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References


Abbas SS, Haneef M, Lohani M, Tabassum H, Khan AF (2016) Nanomaterials used as a plants growth enhancer: an update. International Journal of Pharmaceutical Sciences Review and Research 5(7):17-23.

Awasthi K, Awasthi R (2019) Carbon Nanomaterials for Crop Management, In:  Srivastava R (Ed.) Sustainable Practices for Natural Resource Management through Biological Tools. Bharti Publication  Pp. 1-12.

Canas JE, Long M, Nations S, Vadan R, Dai L, Luo M, Ambikapathi R, Lee EH, Olszyk D (2008) Effects of functionalized and nonfunctionalized single-walled carbon nanotubes on root elongation of selected crop. Environmental Toxicology and Chemistry 27(9): 1922–1931.

Chhipa H (2019) Applications of nanotechnology in agriculture. Methods in Microbiology 46: 115-142.

Ghodake G, Seo YD, Park D, Lee DS (2010) Phytotoxicity of carbon nanotubes assessed by Brassica juncea and Phaseolus mungo. Journal of Nanoelectronics and Optoelectronics 5(2):157–160.

Husen A, Siddiqi KS (2014) Carbon and fullerene nanomaterials in plant System. Journal of Nanobiotechnology 12:16.

Jackson ML (1958) Soil chemical analysis. Prentice-Hall, Englewood, Cliffs, New Jersey, pp. 485

Janas D, Stando G (2017) Unexpectedly strong hydrophilic character of free-standing thin films from carbon nanotubes. Science Report  7: 12274.

Kharisov BI, Kharissova OV, Gutierrez HL, Mendez UO (2009) Recent advances on the soluble carbon nanotubes. Industrial and Engineering Chemistry Research 48(2):572–590.

Khodakovaskaya MV, Kim BS, Kim JN, Mahmood M, Dervishi E, Mustafa T, Cernigla CE (2013) Carbon nanotubes as plant growth regulators: Effects on tomato growth, reproductive system and soil microbial community. Small 9(1): 115-123.

Khodakovskaya M, Dervishi E, Mahmood M, Xu Y, Li Z, Watanabe F, Biris AS (2009) Carbon nanotubes are able to penetrate plant seed coat and dramatically affect seed germination and plant growth. ACS Nano 3(10): 3221-3227.

Khot LR, Sankaran S, Maja JM, Ehsani R, Schuster EW (2012) Applications of nanomaterials in agricultural production and crop protection: A review. Crop Protection 35: 64-70.

Lahiani MH, Dervishi E, Chen J, Nima Z, Gaume A, Biris AS, Khodakovskaya MV (2013) Impact of carbon nanotube exposure to seeds of valuable crops. ACS Applied Materials and Interfaces 5: 7965–7973.

Manjunatha SB, Biradar DP, Aladakatti YR (2016) Nanotechnology and its applications in agriculture: A review. Journal of Farm Sciences 29(1): 1-13.

Mohamed AM, Ayat FH, Mousa AA, Abd-Elsalam KA (2018) Nano-carbon: Plant Growth Promotion and Protection, In: Abd-Elsalam KA, Prasad R (Eds.) Nanobiotechnology Applications in Plant Protection, Nanotechnology in the Life Sciences. Springer, Berlin, Pp155-188.

Mondal A, Basu R, Das S, Nandy P (2011) Beneficial role of carbon nanotubes on mustard plant growth: an agricultural prospect. Journal of Nanoparticles Research 13: 4519–4528.

Mukherjee A, Majumdar S, Servin AD, Pagano L, Dhankher OP, White JC (2016) Carbon Nanomaterials in Agriculture: A Critical Review. Frontiers in Plant Science 172 (sp.7): 1-16.

Nalwade AR, Neharkar SB (2013) Carbon nanotubes enhance the growth and yield of hybrid Bt cotton Var. ACH-177-2. International Journal of Advanced Scientific and Technical Research 3:840-846.

Parisi C, Vigani M, Rodríguez-Cerezo E (2015) Agricultural Nanotechnologies: What are the current possibilities? Nano Today 10: 124-127.

Patel A, Tiwari S, Parihar P, Singh R, Prasad SM (2019) Carbon nanotubes as plant growth regulators: Impacts on growth, reproductive system and soil microbial community In: Tripathi DK, Ahmad P, Sharma S, Chauhan DK, Dubey NK (Eds.) Nanomaterials in plants, algae and microorganisms: Concepts and controversies. Academic press, 2: 23-42.

Piper CS (1966) Soil and plant analysis. Hans publishers, Bombey, Pp. 366.

Prasad R, Kumar V, Prasad KS (2014) Nanotechnology in sustainable agriculture: Present concerns and future aspects. African Journal of Biotechnology 13(6): 705-713.

Shukla P, Chaurasia P, Younis K, Qadri OS, Faridi SA, Srivastava G (2019) Nanotechnology in sustainable agriculture: Studies from seed priming to post-harvest management. Nanotechnology for Environmental Engineering 4: 11. 

Srinivasan C, Saraswathi R (2010) Nano-agriculture-carbon nanotubes enhance tomato seed germination and plant growth. Current Science 99:273–275.

 

Srivastava A, Rao DP (2014) Enhancement of seed germination and plant growth of wheat, maize, peanut and garlic using multiwalled carbon nanotubes. European Chemical Bulletin 3(5): 502-504.

Srivastava A, Srivastava ON, Talapatra S, Vajtai, Ajayan PM (2004) Carbon nanotube filters. Nature Materials 3: 610-4.

Srivastava R (2019) Book review of emerging trends of nanotechnology in environment and sustainability. Australasian Journal of Environment and Management 26(2): 191-192.

Srivastava R, Awasthi K, Tripathi D (2018) Nanotechnology towards sustainable agriculture.International Journal of Scientific Research in Physics and Applied Sciences 6: 155-158.

Srivastava R, Mohapatra M, Latare A (2020) Impact of land use changes on soil quality and species diversity in the Vindhyan dry tropical region of India. Journal of Tropical Ecology 36(1):72-79.

Stobinski L, Lesiak B, Kover L, Toth J, Biniak S,  Ykowski G, Judek J (2010) Multiwall carbon nanotubes purification and oxidation by nitric acid studied by the FTIR and electron spectroscopy methods. Journal of Alloys and Compounds 501:77–84

Tripathi S, Sonkar SK, Sarkar S (2011) Growth stimulation of gram (Cicerarietinum) plant by water soluble carbon nanotubes. Nanoscale 3: 1176–1181.

Verma SK, Das AK, Gantait S, Kumar V, Gurel E (2019) Applications of carbon nanomaterials in the plant system: A perspective view on the pros and cons. Science of the Total Environment  667: 485-499

Villagarcia H, Dervishi E, de Silva K, Biris AS, Khodakovskaya MV (2012) Surface chemistry of carbon nanotubes impacts the growth and expression of water channel protein in tomato plants. Small 8(15):2328–2334.

Walkley A (1947) A critical examination of a rapid method for determination of organic carbon in soils - effect of variations in digestion conditions and of inorganic soil constituents. Soil Science 63: 251-257.

Wang X, Han H, Liu X, Gu X, Chen K, Lu D (2012) Multi-walled carbon nanotubes can enhance root elongation of wheat (Triticum aestivum) plants. Journal of Nanoparticle Research 14: 841-850.

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