental Chemical Engineering,
8(1): 103572 (2020).
[15] Ali S., Rehman S.A.U., Luan H.-Y., Farid M.U., Huang H.,
Challenges and Opportunities in Functional Carbon Nanotubes for Membrane-Based Water Treatment and Desalination. Science of the Total Environment,
646: 1126-1139 (2019).
[17] Antunes E.F., Lobo A.O., Corat E.J., Trava-Airoldi V.J.,
Influence of Diameter in the Raman Spectra of Aligned Multi-Walled Carbon Nanotubes. Carbon,
45(5): 913-921 (2007).
[20] Zhao H., Zhou Z., Dong H., Zhang L., Chen H., Hou L.,
A Facile Method to Align Carbon Nanotubes on Polymeric Membrane Substrate. Scientific Reports,
3: 3480 (2013).
[21] بیگمرادی ر، "مطالعه بر روی ساخت یک غشای لایهی نازک مرکب شامل نانولولههای کربنی ردیف شده به روش ریزسازی الکتروهیدرودینامیکی برای کاربرد در تصفیه آب"، دانشگاه سیستان و بلوچستان، زاهدان (1397)
[22] Goh K., Karahan H.E., Wei L., Bae T.-H., Fane A.G., Wang R., Chen Y.,
Carbon Nanomaterials for Advancing Separation Membranes: A Strategic Perspective. Carbon,
109: 694-710 (2016).
[24] Upadhyayula V.K.K., Deng S., Mitchell M.C., Smith G.B.,
Application of Carbon Nanotube Technology for Removal of Contaminants in Drinking Water: A Review. Science of the Total Environment,
408(1): 1-13 (2009).
[27] Davood Abadi Farahani M.H., Vatanpour V.,
Polymer/Carbon Nanotubes Mixed Matrix Membranes for Water Purification. In: "Nanoscale Materials in Water Purification"
. Edited by Thomas S, Pasquini D., Leu S.-Y., Gopakumar D..A: Elsevier; 87-110 (2019).
[28] Khamseh S., Abdollahzadeh Davani F., Samimi A.,
the Effects of RF-Sputtered TiO2 Top Layer on Pore Structure of Composite Ceramic Membranes. Surface and Coatings Technology,
258: 1256-1258 (2014).
[ 29] جعفری نژاد ش.، ابوالقاسمی ح.، احمدی س.ج.، قربانیان س.، ویژگی های مکانیکی نانوکامپوزیت های پلی پروپیلن ـ خاک رس تهیه شده با روش مخلوط مذاب. نشریه شیمی و مهندسی شیمی ایران، 30(2): 61-67 (1390)
[30] Almasi D., Abbasi K., Sultana N., Lau W.J.,
Study on TiO2 Nanoparticles Distribution in Electrospun Polysulfone/TiO2 Composite Nanofiber. Iranian Journal of Chemistry and Chemical Engineering (IJCCE),
36(2): 49-53 (2017).
[32] Feng J., Ding H., Ren C., Ma Y.,
Pumping of Water by Rotating Chiral Carbon Nanotube. Nanoscale,
6(22): 13606-13612 (2014).
[33] Tu Q., Yang Q., Wang H., Li S,.
Rotating Carbon Nanotube Membrane Filter for Water Desalination. Scientific Reports,
6: 26183 (2016).
[34] Mittal G., Dhand V., Rhee K.Y., Park S.-J., Lee W.R.,
A Review on Carbon Nanotubes and Graphene as Fillers in Reinforced Polymer Nanocomposites. Journal of Industrial and Engineering Chemistry,
21: 11-25 (2015).
[35] Safadi B., Andrews R., Grulke E.,
Multiwalled Carbon Nanotube Polymer Composites: Synthesis and Characterization of Thin Films. Journal of Applied Polymer Science,
84(14): 2660-2669 (2002).
[36] Ahmadi M., Jahanmardi R., Mohammadizade M.,
Preparation of PMMA/Mwnts Nanocomposite Microcellular Foams by In-Situ Generation of Supercritical Carbon Dioxide. Iranian Journal of Chemistry and Chemical Engineering (IJCCE),
35(2): 63-72 (2016).
[37] Gupta T.K., Kumar S.,
Fabrication of Carbon Nanotube/Polymer Nanocomposites. In: "
Carbon Nanotube-Reinforced Polymers"
. Elsevier; 61-81 (2018).
[39] De Oliveira A.D., Beatrice C.A.G.,
Polymer Nanocomposites with Different Types of Nanofiller. in: "Nanocomposites-Recent Evolutions", Intechopen; (2018).
[40] Kanoun O., Müller C., Benchirouf A., Sanli A., Dinh T., Al-Hamry A., Bu L., Gerlach C., Bouhamed A.,
Flexible Carbon Nanotube Films for High Performance Strain Sensors. Sensors,
14(6): 10042-10071 (2014).
[41] Kanoun O., Müller C., Benchirouf A., Sanli A., Gerlach C., Bouhamed A.,
Carbon Nanotube Polymer Composites for High Performance Strain Sensors. "
2015 1st Workshop on Nanotechnology In Instrumentation and Measurement (NANOFIM)": 1-4 (2015).
[43] Liu Y., Kumar S.,
Polymer/Carbon Nanotube Nano Composite Fibers–A Review. ACS Applied Materials & Interfaces 6(9): 6069-6087 (2014).
[45] Fawaz J., Mittal V.,
Polymer Nanotube Nanocomposites, A Review of Synthesis Methods, Properties and Applications. Polymer Nanotube Nanocomposites: Synthesis, Properties, and Applications. 1-44 (2014).
[48] Wu Y., Xia Y., Jing X., Cai P., Igalavithana A.D., Tang C., Tsang D.C.W., Ok Y.S.,
Recent Advances in Mitigating Membrane Biofouling Using Carbon-Based Materials. Journal of Hazardous Materials,
382: 120976 (2020).
[49] Lee B., Baek Y., Lee M., Jeong D.H., Lee H.H., Yoon J., Kim Y.H.,
A Carbon Nanotube Wall Membrane for Water Treatment. Nature Communications,
6: 7109 (2015).
[50] Pendergast M.M., Hoek E.M.,
A Review of Water Treatment Membrane Nanotechnologies. Energy & Environmental Science,
4(6): 1946-1971 (2011).
[52] Baek Y., Kim C., Seo D.K., Kim T., Lee J.S., Kim Y.H., Ahn K.H., Bae S.S., Lee S.C., Lim J.,
High Performance and Antifouling Vertically Aligned Carbon Nanotube Membrane for Water Purification. Journal of Membrane Science,
460: 171-177 (2014).
[53] Takizawa Y., Inukai S., Araki T., Cruz-Silva R., Uemura N., Morelos-Gomez A., Ortiz-Medina J., Tejima S., Takeuchi K., Kawaguchi T.,
Antiorganic Fouling and Low-Protein Adhesion on Reverse-Osmosis Membranes Made of Carbon Nanotubes and Polyamide Nanocomposite. ACS Applied Materials & Interfaces,
9(37): 32192-32201 (2017).
[54] Ihsanullah, Abbas A., Al-Amer A.M., Laoui T., Al-Marri M.J., Nasser M.S., Khraisheh M., Atieh M.A,
Heavy Metal Removal from Aqueous Solution by Advanced Carbon Nanotubes: Critical Review of Adsorption Applications. Separation and Purification Technology,
157: 141-161 (2016).
[55] Ren X., Chen C., Nagatsu M., Wang X.,
Carbon Nanotubes as Adsorbents in Environmental Pollution Management: A Review. Chemical Engineering Journal,
170(2): 395-410 (2011).
[56] Morgan K., Engineered Carbon Nanotube Membranes May Help Solve Our Growing Demand for Desalination
, Online Web Page:
Https://Www.Elsevier.Com/Connect/Atlas-Award-Quenching-The-Worlds-Thirst-For-Seawater
[57] Goh P.S., Wong T.W., Lim J.W., Ismail A.F., Hilal N.,
Innovative and Sustainable Membrane Technology for Wastewater Treatment and Desalination Application. In: "Innovation Strategies in Environmental Science"
. Edited by Galanakis C.M.: Elsevier, 291-319 (2020):.
[58] Sharma M., Sharma A.,
Polymer Nanocomposite Membranes for Water Treatment. in: "Intelligent Communication, Control and Devices"
. Springer; 865-874 (2020).
[59] Ali Z., Ahmad R.,
Nanotechnology for Water Treatment. In: "Environmental Nanotechnology" Volume 3
. Springer International Publishing; 143-163 (2020).
[60] Kalra A., Garde S., Hummer G.,
Osmotic Water Transport Through Carbon Nanotube Membranes. Proceedings of the National Academy of Sciences,
100(18): 10175 (2003).
[61] Corry B.,
Designing Carbon Nanotube Membranes for Efficient Water Desalination. The Journal of Physical Chemistry B,
112(5): 1427-1434 (2008).
[62] Fornasiero F., Park H.G., Holt J.K., Stadermann M, Grigoropoulos CP, Noy A, Bakajin O,
Ion Exclusion by Sub-2-Nm Carbon Nanotube Pores. Proceedings of the National Academy of Sciences,
105(45): 17250 (2008).
[63] Das R., Abd Hamid S.B., Ali M.E., Ismail A.F., Annuar M.S.M., Ramakrishna S,
Multifunctional Carbon Nanotubes in Water Treatment: the Present, Past and Future. Desalination,
354: 160-179 (2014).
[64] Ahn C.H., Baek Y., Lee C., Kim S.O., Kim S., Lee S., Kim S.-H., Bae S.S., Park J., Yoon J.,
Carbon Nanotube-Based Membranes: Fabrication and Application To Desalination. Journal of Industrial And Engineering Chemistry,
18(5): 1551-1559 (2012).
[65] Dumée L., Germain V., Sears K., Schütz J., Finn N,. Duke M., Cerneaux S., Cornu D., Gray S.,
Enhanced Durability and Hydrophobicity of Carbon Nanotube Bucky Paper Membranes in Membrane Distillation. Journal of Membrane Science,
376(1): 241-246 (2011).
[70] Alshahrani A.A., Algamdi M.S., Alsohaimi I.H., Nghiem L.D., Tu K.L., Al-Rawajfeh A.E., Panhuis M,
the Rejection of Mono- and Di-Valent Ions From Aquatic Environment by MWNT/Chitosan Buckypaper Composite Membranes: Influences of Chitosan Concentrations. Separation and Purification Technology,
234: 116088 (2020).
[71] Zhu B., Kou H., Liu Z., Wang Z., Macharia D.K., Zhu M., Wu B., Liu X., Chen Z.,
Flexible and Washable CNT-Embedded PAN Nonwoven Fabrics for Solar-Enabled Evaporation and Desalination of Seawater. ACS Applied Materials & Interfaces,
11(38): 35005-35014 (2019).
[72] Lee J.-G., Lee E.-J., Jeong S., Guo J., An A.K., Guo H., Kim J., Leiknes T., Ghaffour .,
Theoretical Modeling and Experimental Validation of Transport and Separation Properties of Carbon Nanotube Electrospun Membrane Distillation. Journal of Membrane Science,
526: 395-408 (2017).
[75] Kim H.J., Baek Y., Choi K., Kim D.-G., Kang H., Choi Y.-S., Yoon J., Lee J.-C.,
the Improvement of Antibiofouling Properties of a Reverse Osmosis Membrane by Oxidized CNTs. Rsc Advances,
4(62): 32802-32810 (2014).
[76] Chan W.-F., Chen H.-Y., Surapathi A., Taylor M.G., Shao X., Marand E., Johnson J.K.,
Zwitterion Functionalized Carbon Nanotube/Polyamide Nanocomposite Membranes for Water Desalination. Acs Nano,
7(6): 5308-5319 (2013).
[77] Jin L., Bower C., Zhou O.,
Alignment of Carbon Nanotubes in a Polymer Matrix By Mechanical Stretching. Applied Physics Letters,
73(9): 1197-1199 (1998).
[78] Iakoubovskii K.,
Techniques of Aligning Carbon Nanotubes. Central European Journal of Physics,
7.4: 645-653 (2009).
[79] Xie X.-L., Mai Y.-W., Zhou X.-P.,
Dispersion and Alignment of Carbon Nanotubes in Polymer Matrix: A Review. Materials Science and Engineering: R: Reports,
49(4): 89-112 (2005).
[81] Haslam M.D., Raeymaekers B.,
Aligning Carbon Nanotubes Using Bulk Acoustic Waves to Reinforce Polymer Composites. Composites Part B: Engineering,
60: 91-97 (2014).
[83] Ren Z., Lan Y., Wang Y,
Aligned Carbon Nanotubes: Physics, Concepts, Fabrication and Devices: Springer Science & Business Media; (2012).
[84] Cooper C.A., Ravich D., Lips D., Mayer J., Wagner H.D.,
Distribution and Alignment of Carbon Nanotubes and Nanofibrils in A Polymer Matrix. Composites Science and Technology,
62(7): 1105-1112 (2002).
[85] Paul C.P. Watts S.M.L., Ernest Mendoz S., Ravi P. Silva,
Polymer Supported Carbon Nanotube Arrays for Field Emission and Sensor Devices. Applied Physics Letters,
89(10): 103113 (2006).
[86] Lanticse L.J., Tanabe Y., Matsui K., Kaburagi Y., Suda K., Hoteida M., Endo M., Yasuda E.,
Shear-Induced Preferential Alignment of Carbon Nanotubes Resulted in Anisotropic Electrical Conductivity of Polymer Composites. Carbon,
44(14): 3078-3086 (2006).
[89] Yao J., Bastiaansen C.W,. Peijs T.,
High Strength and High Modulus Electrospun Nanofibers. Fibers,
2(2): 158-186 (2014).
[90] Kuzmenko V., Kalogeropoulos T., Thunberg J., Johannesson S., Hägg D., Enoksson P., Gatenholm P.,
Enhanced Growth of Neural Networks on Conductive Cellulose-Derived Nanofibrous Scaffolds. Materials Science and Engineering: C,
58: 14-23 (2016).
[94] Yu B., Liu X., Cong H., Wang Z., Lian Y., Tang J.,
Fabrication of Stable Ultrathin Transparent Conductive Carbon Nanotube Micropatterns Using Layer-by-Layer Self-Assembly. Fullerenes, Nanotubes and Carbon Nanostructures,
23(4): 320-325 (2015).
[99] Wang X., Yong Z.Z., Li Q.W., Bradford P.D., Liu W., Tucker D.S., Cai W., Wang H., Yuan F.G., Zhu Y.T.,
Ultrastrong, Stiff and Multifunctional Carbon Nanotube Composites. Materials Research Letters,
1(1): 19-25 (2013).
[100] Giancane G., Bettini S., Valli L.,
State of Art in the Preparation, Characterisation and Applications of Langmuir–Blodgett Films of Carbon Nanotubes. Colloids and Surfaces A: Physicochemical and Engineering Aspects,
354(1): 81-90 (2010).
[102] Lisetski L., Soskin M., Lebovka N.,
Carbon Nanotubes in Liquid Crystals: Fundamental Properties and Applications. Physics of Liquid Matter: Modern Problems, Springer,
243-297 (2015).
[103] Lagerwall J.P.F., Scalia G., Haluska M., Dettlaff-Weglikowska U., Giesselmann F., Roth S.,
Simultaneous Alignment and Dispersion of Carbon Nanotubes with Lyotropic Liquid, Crystals.
Physica Status Solidi (B),
243(13): 3046-3049 (2006).
[104] Zakri C., Poulin P.,
Nematic Phase Formation in Suspensions of Carbon Nanotubes. in: 'Liquid Crystals with Nano and Microparticles"
. World Scientific;
775-796 (2017).
[105] Deheer W.A., Bacsa W.S., Châtelain A., Gerfin T., Humphrey-Baker R., Forro L., Ugarte D,
Aligned Carbon Nanotube Films: Production and Optical and Electronic Properties. Science,
268(5212): 845-847 (1995).
[107] Cesano F., Scarano D.,
Dispersion of Carbon-Based Materials (Cnts, Graphene) in Polymer Matrices. in: "Carbon for Sensing Devices"
. Springer, 43-75 (2015).
[110] Ding X., Li P., Lin S.-C.S., Stratton Z.S., Nama N., Guo F., Slotcavage D., Mao X., Shi J., Costanzo F. Huang, T.J.,
Surface Acoustic Wave Microfluidics. Lab. on a Chip,
13(18): 3626-3649 (2013).
[112] Ubrig N., Shaver J., Parra-Vasquez A.N.G., Pasquali M., Kono J., Fagan J., Portugall O.,
Dynamic Alignment of Single-Walled Carbon Nanotubes in Pulsed Magnetic Fields. Journal of Low Temperature Physics,
159(1-2): 262-266 (2010).
[114] Lemieux M.C., Roberts M., Barman S., Jin Y.W., Kim J.M., Bao Z.,
Self-Sorted, Aligned Nanotube Networks for Thin-Film Transistors. Science,
321(5885): 101-104 (2008).
[115] Shekhar S., Stokes P., Khondaker S.I.,
Ultrahigh Density Alignment of Carbon Nanotube Arrays by Dielectrophoresis. ACS Nano,
5(3): 1739-1746 (2011).
[117] Tsuda K., Sakka Y.,
Simultaneous Alignment and Micropatterning of Carbon Nanotubes Using Modulated Magnetic Field. Science and Technology of Advanced Materials,
10(1): 014603 (2009).