Nanosolutions for a Sustainable Tomorrow: Harnessing Nanomaterials for a Green Environment
MAHESH KUMAR BHIMWAL, DR. DEEPSHIKHA SHARMA (2024). Nanosolutions for a Sustainable Tomorrow: Harnessing Nanomaterials for a Green Environment. https://doi.org/10.70130/cast.2024.7101
MAHESH KUMAR BHIMWAL, DR. DEEPSHIKHA SHARMA. "Nanosolutions for a Sustainable Tomorrow: Harnessing Nanomaterials for a Green Environment.". DOI: 10.70130/cast.2024.7101.
MAHESH KUMAR BHIMWAL, DR. DEEPSHIKHA SHARMA. "Nanosolutions for a Sustainable Tomorrow: Harnessing Nanomaterials for a Green Environment.". https://doi.org/10.70130/cast.2024.7101.
@article{mahesh2024nanosolutions,
title = {Nanosolutions for a Sustainable Tomorrow: Harnessing Nanomaterials for a Green Environment},
author = {MAHESH KUMAR BHIMWAL and DR. DEEPSHIKHA SHARMA},
year = 2024,
journal = {},
volume = 07,
number = 01,
pages = 01-14,
doi = 10.70130/cast.2024.7101,
url = oai:ojs2.pubs.rsyn.org:article/5,
language = en
}
TY - JOUR TI - Nanosolutions for a Sustainable Tomorrow: Harnessing Nanomaterials for a Green Environment AU - MAHESH KUMAR BHIMWAL AU - DR. DEEPSHIKHA SHARMA PY - 2024 DA - 2024-03-01 VL - 07 IS - 01 SP - 01-14 DO - 10.70130/cast.2024.7101 UR - oai:ojs2.pubs.rsyn.org:article/5 AB - Nanomaterials have various advantages, but we still do not fully understand how they can affect the environment and public health. When engineered at the nanoscale, even familiar materials such as silver may become dangerous. Certain nanomaterials may be found in nature, such as lipids present in human fat and blood and proteins carried by the blood that are vital to life. However, engineered nanomaterials are of great interest to scientists. Engineered nanomaterials have piqued the interest of scientists because they are intended for application in a wide range of consumer goods, gadgets, and constructions. Currently, engineered nanomaterials are used in the production of hundreds of everyday products, such as electronics, sporting goods, sunscreens, cosmetics, and clothes that resist stains. They work in environmental cleanup, pharmaceutical delivery, medical diagnostics, and imaging. LA - en ER -
π€ AI Key Takeaways & Research Insights
Automated AI Analysisπ‘ Core Finding
Nanomaterials have various advantages, but we still do not fully understand how they can affect the environment and public health.
π¬ Methodology
When engineered at the nanoscale, even familiar materials such as silver may become dangerous.
π― Domain Impact
They work in environmental cleanup, pharmaceutical delivery, medical diagnostics, and imaging.
Abstract
Nanomaterials have various advantages, but we still do not fully understand how they can affect the environment and public health. When engineered at the nanoscale, even familiar materials such as silver may become dangerous. Certain nanomaterials may be found in nature, such as lipids present in human fat and blood and proteins carried by the blood that are vital to life. However, engineered nanomaterials are of great interest to scientists. Engineered nanomaterials have piqued the interest of scientists because they are intended for application in a wide range of consumer goods, gadgets, and constructions. Currently, engineered nanomaterials are used in the production of hundreds of everyday products, such as electronics, sporting goods, sunscreens, cosmetics, and clothes that resist stains. They work in environmental cleanup, pharmaceutical delivery, medical diagnostics, and imaging.
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