B.D. Terris, T. Thomson, J. Phys. D Appl. Phys. 38, R199–R222 (2005)
K. Sun, C. Sun, S. Tang, CrystEngComm 18, 641 (2016)
M. Franzreb, M. Siemann-Herzberg, T.J. Hobley, O.R.T. Thomas, Appl. Microbiol. Biotechnol. 70, 505–516 (2006)
B.H. Kim, N. Lee, H. Kim, K. An, Y.I. Park, Y. Choi, K. Shin, Y. Lee, S.G. Kwon, H.B. Na, J.-G. Park, T.-Y. Ahn, Y.-W. Kim, W.K. Moon, S.H. Choi, T. Hyeon, J. Am. Chem. Soc. 133, 12624 (2011)
R. Qiao, C. Yang, M. Gao, J. Mater. Chem. 19, 6274 (2009)
U. Ikoba, H. Peng, H. Li, C. Miller, C. Yu, Q. Wang, Nanoscale 7, 4291 (2015)
M.T. López-López, J.D.G. Durán, A.V. Delgado, F. González-Caballero, J. Colloid Interface Sci. 291, 144 (2005)
A.L. Kavitha, H. Gurumallesh Prabu, S. Ananda Babu, S.K. Suja, J. Nanosci. Nanotechnol. 13, 98–104 (2013)
Y.-W. Jun, Y.-M. Huh, J.-S. Choi, J.-H. Lee, H.-T. Song, S. Kim, S. Yoon, K.-S. Kim, J.-S. Shin, J.-S. Suh and J. Cheon, J. Am. Chem. Soc. 127, 5732 (2005)
S. Sun, C.B. Murray, D. Weller, L. Folks, A. Moser, Science 287, 1989 (2000)
M.M. Miller, G.A. Prinz, S.-F. Cheng, S. Bounnak, Appl. Phys. Lett. 81, 2211–2213 (2002)
N. Basavegowda, K. B. S. Magar, K. Mishra, Y. R. Lee, New J. Chem. 38, 5415 (2014)
I. Ali, C. Peng, I. Naz, Z.M. Khan, M. Sultan, T. Islam, I.A. Abbasi, RSC Adv. 7, 40158 (2017)
W. Rongcheng, Q. Jiuhui, Water Environ. Res. 76, 2637 (2004)
S. Gao, Y. Shi, S. Zhang, K. Jiang, S. Yang, Z. Li, E. Takayama-Muromachi, J. Phys. Chem. C 112, 10398 (2008)
W. Zhang, F. Shen, R. Hong, Particuology 9, 179 (2011)
K. Nakatsuka, B. Jeyadevan, S. Neveu, H. Koganezawa, J. Magn. Magn. Mater. 252, 360–362 (2002)
B.M. Kumfer, K. Shinoda, B. Jeyadevan, I.M. Kennedy, J. Aerosol Sci. 41, 257 (2010)
O.M. Lemine, K. Omri, B. Zhang, L. El Mir, M. Sajieddine, A. Alyamani, M. Bououdina, Superlattices Microst. 52, 793 (2012)
F. Fajaroh, H. Setyawan, W. Widiyastuti, S. Winardi, Adv. Powder Technol. 23, 273 (2012)
J.F. de Carvalho, S.N. de Medeiros, M.A. Morales, A.L. Dantas, A.S. Carriço, Appl. Surf. Sci. 275, 84–87 (2013)
R. Vijayakumar, Y. Koltypin, I. Felner, A. Gedanken, Mater. Sci. Eng. A 286, 101 (2000)
Y. Hou, H. Kondoh, M. Shimojo, T. Kogure, T. Ohta, J. Phys. Chem. B 109, 19094 (2005)
K. Mondal, H. Lorethova, E. Hippo, T. Wiltowski, S.B. Lalvani, Fuel Process. Technol. 86, 33 (2004)
P. Jian, H. Yahui, W. Yang, L. Linlin, J. Memb. Sci. 284, 9–16 (2006)
K.N. Thakkar, S.S. Mhatre, R.Y. Parikh, Nanomedicine 6, 257 (2010)
M. Mahdavi, F. Namvar, M. Ahmad, R. Mohamad, Molecules 18, 5954 (2013)
P. Mohanpuria, N.K. Rana, S.K. Yadav, J. Nanopart. Res. 10, 507 (2007)
Abhilash, K. Revati and B. D. Pandey, Bull. Mater. Sci. 34, 191 (2011)
W. Jiang, K. Lai, K. Liu, R. Xia, F. Gao, Y. Wu, Z. Gu, Nanoscale 6, 1305 (2014)
A. Kumar Das, A.K. Das, A. Marwal, R. Verma, Nano Hybrids 7, 69 (2014)
A. M. Awwad and N. M. Salem, Nanosci. Nanotechnol. Lett. 2, 125 (2013)
Y. Cai, Y. Shen, A. Xie, S. Li, X. Wang, J. Magn. Magn. Mater. 322, 2938–2943 (2010)
S.P. Rajendran, K. Sengodan, J. Nanosci. Nanotechnol., 2017 (2017)
V. C. Karade, P. P. Waifalkar, T. D. Dongle, Subasa C. Sahoo, P. Kollu, P. S. Patil, P. B. Patil, Mater. Res. Express 4, 096102 (2017)
A.L. Ramirez-Nuñez, L.F. Jimenez-Garcia, G.F. Goya, B. Sanz, J. Santoyo-Salazar, Nanotechnology 29, 074001 (2018)
V.V. Makarov, S.S. Makarova, A.J. Love, O.V. Sinitsyana, A.O. Dudnik, I.V. Yaminsky, M.E. Taliansky, N.O. Kalinina, Langmuir 30, 5982 (2014)
E.C. Njagi, H. Huang, L. Stafford, H. Genuino, H.M. Galindo, J.B. Collins, G.E. Hoag, S.L. Suib, Langmuir 27, 264 (2011)
S.F. Hasany, S.F. Hasany, I. Ahmed, J. Rajan, A. Rehman, Nanosci. Nanotechnol. Lett. 2, 148 (2013)
A.A. Fernandes, G. Nagendrappa, J. Agric. Food Chem. 27, 795 (1979)
N. Belachew, D. Rama Devi, K. Basavaiah, J. Exp. Nanosci. 12, 114–128 (2017)
R.K. Sharma, S. Dutta, S. Sharma, R. Zboril, R.S. Varma, M.B. Gawande, Green Chem. 18, 3184 (2016)
A.M. Atta, G.A. El-Mahdy, H.A. Al-Lohedan, S.A. Al-Hussain, Int. J. Mol. Sci. 15, 6974–6989 (2014)
F. Buazar, M.H. Baghlani-Nejazd, M. Badri, M. Kashisaz, A. Khaledi-Nasab, F. Kroushawi, Starch-Stärke 68, 796 (2016)
R.M. Cornell, U. Schwertmann, The Iron Oxides: Structure, Properties, Reactions, Occurrences and Uses. (Wiley, 2006)
Z. Wang, M. Lu, RSC Adv. 1234 (2014)
F. Ador, Spectroscopy 31, 22–27 (2016)
L. Ying-Sing, J.S. Church, A.L. Woodhead, J. Magn. Magn. Mater. 324, 1546 (2012)
Z. Eren, F.N. Acar, Desalination 194, 1 (2006)
M. A. M. Salleh, D. K. Mahmoud, W. A. W. Abdul Karim, A. Idris. Desalination 280, 1 (2011)
A. Ofomaja, Y. Ho, Dyes Pigments 74, 60 (2007)
Y.C. Sharma, A.S.K.S. Uma, S.N. Upadhyay, J. Chem. Eng. Data 55, 5777 (2010)
I. Langmuir, J. Franklin Inst. 183, 102 (1917)
H. Freundlich, Z. Phys. Chem. 57, 385.
https://doi.org/10.1515/zpch-1907-5723
N. Mohammadi, H. Khani, V.K. Gupta, E. Amereh, S. Agarwal, J. Colloid Interface Sci. 362, 457 (2011)
M.I. Tempkin, V. Pyzhev, Acta Phys 12, 327 (1940)
M. Hayasi, M. Karimi, Polym. Bull. 74, 1995–2016 (2016)
S. Y. Lagergren, Zur Theorie der sogenannten Adsorption gelöster Stoffe, 24, 1–39 (1898)
D. Robati, J Nanostruct Chem 3, 55 (2013)