Chemical Functionalization of Carbon Nanomaterials: by Vijay Kumar Thakur, Manju Kumari Thakur

By Vijay Kumar Thakur, Manju Kumari Thakur

Carbon-based nanomaterials are swiftly rising as essentially the most attention-grabbing fabrics within the twenty-first century. Chemical Functionalization of Carbon Nanomaterials: Chemistry and Applications offers an intensive exam of carbon nanomaterials, together with their editions and the way they are often chemically functionalized. It additionally offers a accomplished assessment of present complex purposes of functionalized carbon nanomaterials, together with the car, packaging, coating, and biomedical industries.

The e-book covers glossy options to represent chemically functionalized carbon nanomaterials in addition to characterization of floor useful teams. It comprises contributions from overseas leaders within the box who spotlight the multidisciplinary and interdisciplinary flexibility of functionalized carbon nanomaterials. The publication illustrates how common drawbacks to carbon nanomaterials, comparable to low solubility, will be countered by means of floor variations and indicates tips on how to make modifications.

It discusses advancements within the use of carbon nanomaterials in numerous serious components in clinical examine and perform, together with analytical chemistry, drug supply, and water therapy. It explores industry possibilities as a result of versatility and lengthening applicability of carbon nanomaterials. It additionally provides feedback at the course of the sphere from its present aspect, paving the way in which for destiny advancements and discovering new purposes.

Chemical Functionalization of Carbon Nanomaterials: Chemistry and Applications

is an important choice of findings in a quickly constructing box. It offers an in-depth examine the present achievements of analysis and perform whereas pointing you forward to new probabilities in functionalizing and utilizing carbon nanomaterials.

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Extra resources for Chemical Functionalization of Carbon Nanomaterials: Chemistry and Applications

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Fluidized bed reactor is the most widely used reactor for CNT preparation. Scale-up of the reactor is the major challenge [126]. Some researchers are experimenting with the formation of CNTs from ethylene. Supported catalysts such as iron, cobalt, and nickel, containing either a single metal or a mixture of metals, seem to induce the growth of isolated SWNTs or SWNT bundles in the ethylene atmosphere. The production of SWNTs, as well as DWNTs, on molybdenum and molybdenum–iron alloy catalysts has also been demonstrated.

1992) Curling and closure of graphitic networks under electron-beam irradiation, Nature 359:707–709. Bethune D. , Kiang C. , DeVries M. , Beyers R. (1993) Cobalt-catalysed growth of carbon nanotubes with single-atomic-layer walls, Nature 365:605–607. , Xu C. et al. (1996) Crystalline ropes of metallic carbon nanotubes, Science 273:483–487. , Cobden D. , McEuen P. , Chopra N. , Smalley R. E. (1997) Single-electron transport in ropes of carbon nanotubes, Science 275:1922–1925. Patent US6700550—Optical antenna array for harmonic generation, mixing and signal amplification—Google Patents.

The name is a reference to Buckminster Fuller, as C60 resembles his trademark geodesic domes. Buckminsterfullerene is the most common naturally occurring fullerene molecule, as it can be found in small quantities in soot [49,50]. Buckminsterfullerene is one of the largest objects to have been shown to exhibit wave–particle duality, as stated in the theory every object exhibits this behavior [51]. Its discovery led to the exploration of a new field of chemistry, involving the study of fullerenes.

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