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Featured researches published by Ahmad Amiri.


Journal of Hazardous Materials | 2018

Antibacterial biocompatible arginine functionalized mono-layer graphene: No more risk of silver toxicity

A.R. Rafieerad; A.R. Bushroa; Ahmad Amiri; K. Kalaiselvam; Km Vellasamy; Jamuna Vadivelu

Antibacterial ability is vital in biological approaches as well as functional biomaterials. Besides, cytocompatibility aspect of biologic media, tissue and organs is always concern for appropriate synthesis. From the past, metallic/oxide phases of silver (Ag) material in various macro, micro or nano configurations have been widely used for antibacterial targets. While, background of Ag toxicity within particle, film and composites is posing gradual ion release affected by molecular bounding. Recent researches conducted to control, optimize and neutralize Ag limitations finding the benefits of ideal (∼ 100%) mediation against both Gram-negative and Gram-positive bacteria. Whereas, non-degradable releases history is still a challenge and its longer accumulation may cause to disrupt biostructures and disease risk. Thus, facile development of large-area organic materials with switchable bacteria toxicity and normal cell compatibility function is interesting for concerned approaches. Here, smart positively-charged stable arginine amino acid incorporated mono layer graphene (Arg-EMGr) nanobiocomposite introduced as useful antibacterial and safe bactericidal agent competitive with Ag direct. The immunity characteristic versus Escherichia coli (E. coli) and Staphylococcus aureus (S. aureus) comparably assessed with graphene oxide (GO) and different concentrations GO-AgNPs morphology. As cell viability matter, 1,3,5,7-days vitro culture assay shown attachment proliferation and cytotoxicity due to short interaction.


Advanced Healthcare Materials | 2018

Promoting Role of MXene Nanosheets in Biomedical Sciences: Therapeutic and Biosensing Innovations

Mohammadreza Soleymaniha; Mohammad-Ali Shahbazi; Ali Reza Rafieerad; Aziz Maleki; Ahmad Amiri

MXene nanosheets have emerged as biocompatible transition metal structures, which illustrate desirable performance for various applications due to their unique structural, physicochemical, and compositional features. MXenes are currently expanding their usage territory from mechanical, optical, chemical, and electronic fields toward biomedical areas. This is mainly originated from their large surface area and strong absorbance in near-infrared region, which in combination with their facile surface functionalization with various polymers or nanoparticles, make them promising nanoplatforms for drug delivery, cancer therapy, precise biosensing and bioimaging. The facile surface modification of the MXenes can mediate the better in vivo performance of them through reduced toxicity, enhanced colloidal stability, and extended circulation within the body. Herein, the synthesis and state-of-the-art progresses of MXene nanosheets designed for biomedical applications, including structural- and dose-dependent antimicrobial activity, photothermal therapy, drug delivery, and implants are emphasized. Furthermore, biosensing applications are highlighted and a comprehensive discussion on photoacoustic imaging, magnetic resonance imaging, computed tomography imaging, and optical imaging of MXenes is presented. The challenges and future opportunities of applying MXene nanomaterials in the area of biomedicine are also discussed.


Materials Chemistry and Physics | 2018

Investigation of the thermophysical properties and stability performance of non-covalently functionalized graphene nanoplatelets with Pluronic P-123 in different solvents

Siti Shafiah Shazali; Ahmad Amiri; Mohd Nashrul Mohd Zubir; Shaifulazuar Rozali; Mohd Zakuan Zabri; Mohd Faizul Mohd Sabri; Mohammadreza Soleymaniha


Surface & Coatings Technology | 2018

Large-scale hybrid silver nanowall-reduced graphene oxide biofilm: A novel morphology by facile electrochemical deposition

A.R. Rafieerad; A.R. Bushroa; Ahmad Amiri; V. Gopinath; M. Sookhakian; S. Baradaran; M. Rafieerad; Saeed Saber-Samandari; Jamuna Vadivelu


Materials Chemistry and Physics | 2018

Evaluation on stability and thermophysical performances of covalently functionalized graphene nanoplatelets with xylitol and citric acid

Siti Shafiah Shazali; Shaifulazuar Rozali; Ahmad Amiri; Mohd Nashrul Mohd Zubir; Mohd Faizul Mohd Sabri; Mohd Zakuan Zabri


International Communications in Heat and Mass Transfer | 2018

Water-based graphene quantum dots dispersion as a high-performance long-term stable nanofluid for two-phased closed thermosyphons

Mohammadreza Soleymaniha; Ahmad Amiri; Mehdi Shanbedi; B.T. Chew; Somchai Wongwises


Materials today communications | 2018

Not-yet-designed multilayer Nb/HA/MWCNT-Au/Se/AuNPs and NbO 2 /HA/GO/Se biocomposites coated Ti6Al7Nb implant

A.R. Rafieerad; A.R. Bushroa; S.M. Banihashemian; Ahmad Amiri


Materials Research Express | 2018

Facile hydrothermal method for synthesizing nitrogen-doped graphene nanoplatelets using aqueous ammonia: dispersion, stability in solvents and thermophysical performances

Siti Shafiah Shazali; Ahmad Amiri; Mohd Nashrul Mohd Zubir; Shaifulazuar Rozali; Mohd Zakuan Zabri; Mohd Faizul Mohd Sabri


Journal of The Taiwan Institute of Chemical Engineers | 2018

Evaluation of toxicity of functionalized graphene oxide with ginsenoside Rh2, lysine and arginine on blood cancer cells (K562), red blood cells, blood coagulation and cardiovascular tissue: In vitro and in vivo studies

Hadi Zare-Zardini; Asghar Taheri-Kafrani; Mahtab Ordooei; Ahmad Amiri; Mojgan Karimi-Zarchi


Archive | 2013

PHYSICAL CHEMISTRY OF NANOCLUSTERS AND NANOMATERIALS Rapid, OnePot Synthesis of HighlySoluble Carbon Nanotubes Functionalized by LArginine 1

Behnam Ghiadi; Majid Baniadam; Morteza Maghrebi; Ahmad Amiri

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