Nanomaterials: An Introduction
19
To conclude, nanotechnology has the potential to impact society, both positively or
negatively. Its consumers, producers, and dealers include all the community members
and all stakeholders, so we should collectively raise the voice in its various growth
and commercialization phases. Nanotechnology is currently in its infancy stage, with
a significant lack of awareness about its effects on humans and the environment. As
civilization moves forward, the vital query is: how should we manage the risks
and uncertainties of this emergent technology? Is anyhow the COVID-19 pandemic
situation human-made? If not, we can face such circumstances due to the careless
application of nanotechnology in different fields.
References
1. Santra TS, Tseng F-G (Kevin), Barik TK (2015) Biosynthesis of silver and gold nanoparticles for potential biomedical applications—a brief review. J Nanopharmaceutics Drug Deliv
2:249–265. https://doi.org/10.1166/jnd.2014.1065
2. Kalantar-Zadeh K, Fry B (2008) Nanotechnology-enabled sensors. Springer, US
3. Bhushan B (2010) Introduction to nanotechnology. Springer handbook of nanotechnology.
Springer, Berlin Heidelberg, Berlin, Heidelberg, pp 1–13
4. Jha AR (2008) MEMS and nanotechnology-based sensors and devices for communications,
medical and aerospace applications. CRC Press
5. Bakhoum EG Micro- and nano-scale sensors and transducers
6. (2020) Handbook of single cell technology + reference. Springer
7. Microfluidics and BioMEMS: Devices and applications—1st Edition—Tu. https://www.rou
tledge.com/Microfluidics-and-BioMEMS-Devices-and-Applications/Santra/p/book/978981
4800853. Accessed 9 June 2020
8. Tseng F-G, Santra TS essentials of single-cell analysis: concepts, applications and future
prospects
9. Tseng F-G, Santra TS (2015) Micro/nano fluidic devices for single cell analysis. MDPI AG
Basel, Switz
10. Santra TS (2020) Bio-MEMS and bio-NEMS: devices and applications. Jenny Stanford
Publisher Pvt. Ltd., Singapore
11. Shinde P, Kar S, Mohan L, Chang H-Y, Tseng F-G, Nagai M, Santra TS (2020) Infrared pulse
laser activated highly efficient intracellular delivery using titanium micro-dish device. ACS
Biomater Sci Eng. https://doi.org/10.1021/acsbiomaterials.0c00785
12. Santra TS, Kar S, Chang H-Y, Tseng F-G (2020) Nano-localized single-cell nanoelectroporation. Lab Chip 17. https://doi.org/10.1039/d0lc00712a
13. Illath K, Narasimahan, AK, Nagai M, Wankhar S, Santra TS (2020) Microfluidic based
metallic nanoparticle synthesis and applications. In: Microfluidics and bio-MEMS: devices
and applications. Jenny Stanford Publisher Pte. Ltd
14. Medintz IL, Uyeda HT, Goldman ER, Mattoussi H (2005) Quantum dot bioconjugates for
imaging, labelling and sensing. Nat. Mater
15. Oshida Y (2010) Bioscience and bioengineering of titanium materials. Elsevier
16. Mohan L, Anandan C, Grips VKW (2012) Corrosion behavior of titanium alloy Beta-21S
coated with diamond like carbon in Hank’s solution. Appl Surf Sci 258:6331–6340. https://
doi.org/10.1016/j.apsusc.2012.03.032
17. Santra TS, Tseng F-G, Barik TK (2014) Green biosynthesis of gold nanoparticles and biomedical applications. Am J Nano Res Appl 2:5–12. https://doi.org/10.11648/j.nano.s.201402060
2.12
19
To conclude, nanotechnology has the potential to impact society, both positively or
negatively. Its consumers, producers, and dealers include all the community members
and all stakeholders, so we should collectively raise the voice in its various growth
and commercialization phases. Nanotechnology is currently in its infancy stage, with
a significant lack of awareness about its effects on humans and the environment. As
civilization moves forward, the vital query is: how should we manage the risks
and uncertainties of this emergent technology? Is anyhow the COVID-19 pandemic
situation human-made? If not, we can face such circumstances due to the careless
application of nanotechnology in different fields.
References
1. Santra TS, Tseng F-G (Kevin), Barik TK (2015) Biosynthesis of silver and gold nanoparticles for potential biomedical applications—a brief review. J Nanopharmaceutics Drug Deliv
2:249–265. https://doi.org/10.1166/jnd.2014.1065
2. Kalantar-Zadeh K, Fry B (2008) Nanotechnology-enabled sensors. Springer, US
3. Bhushan B (2010) Introduction to nanotechnology. Springer handbook of nanotechnology.
Springer, Berlin Heidelberg, Berlin, Heidelberg, pp 1–13
4. Jha AR (2008) MEMS and nanotechnology-based sensors and devices for communications,
medical and aerospace applications. CRC Press
5. Bakhoum EG Micro- and nano-scale sensors and transducers
6. (2020) Handbook of single cell technology + reference. Springer
7. Microfluidics and BioMEMS: Devices and applications—1st Edition—Tu. https://www.rou
tledge.com/Microfluidics-and-BioMEMS-Devices-and-Applications/Santra/p/book/978981
4800853. Accessed 9 June 2020
8. Tseng F-G, Santra TS essentials of single-cell analysis: concepts, applications and future
prospects
9. Tseng F-G, Santra TS (2015) Micro/nano fluidic devices for single cell analysis. MDPI AG
Basel, Switz
10. Santra TS (2020) Bio-MEMS and bio-NEMS: devices and applications. Jenny Stanford
Publisher Pvt. Ltd., Singapore
11. Shinde P, Kar S, Mohan L, Chang H-Y, Tseng F-G, Nagai M, Santra TS (2020) Infrared pulse
laser activated highly efficient intracellular delivery using titanium micro-dish device. ACS
Biomater Sci Eng. https://doi.org/10.1021/acsbiomaterials.0c00785
12. Santra TS, Kar S, Chang H-Y, Tseng F-G (2020) Nano-localized single-cell nanoelectroporation. Lab Chip 17. https://doi.org/10.1039/d0lc00712a
13. Illath K, Narasimahan, AK, Nagai M, Wankhar S, Santra TS (2020) Microfluidic based
metallic nanoparticle synthesis and applications. In: Microfluidics and bio-MEMS: devices
and applications. Jenny Stanford Publisher Pte. Ltd
14. Medintz IL, Uyeda HT, Goldman ER, Mattoussi H (2005) Quantum dot bioconjugates for
imaging, labelling and sensing. Nat. Mater
15. Oshida Y (2010) Bioscience and bioengineering of titanium materials. Elsevier
16. Mohan L, Anandan C, Grips VKW (2012) Corrosion behavior of titanium alloy Beta-21S
coated with diamond like carbon in Hank’s solution. Appl Surf Sci 258:6331–6340. https://
doi.org/10.1016/j.apsusc.2012.03.032
17. Santra TS, Tseng F-G, Barik TK (2014) Green biosynthesis of gold nanoparticles and biomedical applications. Am J Nano Res Appl 2:5–12. https://doi.org/10.11648/j.nano.s.201402060
2.12
