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Mehdi Kheradmandfard

Explore the profile of Mehdi Kheradmandfard including associated specialties, affiliations and a list of published articles. Areas
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Citations 11
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Recent Articles
1.
Babaei M, Ebrahim-Najafabadi N, Mirzadeh M, Abdali H, Farnaghi M, Gharavi M, et al.
Biomater Adv . 2024 May; 161:213900. PMID: 38772132
This study investigates the safety and efficacy of 3D-printed polycaprolactone/hydroxyapatite (PCL/HA) scaffolds for patient-specific cranioplasty surgeries, employing liquid deposition modeling (LDM) technology. This research is pioneering as it explores the...
2.
Kolivand N, Haghighat-Shishavan S, Nazarian-Samani M, Kheradmandfard M, Nazarian-Samani M, Kashani-Bozorg S, et al.
J Colloid Interface Sci . 2023 Jun; 648:406-417. PMID: 37302224
Ternary transition-metal tin chalcogenides, with their diverse compositions, abundant constituents, high theoretical capacities, acceptable working potentials, excellent conductivities, and synergistic active/inactive multi-components, hold promise as anode materials for metal-ion batteries....
3.
Kheradmandfard M, Mahdavi K, Kharazi A, Kashani-Bozorg S, Kim D
Mater Sci Eng C Mater Biol Appl . 2020 Sep; 117:111310. PMID: 32919671
In order to improve the biological activity of hydroxyapatite (HA), a multi-substituted HA (SHA) nanopowder with the chemical composition of CaMgSr(PO)(SiO)(OH)F was synthesized using the microwave-assisted method. X-ray diffraction (XRD),...
4.
Kheradmandfard M, Kashani-Bozorg S, Noori-Alfesharaki A, Kharazi A, Kheradmandfard M, Abutalebi N
Mater Sci Eng C Mater Biol Appl . 2018 Sep; 92:236-244. PMID: 30184747
Forsterite (MgSiO) has recently attracted considerable attention in different fields because of its wide range of applications. In this paper, pure forsterite nanopowders were synthesized by an ultra-fast, highly efficient...
5.
Penkov O, Khadem M, Lee J, Kheradmandfard M, Kim C, Cho S, et al.
Nanoscale . 2018 Feb; 10(10):4852-4860. PMID: 29473931
Functional nanocomposite coatings comprised of periodically stacked nanolayers of diamond-like carbon (DLC) and amorphous silicon were developed for biomedical applications. The periodical nanocomposite structure provided high surface durability while silicon...
6.
Kheradmandfard M, Kashani-Bozorg S, Kim C, Hanzaki A, Pyoun Y, Kim J, et al.
Ultrason Sonochem . 2017 Jul; 39:698-706. PMID: 28732996
The surface of β-type Ti-Nb-Ta-Zr (TNTZ) alloy, which is a promising material for biomedical applications, was treated with the ultrasonic nanocrystal surface modification (UNSM) technique to enhance its hardness. As...