A brief overview on nano-agrochemicals
Subject Areas : Applications of NanostructuresAbdolmanan Narouei 1 , Milad Narouei 2
1 - Department of Chemistry, Faculty of Science, University of Sistan and Baluchestan, Zahedan, Iran
2 - Department of Chemistry, Faculty of Science, University of Sistan and Baluchestan, Zahedan, Iran
Keywords: nanotechnology, Nano-Agriculture, Nanostructure, Nano-Pesticide,
Abstract :
In recent years, nanotechnology has received much attention due to its wide applications in various fields. As the surface area increases, the functional efficiency of the nanostructure also increases. Today, the potential application of nanotechnology in the field of agriculture has led to extensive research. The combination of nanotechnology and agriculture is a new tool and leads to the production of nano-fertilizers, nano-herbicides, nano-fungicides, nano-pesticides and nano-insecticides, commonly referred to as nano-agrochemicals. These nano agrochemical have gained a lot of research interest due to their cost-effective and environmentally friendly nature. In addition to the many benefits of nano-agrochemicals in agriculture, they help to replace synthetic fertilizers and pesticides, leading to increased yields of production. However, extensive research is being done in this field. Some of the challenges include accessibility for farmers, cost of production, lack of awareness, impact on the environment, humans, etc. This article reviews the current impacts of nanotechnology in agriculture, agrochemicals and their characterizations and also importance of nanotechnology on sustainable development of agriculture.
1. Y. Shang, M.K. Hasan, G.J. Ahammed, M. Li, H. Yin, J. Zhou, Molecules. 24, 14 (2019).
2. M. Usman, M. Farooq, A. Wakeel, A. Nawaz, S.A. Cheema, H. ur Rehman, I. Ashraf, M. Sanaullah, Sci. Total Environ. 721, 137778 (2020).
3. P. Zhang, Z. Guo, S. Ullah, G. Melagraki, A. Afantitis, I. Lynch, Nat. Plants. 7, 7 (2021).
4. A. Acharya, P.K. Pal, NanoImpact. 19, 100232 (2020).
5. A. Malakar, S.R. Kanel, C. Ray, D.D. Snow, M.N. Nadagouda, Sci. Total Environ.. 759, 143470 (2021).
6. R.J. Peters, H. Bouwmeester, S. Gottardo, V. Amenta, M. Arena, P. Brandhoff, H.J. Marvin, A. Mech, F.B. Moniz, L.Q. Pesudo, Trends in Food Sci. Technol.. 54, 155(2016).
7. N. Omerović, M. Djisalov, K. Živojević, M. Mladenović, J. Vunduk, I. Milenković, N.Ž. Knežević, I. Gadjanski, J. Vidić, Compr. Rev. Food Sci. Food Saf. 20, 3 (2021).
8. P. Pramanik, P. Krishnan, A. Maity, N. Mridha, A. Mukherjee, V. Rai, Environmental Nanotechnology Volume 4. 317(2020).
9. A. Sridhar, M. Ponnuchamy, P.S. Kumar, A. Kapoor, Environ. Chem. Lett.. 19, 2 (2021).
10. Z. Iqbal, M.I. Ansari, A.G. Memon, G. Gupta, M.S. Iqbal, Nanomaterials in Combating Plant Stress: An Approach for Future Applications, in: J.M. Al-Khayri, M.I. Ansari, A.K. Singh (Eds.), Nanobiotechnology : Mitigation of Abiotic Stress in Plants, (Springer International Publishing, Cham, 2021), pp. 561-576.
11. A. Kumar, A. Choudhary, H. Kaur, S. Guha, S. Mehta, A. Husen, Chemosphere. 295, 133798 (2022).
12. S.S. Salem, A. Fouda, Biol. Trace Elem. Res. 199, 1 (2021).
13. N. Mitter, K. Hussey, Nature Nanotech. 14, 6 (2019).
14. K. Jabeen, F. Anum, Myco-nanotechnology in Agriculture, in: S. Javad (Ed.), Nanoagronomy, (Springer International Publishing, Cham, 2020), pp. 53-68.
15. L. Castillo-Henríquez, K. Alfaro-Aguilar, J. Ugalde-Álvarez, L. Vega-Fernández, G. Montes de Oca-Vásquez, J.R. Vega-Baudrit, Nanomaterials. 10, 9 (2020).
16. N. Kučuk, M. Primožič, Ž. Knez, M. Leitgeb, Int. J. Mol. Sci. 24, 4 (2023).
17. D. Wang, N.B. Saleh, A. Byro, R. Zepp, E. Sahle-Demessie, T.P. Luxton, K.T. Ho, R.M. Burgess, M. Flury, J.C. White, C. Su, Nature Nanotech. 17, 4 (2022).
18. Y.W. Chen, H.V. Lee, J.C. Juan, S.-M. Phang, Carbohydr. Polym. 151, 1210(2016).
19. S.A. Younis, K.-H. Kim, S.M. Shaheen, V. Antoniadis, Y.F. Tsang, J. Rinklebe, A. Deep, R.J.C. Brown, Renew. sustain. energy rev. 152, 111686 (2021).
20. K. Paunovska, D. Loughrey, J.E. Dahlman, Nat. Rev. Genet. 23, 5 (2022).
21. S.-Y. Kwak, M.H. Wong, T.T.S. Lew, G. Bisker, M.A. Lee, A. Kaplan, J. Dong, A.T. Liu, V.B. Koman, R. Sinclair, C. Hamann, M.S. Strano, Annu. Rev. Anal. Chem. 10, 1 (2017).
22. C. An, C. Sun, N. Li, B. Huang, J. Jiang, Y. Shen, C. Wang, X. Zhao, B. Cui, C. Wang, X. Li, S. Zhan, F. Gao, Z. Zeng, H. Cui, Y. Wang, J. Nanobiotechnology. 20, 1 (2022).
23. R. Grillo, L.F. Fraceto, M.J.B. Amorim, J.J. Scott-Fordsmand, R. Schoonjans, Q. Chaudhry, J. Hazard. Mater. 404, 124148 (2021).
24. H. Chhipa, Chapter 6 - Applications of nanotechnology in agriculture, in: V. Gurtler, A.S. Ball, S. Soni (Eds.), Methods in Microbiology, (Academic Press 2019), pp. 115-142.
25. H. Singh, A. Sharma, S.K. Bhardwaj, S.K. Arya, N. Bhardwaj, M. Khatri, Environ. Sci, Process Impacts 23, 2 (2021).
26. M. Nuruzzaman, M.M. Rahman, Y. Liu, R. Naidu, J. Agric. Food Chem. 64, 7 (2016).
27. I. Ul Haq, S. Ijaz, Use of Metallic Nanoparticles and Nanoformulations as Nanofungicides for Sustainable Disease Management in Plants, in: R. Prasad, V. Kumar, M. Kumar, D. Choudhary (Eds.), Nanobiotechnology in Bioformulations, (Springer International Publishing, Cham, 2019), pp. 289-316.
28. A.R. Petosa, F. Rajput, O. Selvam, C. Öhl, N. Tufenkji, Water Res. 111, 10(2017).
29. C.R. Maruyama, M. Guilger, M. Pascoli, N. Bileshy-José, P.C. Abhilash, L.F. Fraceto, R. de Lima, Sci. Rep.. 6, 1 (2016).
30. J. Jampilek, K. Zaruba, M. Oravec, M. Kunes, P. Babula, P. Ulbrich, I. Brezaniova, R. Opatrilova, J. Triska, P. Suchy, Biomed Res. Int. 2015, (2015).
31. S. Kumar, G. Bhanjana, A. Sharma, M.C. Sidhu, N. Dilbaghi, Carbohydr. Polym. 101, 1061(2014).
32. N. Memarizadeh, M. Ghadamyari, M. Adeli, K. Talebi, Ecotoxicol. Environ. Saf.. 107, 77(2014).
33. C. Sun, K. Shu, W. Wang, Z. Ye, T. Liu, Y. Gao, H. Zheng, G. He, Y. Yin, Int. J. Pharm.. 463, 1 (2014).
34. R. Grillo, A.E.S. Pereira, C.S. Nishisaka, R. de Lima, K. Oehlke, R. Greiner, L.F. Fraceto, J. Hazard. Mater.. 278, (2014).
35. J. Jerobin, R.S. Sureshkumar, C.H. Anjali, A. Mukherjee, N. Chandrasekaran, Carbohydr. Polym.. 90, 4 (2012).
36. A. Chevillard, H. Angellier-Coussy, V. Guillard, N. Gontard, E. Gastaldi, Journal of Hazardous Materials. 205, 32(2012).
37. V. Saharan, A. Mehrotra, R. Khatik, P. Rawal, S.S. Sharma, A. Pal, Int. J. Biol. Macromol. 62, 677(2013).
38. R. Grillo, N.F.S. de Melo, R. de Lima, R.W. Lourenço, A.H. Rosa, L.F. Fraceto, J. Polym. Environ. 18, 1 (2010).
39. A. Rastogi, D.K. Tripathi, S. Yadav, D.K. Chauhan, M. Živčák, M. Ghorbanpour, N.I. El-Sheery, M. Brestic, 3 Biotech. 9, 3 (2019).
40. R. Liu, R. Lal, Science of The Total Environment. 514, 131(2015).
41. B. Czarnobai De Jorge, R. Bisotto-de-Oliveira, C.N. Pereira, J. Sant'Ana, Pest Manag. Sci. 73, 9 (2017).
42. A. do Espirito Santo Pereira, H. Caixeta Oliveira, L. Fernandes Fraceto, C. Santaella, Nanomaterials. 11, 2 (2021).
43. R. Hou, Z. Zhang, S. Pang, T. Yang, J.M. Clark, L. He, Environ. Sci. Technol.. 50, 12 (2016).
44. C.D. Patil, H.P. Borase, R.K. Suryawanshi, S.V. Patil, Enzyme Microb. Technol. 92, 18(2016).
45. S. Kumar, G. Bhanjana, A. Sharma, N. Dilbaghi, M.C. Sidhu, K.-H. Kim, Sci. Total Environ. 586, 1272(2017).
46. W. Elmer, J.C. White, Annu. Rev. Phytopathol. 56, 1 (2018).
47. Z. Xiao, N. Fan, W. Zhu, H. Qian, X. Yan, Z. Wang, S. Rasmann, ACS Nano. 17, 3107(2023).
48. S.K. Moorthy, C.H. Ashok, K.V. Rao, C. Viswanathan, Mater. Today: Proc. 2, 9, Part A (2015).
49. S. Abinaya, H.P. Kavitha, M. Prakash, A. Muthukrishnaraj, Sustain. Chem. Pharm. 19, 100368 (2021).
50. S. Husain, A. Nandi, F.Z. Simnani, U. Saha, A. Ghosh, A. Sinha, A. Sahay, S.K. Samal, P.K. Panda, S.K. Verma, J. Funct. Biomater. 14, 1 (2023).
51. H. Chhipa, Environ. Chem. Lett. 15, 1 (2017).
52. H.S. Bindra, B. Singh, 3 - Nanofertilizers and nanopesticides: Future of plant protection, in: S. Jogaiah, H.B. Singh, L.F. Fraceto, R.d. Lima (Eds.), Advances in Nano-Fertilizers and Nano-Pesticides in Agriculture, )Woodhead Publishing 2021(, pp. 57-84.
53. N. Joudeh, D. Linke, J. Nanobiotech. 20, 1 (2022).
54. M. Young, D. Willits, M. Uchida, T. Douglas, Annu. Rev. Phytopathol.. 46, 1 (2008).
55. O. Delgadillo-Vargas, R. Garcia-Ruiz, J. Forero-Álvarez, Agric. Ecosyst. Environ. 218, 150(2016).
56. A.K. Srivastava, A. Dev, S. Karmakar, Environ. Chem. Lett. 16, 1 (2018).
57. M. Kaushal, S.P. Wani, Nanosensors: Frontiers in Precision Agriculture, in: R. Prasad, M. Kumar, V. Kumar (Eds.), Nanotechnology: An Agricultural Paradigm, (Springer Singapore, Singapore, 2017), pp. 279-291.
58. T.A. Saleh, Trends Environ. Anal. Chem.. 28, e00101 (2020).
59. R.P. Singh, R. Handa, G. Manchanda, J. Controlled Release. 329, 1234(2021).
60. B. Bocca, F. Barone, F. Petrucci, F. Benetti, V. Picardo, V. Prota, G. Amendola, Food Chem. Toxicol.. 146, 111816 (2020).
61. W. Fu, J. Min, W. Jiang, Y. Li, W. Zhang, Sci. Total Environ. 721, 137561 (2020).
62. A.S. Tsagkaris, S.G. Tzegkas, G.P. Danezis, J. Food Sci. Technol.. 55, 8 (2018).
63. R. Singh, N. Kumar, R. Mehra, H. Kumar, V.P. Singh, Trends Environ. Anal. Chem. 26, e00086(2020).
64. M. Sajid, J. Płotka-Wasylka, Microchem. J. 154, 104623 (2020).
65. H. Cai, E.G. Xu, F. Du, R. Li, J. Liu, H. Shi, J. Chem. Eng. 410, 128208(2021).
66. S. Shakiba, C.E. Astete, S. Paudel, C.M. Sabliov, D.F. Rodrigues, S.M. Louie, Environ. Sci.: Nano. 7, 1 (2020).
67. Y. Picó, TrAC Trends Anal. Chem. 84, 149(2016).
68. A. Samsidar, S. Siddiquee, S.M. Shaarani, Trends Food Sci. Technol. 71, 188(2018).
69. T. Rasheed, M. Bilal, F. Nabeel, M. Adeel, H.M.N. Iqbal, Environ. Int. 122, 52(2019).
70. R. Jackson, B.A. Logue, Anal. Chim. Acta. 960, 18(2017).
71. N. Dasgupta, S. Ranjan, C. Ramalingam, Environ. Chem. Lett. 15, 4 (2017).
72. R. Prasad, A. Bhattacharyya, Q.D. Nguyen, Front. Microbiol.. 8, 1014 (2017).
73. A. Syafiuddin, Salmiati, M.R. Salim, A. Beng Hong Kueh, T. Hadibarata, H. Nur, J. Chin. Chem. Soc. 64, 7 (2017).
74. A. Shafi, J. Qadir, S. Sabir, M. Zain Khan, M.M. Rahman, Nanoagriculture: A Holistic Approach for Sustainable Development of Agriculture, in: O.V. Kharissova, L.M.T. Martínez, B.I. Kharisov (Eds.), Handbook of Nanomaterials and Nanocomposites for Energy and Environmental Applications, (Springer International Publishing, Cham, 2020), pp. 1-16.
75. S.A. Ashraf, A.J. Siddiqui, A.E.O. Elkhalifa, M.I. Khan, M. Patel, M. Alreshidi, A. Moin, R. Singh, M. Snoussi, M. Adnan, Sci. Total Environ. 768, 144990(2021).
76. D.J. McClements, ACS Omega. 5, 46 (2020).
77. R. Dixit, Wasiullah, D. Malaviya, K. Pandiyan, U.B. Singh, A. Sahu, R. Shukla, B.P. Singh, J.P. Rai, P.K. Sharma, H. Lade, D. Paul, Sustainability. 7, 2 (2015).
78. P. Marzbani, Y.M. Afrouzi, A. Omidvar, Maderas. Ciencia y tecnología. 17, 1 (2015).
79. A. Sahoo, J. Sethi, K.B. Satapathy, S.K. Sahoo, G.K. Panigrahi, Nanotech. Environ. Engin. 1(2022).
80. A. Solomon, Res. J. Nanosci. Eng. 2, (2018).
81. A. Bhattacharyya, P. Duraisamy, M. Govindarajan, A.A. Buhroo, R. Prasad, Nano-Biofungicides: Emerging Trend in Insect Pest Control, in: R. Prasad (Ed.), Advances and Applications Through Fungal Nanobiotechnology, (Springer International Publishing, Cham, 2016), pp. 307-319.
82. S. Gottardo, A. Mech, J. Drbohlavová, A. Małyska, S. Bøwadt, J. Riego Sintes, H. Rauscher, NanoImpact. 21, 100297(2021).
83. J.L. de Oliveira, E.V.R. Campos, M. Bakshi, P.C. Abhilash, L.F. Fraceto, Biotech. Adv. 32, 8 (2014).
84. W. Nilmini, J. Res. Tech. Engin. 2, 1 (2021).
85. C. Bartolucci, A. Antonacci, F. Arduini, D. Moscone, L. Fraceto, E. Campos, R. Attaallah, A. Amine, C. Zanardi, L.M. Cubillana-Aguilera, J.M. Palacios Santander, V. Scognamiglio, TrAC Trends Anal. Chem.. 125, 115840(2020).