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Green Chemistry for Nanotechnology: Opportunities and Future Challenges

机译:纳米技术的绿色化学:机遇与未来挑战

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Nanotechnology is a paradigm for emerging technologies and much talked about area of science. It is the technology of future and has revolutionized all fields of medicine, agriculture, environmental and electronics by providing abilities that would never have previously dreamt of. It is a unique platform of multidisciplinary approaches integrating diverse fields of engineering, biology, physics and chemistry. In recent years, nanotechnology has seen the fastest pace in its all aspects of synthesis methodologies and wide applications in all areas of medicine, agricultural, environmental, and electronics. It is the impact of nanotechnology approaches that new fields of nanomedicine, cancer nanotechnology, nanorobotics and nanoelectronics have been emerged and are flourishing with the advances in this expanding field. Nanotechnology holds the potential for pervasive and promising applications and getting significant attention and financial aids also. Although there are different definitions of nanotechnology, in broad prospective, nanotechnology can be described as designing or exploiting materials at nanometer dimensions (i.e., one dimension less than 100 nanometers). At nanoscale, substances have a larger surface area to volume ratio than conventional materials which is the prime reason behind their increased level of reactivity, improved and size tunable magnetic, optical and electrical properties and more toxicity also.
机译:纳米技术是新兴技术的典范,并且广泛讨论了科学领域。它是未来的技术,它通过提供以前从未梦想过的能力,彻底改变了医学,农业,环境和电子学的所有领域。它是一个综合了工程,生物学,物理和化学各个领域的多学科方法的独特平台。近年来,纳米技术在合成方法的各个方面都取得了最快的进展,并在医学,农业,环境和电子学的各个领域得到了广泛的应用。纳米技术方法的影响使纳米医学,癌症纳米技术,纳米机器人技术和纳米电子学等新领域得以出现,并随着该领域的发展而蓬勃发展。纳米技术具有广泛应用和前景广阔的潜力,并且也得到了广泛的关注和财务帮助。尽管对纳米技术有不同的定义,但在广阔的前景中,可以将纳米技术描述为以纳米尺寸(即小于100纳米的一个尺寸)设计或开发材料。在纳米级,物质比常规材料具有更大的表面积与体积之比,这是其反应性水平提高,磁,光和电性能得到改善和尺寸可调以及更大毒性的主要原因。

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