(CSIR Project No. MLP 1009). PKB kindly acknowledges CSIR, New Delhi, India for CSIR-SRF
Fellowship grant. PB is thankful to the DST, New Delhi (DST-INSPIRE Fellowship grant,
CSIR-NEIST project No. GAP-0737) for the financial support.
References
1. Huntington, T. G. (2006). Evidence for intensification of the global water cycle: Review and
synthesis. Journal of Hydrology, 319, 83–95.
2. Oki, T., & Kanae, S. (2006). Global hydrological cycles and world water resources. Science,
313, 1068–1072.
3. Fenwick, A. (2006). Waterborne infectious diseases-could they be consigned to history?
Science, 313, 1077–1081.
4. Schwarzenbach, R. P., Escher, B. I., Fenner, K., Hofstetter, T. B., & Johnson, C. A. (2006).
The challenge of micropollutants in aquatic systems. Science, 313, 1072–1077.
5. Gruber, N., & Galloway, J. N. (2008). An Earth-system perspective of the global nitrogen
cycle. Nature, 451, 293–296.
6. Filippelli, G. M. (2008). The global phosphorus cycle: Past, present, and future. Elements, 4,
89–95.
7. Jorgenson, A. K. (2009). Political-economic integration, industrial pollution, and human
health: A panel study of less-developed countries, 1980–2000. International Sociology, 24,
115–143.
8. Shao, M., Tang, X. Y., Zhang, Y. H., & Li, W. J. (2006). City clusters in china: Air and
surface water pollution. Frontiers in Ecology and the Environment, 4, 353–361.
9. Bockstaller, C., Guichard, L., Keichinger, O., Girardin, P., Galan, M. B., & Gaillard, G.
(2009). Comparison of methods to assess the sustainability of agricultural systems. A review.
Agronomy for Sustainable Development, 29, 223–235.
10. Eliopoulou, E., & Papanikolaou, A. (2007). Casualty analysis of large tankers. Journal of
Marine Science and Technology, 12, 240–250.
11. Watson, S. B. (2004). Aquatic taste, and odor: A primary signal of drinking-water integrity.
Journal of Toxicology and Environment Health, 67, 1779–1795.
12. Schwarzman, M. R., & Wilson, M. P. (2009). New science for chemicals policy. Science, 326,
1065–1066.
13. McCann, E. (2006). Asymmetry gap in the electronic band structure of bilayer graphene.
Physical Review B, 74, 161403–161407.
14. Han, M. Y., Ozyilmaz, B., Zhang, Y., & Kim, P. (2007). Energy band-gap engineering of
graphene nanoribbons. Physical Review Letters, 98, 206805–206809.
15. Balandin, A. A., Ghosh, S., Bao, W., CalizoI, I., Teweldebrhan, D., Miao, F., et al. (2008).
Superior thermal conductivity of single-layer graphene. Nano Letters, 8, 902–907.
16. Jiang, J. W., Wang, J. S., & Li, B. (2009). Young’s modulus of graphene: A molecular
dynamics study. Physical Review B, 80, 113405–113409.
17. Zhang, Y., Tan, Y. W., Stormer, H. L., & Kim, P. (2005). Experimental observation of the
quantum hall effect and berry’s phase in graphene. Nature, 438, 201–204.
18. Novoselov, K. S., Jiang, Z., Zhang, Y., Morozov, S. V., Stormer, H. L., Zeitler, U., et al.
(2007). Room temperature quantum hall effect in graphene. Science, 315, 1379–1382.
19. Mayorov, A. S., Gorbachev, R. V., Morozov, S. V., Britnell, L., Jalil, R., Ponomarenko, L.
A., et al. (2011). Micrometer-scale ballistic transport in encapsulated graphene at room
temperature. Nano Letters, 11, 2396–2399.
20. Areshkin, D. A., Gunlycke, D., & White, C. T. (2007). Ballistic transport in graphene
nanostrips in the presence of disorder: Importance of edge effects. Nano Letters, 7, 204–210.
102
M. J. Deka et al.
Fellowship grant. PB is thankful to the DST, New Delhi (DST-INSPIRE Fellowship grant,
CSIR-NEIST project No. GAP-0737) for the financial support.
References
1. Huntington, T. G. (2006). Evidence for intensification of the global water cycle: Review and
synthesis. Journal of Hydrology, 319, 83–95.
2. Oki, T., & Kanae, S. (2006). Global hydrological cycles and world water resources. Science,
313, 1068–1072.
3. Fenwick, A. (2006). Waterborne infectious diseases-could they be consigned to history?
Science, 313, 1077–1081.
4. Schwarzenbach, R. P., Escher, B. I., Fenner, K., Hofstetter, T. B., & Johnson, C. A. (2006).
The challenge of micropollutants in aquatic systems. Science, 313, 1072–1077.
5. Gruber, N., & Galloway, J. N. (2008). An Earth-system perspective of the global nitrogen
cycle. Nature, 451, 293–296.
6. Filippelli, G. M. (2008). The global phosphorus cycle: Past, present, and future. Elements, 4,
89–95.
7. Jorgenson, A. K. (2009). Political-economic integration, industrial pollution, and human
health: A panel study of less-developed countries, 1980–2000. International Sociology, 24,
115–143.
8. Shao, M., Tang, X. Y., Zhang, Y. H., & Li, W. J. (2006). City clusters in china: Air and
surface water pollution. Frontiers in Ecology and the Environment, 4, 353–361.
9. Bockstaller, C., Guichard, L., Keichinger, O., Girardin, P., Galan, M. B., & Gaillard, G.
(2009). Comparison of methods to assess the sustainability of agricultural systems. A review.
Agronomy for Sustainable Development, 29, 223–235.
10. Eliopoulou, E., & Papanikolaou, A. (2007). Casualty analysis of large tankers. Journal of
Marine Science and Technology, 12, 240–250.
11. Watson, S. B. (2004). Aquatic taste, and odor: A primary signal of drinking-water integrity.
Journal of Toxicology and Environment Health, 67, 1779–1795.
12. Schwarzman, M. R., & Wilson, M. P. (2009). New science for chemicals policy. Science, 326,
1065–1066.
13. McCann, E. (2006). Asymmetry gap in the electronic band structure of bilayer graphene.
Physical Review B, 74, 161403–161407.
14. Han, M. Y., Ozyilmaz, B., Zhang, Y., & Kim, P. (2007). Energy band-gap engineering of
graphene nanoribbons. Physical Review Letters, 98, 206805–206809.
15. Balandin, A. A., Ghosh, S., Bao, W., CalizoI, I., Teweldebrhan, D., Miao, F., et al. (2008).
Superior thermal conductivity of single-layer graphene. Nano Letters, 8, 902–907.
16. Jiang, J. W., Wang, J. S., & Li, B. (2009). Young’s modulus of graphene: A molecular
dynamics study. Physical Review B, 80, 113405–113409.
17. Zhang, Y., Tan, Y. W., Stormer, H. L., & Kim, P. (2005). Experimental observation of the
quantum hall effect and berry’s phase in graphene. Nature, 438, 201–204.
18. Novoselov, K. S., Jiang, Z., Zhang, Y., Morozov, S. V., Stormer, H. L., Zeitler, U., et al.
(2007). Room temperature quantum hall effect in graphene. Science, 315, 1379–1382.
19. Mayorov, A. S., Gorbachev, R. V., Morozov, S. V., Britnell, L., Jalil, R., Ponomarenko, L.
A., et al. (2011). Micrometer-scale ballistic transport in encapsulated graphene at room
temperature. Nano Letters, 11, 2396–2399.
20. Areshkin, D. A., Gunlycke, D., & White, C. T. (2007). Ballistic transport in graphene
nanostrips in the presence of disorder: Importance of edge effects. Nano Letters, 7, 204–210.
102
M. J. Deka et al.
