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Contrasting effects of engineered carbon nanotubes on plants: a review

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Contrasting effects of engineered carbon nanotubes on plants: a review. / Vithanage, Meththika; Seneviratne, Mihiri; Ahmad, Mahtab et al.
In: Environmental Geochemistry and Health, Vol. 39, No. 6, 01.12.2017, p. 1421–1439.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Vithanage, M, Seneviratne, M, Ahmad, M, Sarkar, B & Ok, YS 2017, 'Contrasting effects of engineered carbon nanotubes on plants: a review', Environmental Geochemistry and Health, vol. 39, no. 6, pp. 1421–1439. https://doi.org/10.1007/s10653-017-9957-y

APA

Vithanage, M., Seneviratne, M., Ahmad, M., Sarkar, B., & Ok, Y. S. (2017). Contrasting effects of engineered carbon nanotubes on plants: a review. Environmental Geochemistry and Health, 39(6), 1421–1439. https://doi.org/10.1007/s10653-017-9957-y

Vancouver

Vithanage M, Seneviratne M, Ahmad M, Sarkar B, Ok YS. Contrasting effects of engineered carbon nanotubes on plants: a review. Environmental Geochemistry and Health. 2017 Dec 1;39(6):1421–1439. doi: 10.1007/s10653-017-9957-y

Author

Vithanage, Meththika ; Seneviratne, Mihiri ; Ahmad, Mahtab et al. / Contrasting effects of engineered carbon nanotubes on plants : a review. In: Environmental Geochemistry and Health. 2017 ; Vol. 39, No. 6. pp. 1421–1439.

Bibtex

@article{11a95c2b7e5d460f95c92014d8edc724,
title = "Contrasting effects of engineered carbon nanotubes on plants: a review",
abstract = "Rapid surge of interest for carbon nanotube (CNT) in the last decade has made it an imperative member of nanomaterial family. Because of the distinctive physicochemical properties, CNTs are widely used in a number of scientific applications including plant sciences. This review mainly describes the role of CNT in plant sciences. Contradictory effects of CNT on plants physiology are reported. CNT can act as plant growth inducer causing enhanced plant dry biomass and root/shoot lengths. At the same time, CNT can cause negative effects on plants by forming reactive oxygen species in plant tissues, consequently leading to cell death. Enhanced seed germination with CNT is related to the water uptake process. CNT can be positioned as micro-tubes inside the plant body to enhance the water uptake efficiency. Due to its ability to act as a slow-release fertilizer and plant growth promoter, CNT is transpiring as a novel nano-carbon fertilizer in the field of agricultural sciences. On the other hand, accumulation of CNT in soil can cause deleterious effects on soil microbial diversity, composition and population. It can further modify the balance between plant-toxic metals in soil, thereby enhancing the translocation of heavy metal(loids) into the plant system. The research gaps that need careful attention have been identified in this review.",
author = "Meththika Vithanage and Mihiri Seneviratne and Mahtab Ahmad and Binoy Sarkar and Ok, {Yong Sik}",
year = "2017",
month = dec,
day = "1",
doi = "10.1007/s10653-017-9957-y",
language = "English",
volume = "39",
pages = "1421–1439",
journal = "Environmental Geochemistry and Health",
issn = "0269-4042",
publisher = "Springer Netherlands",
number = "6",

}

RIS

TY - JOUR

T1 - Contrasting effects of engineered carbon nanotubes on plants

T2 - a review

AU - Vithanage, Meththika

AU - Seneviratne, Mihiri

AU - Ahmad, Mahtab

AU - Sarkar, Binoy

AU - Ok, Yong Sik

PY - 2017/12/1

Y1 - 2017/12/1

N2 - Rapid surge of interest for carbon nanotube (CNT) in the last decade has made it an imperative member of nanomaterial family. Because of the distinctive physicochemical properties, CNTs are widely used in a number of scientific applications including plant sciences. This review mainly describes the role of CNT in plant sciences. Contradictory effects of CNT on plants physiology are reported. CNT can act as plant growth inducer causing enhanced plant dry biomass and root/shoot lengths. At the same time, CNT can cause negative effects on plants by forming reactive oxygen species in plant tissues, consequently leading to cell death. Enhanced seed germination with CNT is related to the water uptake process. CNT can be positioned as micro-tubes inside the plant body to enhance the water uptake efficiency. Due to its ability to act as a slow-release fertilizer and plant growth promoter, CNT is transpiring as a novel nano-carbon fertilizer in the field of agricultural sciences. On the other hand, accumulation of CNT in soil can cause deleterious effects on soil microbial diversity, composition and population. It can further modify the balance between plant-toxic metals in soil, thereby enhancing the translocation of heavy metal(loids) into the plant system. The research gaps that need careful attention have been identified in this review.

AB - Rapid surge of interest for carbon nanotube (CNT) in the last decade has made it an imperative member of nanomaterial family. Because of the distinctive physicochemical properties, CNTs are widely used in a number of scientific applications including plant sciences. This review mainly describes the role of CNT in plant sciences. Contradictory effects of CNT on plants physiology are reported. CNT can act as plant growth inducer causing enhanced plant dry biomass and root/shoot lengths. At the same time, CNT can cause negative effects on plants by forming reactive oxygen species in plant tissues, consequently leading to cell death. Enhanced seed germination with CNT is related to the water uptake process. CNT can be positioned as micro-tubes inside the plant body to enhance the water uptake efficiency. Due to its ability to act as a slow-release fertilizer and plant growth promoter, CNT is transpiring as a novel nano-carbon fertilizer in the field of agricultural sciences. On the other hand, accumulation of CNT in soil can cause deleterious effects on soil microbial diversity, composition and population. It can further modify the balance between plant-toxic metals in soil, thereby enhancing the translocation of heavy metal(loids) into the plant system. The research gaps that need careful attention have been identified in this review.

U2 - 10.1007/s10653-017-9957-y

DO - 10.1007/s10653-017-9957-y

M3 - Journal article

VL - 39

SP - 1421

EP - 1439

JO - Environmental Geochemistry and Health

JF - Environmental Geochemistry and Health

SN - 0269-4042

IS - 6

ER -