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Featured researches published by Deewan Akram.


RSC Advances | 2015

Linseed oil polyol/ZnO bionanocomposite towards mechanically robust, thermally stable, hydrophobic coatings: a novel synergistic approach utilising a sustainable resource

Eram Sharmin; Obaid ur Rahman; Fahmina Zafar; Deewan Akram; Manawwer Alam; Sharif Ahmad

Linseed oil polyol/ZnO bionanocomposite was prepared to obtain mechanically robust, thermally stable, hydrophobic coatings via a novel synergistic approach utilising a vegetable oil polyol for the first time. The synthesis process obviates the use of reducing agents, surfactants, reaction media, stabilizing agents, solvents, and other chemicals. Linseed polyol serves the purpose of obtaining ZnO nanoparticles. The linseed polyol backbone hosts hydroxyl and carboxylic groups that participate in the generation of ZnO nanoparticles in the polyol matrix (ester elimination, addition–elimination reaction). The progress of the reaction was monitored by recording FTIR spectra at regular intervals of time. The coatings obtained were scratch-resistant, impact-resistant, well-adherent, flexibility-retentive and hydrophobic, showing good chemical resistance under acidic, alkaline, and salt environments. Thermogravimetric analysis revealed that these coatings could be safely used up to 250 °C. The work described is consistent with the principles of “Green Chemistry” (Principles 1, 2, 3, 4, 5, 6, 7, 8, and 12), such as utilising a renewable feedstock, resorting to a solventless approach, and employing safer chemistry. The results showed that these coatings may be well employed as promising candidates towards environmentally friendly corrosion protective coatings.


Archive | 2012

One Pot Preparation of Greener Nanohybrid from Plant Oil

Eram Sharmin; Deewan Akram; Arti Vashist; M. Y. Wani; A. Ahmad; Fahmina Zafar; Sharif Ahmad

Plants have been the prime resource of food, clothing, medicine and other basic needs of humans since primeval times. Today, much beyond this, the advancements in the knowledge of chemistry, development of sophisticated analytical instruments and techniques as well as the advent of nanotechnology have augmented their use manifolds as biofactories of nature. Plant oils serve as raw materials for polymers, nanohybrids and composites therefrom, for versatile advanced applications. On similar lines, the study presents preliminary account of “one-pot-preparation”, characterization and antibacterial behavior of microwave processed plant oil based nanohybrid.


Arabian Journal of Chemistry | 2014

Vegetable oil based eco-friendly coating materials: A review article

Manawwer Alam; Deewan Akram; Eram Sharmin; Fahmina Zafar; Sharif Ahmad


Industrial Crops and Products | 2015

Recent advances in vegetable oils based environment friendly coatings: A review

Eram Sharmin; Fahmina Zafar; Deewan Akram; Manawwer Alam; Sharif Ahmad


Macromolecular Chemistry and Physics | 2010

Silica Reinforced Organic-Inorganic Hybrid Polyurethane Nanocomposites From Sustainable Resource

Deewan Akram; Shahzada Ahmad; Eram Sharmin; Sharif Ahmad


Progress in Organic Coatings | 2008

Synthesis, characterization and corrosion protective properties of boron-modified polyurethane from natural polyol

Deewan Akram; Eram Sharmin; Sharif Ahmad


Progress in Organic Coatings | 2012

Plant oil polyol based poly (ester urethane) metallohybrid coatings

Eram Sharmin; Deewan Akram; Fahmina Zafar; S. M. Ashraf; Sharif Ahmad


Progress in Organic Coatings | 2014

Linseed polyurethane/tetraethoxyorthosilane/fumed silica hybrid nanocomposite coatings: Physico-mechanical and potentiodynamic polarization measurements studies

Deewan Akram; Eram Sharmin; Sharif Ahmad


Progress in Organic Coatings | 2013

Plant oil polyol nanocomposite for antibacterial polyurethane coating

Eram Sharmin; Fahmina Zafar; Deewan Akram; Sharif Ahmad


Progress in Organic Coatings | 2011

Preparation and characterization of nanostructured biohybrid

Eram Sharmin; Deewan Akram; Anujit Ghosal; Obaid ur Rahman; Fahmina Zafar; Sharif Ahmad

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A. Ahmad

Jamia Millia Islamia

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