functionalized nanomaterials
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2022 ◽  
pp. 393-406
Author(s):  
Vildan Erduran ◽  
Muhammed Bekmezci ◽  
Ramazan Bayat ◽  
Zübeyde Bayer Altuntaş ◽  
Fatih Sen

2022 ◽  
pp. 1-26
Author(s):  
Tobiloba Christiana Elebiyo ◽  
Damilare Rotimi ◽  
Rotdelmwa Maimako Asaleye ◽  
Boluwatife Boluwatife Afolabi ◽  
Bukola Taiwo Atunwa ◽  
...  

The world is going green; hence, environmentally friendly practices that would conserve natural resources for the future generation are encouraged. As a consequence, the world is less concerned about the numerous applications of nanotechnology, especially in the health sector; rather, it is more concerned about the sustainability of functionalized nanomaterials. Thus, the future of nanotechnology depends on its ability to ‘go green'. Green nanotechnology attempts to synthesize improved, nontoxic, and biocompatible nanomaterials with sustainable benefits using eco-friendly materials. Although green nanotechnology is considered a sustainable, viable, and biocompatible approach to the production of eco-friendly nanomaterials, there are shortcomings especially in microbial handling and process optimization. In this chapter, the authors aim to appraise not only the use of biocompatible approaches for the synthesis of nanoparticles and/or nanomaterials but also their shortcomings.


2022 ◽  
pp. 21-41
Author(s):  
Gaytri Mahajan ◽  
Manpreet Kaur ◽  
Reena Gupta

2022 ◽  
pp. 165-174
Author(s):  
Balaji Maddiboyina ◽  
OmPrakash Sunaapu ◽  
Sandeep Chandrashekharappa ◽  
Gandhi Sivaraman

2022 ◽  
pp. 55-69
Author(s):  
Muhammed Bekmezci ◽  
Ramazan Bayat ◽  
Vildan Erduran ◽  
Fatih Sen

Materials ◽  
2021 ◽  
Vol 15 (1) ◽  
pp. 172
Author(s):  
Stanisław Krompiec ◽  
Aneta Kurpanik-Wójcik ◽  
Marek Matussek ◽  
Bogumiła Gołek ◽  
Angelika Mieszczanin ◽  
...  

Phenyl, naphthyl, polyarylphenyl, coronene, and other aromatic and polyaromatic moieties primarily influence the final materials’ properties. One of the synthetic tools used to implement (hetero)aromatic moieties into final structures is Diels–Alder cycloaddition (DAC), typically combined with Scholl dehydrocondensation. Substituted 2-pyranones, 1,1-dioxothiophenes, and, especially, 1,3-cyclopentadienones are valuable substrates for [4 + 2] cycloaddition, leading to multisubstituted derivatives of benzene, naphthalene, and other aromatics. Cycloadditions of dienes can be carried out with extrusion of carbon dioxide, carbon oxide, or sulphur dioxide. When pyranones, dioxothiophenes, or cyclopentadienones and DA cycloaddition are aided with acetylenes including masked ones, conjugated or isolated diynes, or polyynes and arynes, aromatic systems are obtained. This review covers the development and the current state of knowledge regarding thermal DA cycloaddition of dienes mentioned above and dienophiles leading to (hetero)aromatics via CO, CO2, or SO2 extrusion. Particular attention was paid to the role that introduced aromatic moieties play in designing molecular structures with expected properties. Undoubtedly, the DAC variants described in this review, combined with other modern synthetic tools, constitute a convenient and efficient way of obtaining functionalized nanomaterials, continually showing the potential to impact materials sciences and new technologies in the nearest future.


Nanomaterials ◽  
2021 ◽  
Vol 12 (1) ◽  
pp. 18
Author(s):  
Ramar Thangam ◽  
Ramasamy Paulmurugan ◽  
Heemin Kang

Functionalized nanomaterials of various categories are essential for developing cancer nano-theranostics for brain diseases; however, some limitations exist in their effectiveness and clinical translation, such as toxicity, limited tumor penetration, and inability to cross blood–brain and blood-tumor barriers. Metal nanomaterials with functional fluorescent tags possess unique properties in improving their functional properties, including surface plasmon resonance (SPR), superparamagnetism, and photo/bioluminescence, which facilitates imaging applications in addition to their deliveries. Moreover, these multifunctional nanomaterials could be synthesized through various chemical modifications on their physical surfaces via attaching targeting peptides, fluorophores, and quantum dots (QD), which could improve the application of these nanomaterials by facilitating theranostic modalities. In addition to their inherent CT (Computed Tomography), MRI (Magnetic Resonance Imaging), PAI (Photo-acoustic imaging), and X-ray contrast imaging, various multifunctional nanoparticles with imaging probes serve as brain-targeted imaging candidates in several imaging modalities. The primary criteria of these functional nanomaterials for translational application to the brain must be zero toxicity. Moreover, the beneficial aspects of nano-theranostics of nanoparticles are their multifunctional systems proportioned towards personalized disease management via comprising diagnostic and therapeutic abilities in a single biodegradable nanomaterial. This review highlights the emerging aspects of engineered nanomaterials to reach and deliver therapeutics to the brain and how to improve this by adopting the imaging modalities for theranostic applications.


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