Mohammad Saeb - Publications - Bridge of Knowledge

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Year 2023
Year 2021
  • Thermoplastic starch nanocomposites using cellulose-rich Chrysopogon zizanioides nanofibers
    Publication
    • M. Dominic C.D.
    • D. dos Santos Rosa
    • P. H. Camani
    • A. S. Kumar
    • N. K.v.
    • P. S. Begum
    • D. Dinakaran
    • E. John
    • D. Baby
    • M. M. Thomas... and 3 others

    - INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES - Year 2021

    Green thermoplastic starch (TPS) nanocomposite films aided by cellulose nanofibers (CNFs) from Chrysopogon zizanioides roots were developed and characterized. When compared to other lignocellulosic fibers, Chrysopogon zizanioides roots revealed exceptionally high cellulose content (~48%). CNFs were separated using an environmentally friendly acid isolation technique that included three stages: (i) alkali treatment; (ii) bleaching;...

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  • Metal–Organic Frameworks (MOFs) for Cancer Therapy
    Publication
    • M. Saeb
    • N. Rabiee
    • M. Mozafari
    • F. Verpoort
    • L. G. Voskressensky
    • R. Luque

    - Materials - Year 2021

    MOFs exhibit inherent extraordinary features for diverse applications ranging from catalysis, storage, and optics to chemosensory and biomedical science and technology. Several procedures including solvothermal, hydrothermal, mechanochemical, electrochemical, and ultrasound techniques have been used to synthesize MOFs with tailored features. A continued attempt has also been directed towards functionalizing MOFs via “post-synthetic...

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  • In-Out Surface Modification of Halloysite Nanotubes (HNTs) for Excellent Cure of Epoxy: Chemistry and Kinetics Modeling
    Publication
    • S. Moghari
    • S. H. Jafari
    • M. K. Yazdi
    • M. Jouyandeh
    • A. Hejna
    • P. Zarrintaj
    • M. Saeb

    - Nanomaterials - Year 2021

    In-out surface modification of halloysite nanotubes (HNTs) has been successfully performed by taking advantage of 8-hydroxyquinolines in the lumen of HNTs and precisely synthesized aniline oligomers (AO) of different lengths (tri- and pentamer) anchored on the external surface of the HNTs. Several analyses, including FTIR, H-NMR, TGA, UV-visible spectroscopy, and SEM, were used to establish the nature of the HNTs’ surface engineering....

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  • Encapsulation of an anticancer drug Isatin inside a host nano-vehicle SWCNT: a molecular dynamics simulation
    Publication
    • M. Z. Dehaghani
    • F. Yousefi
    • F. Seidi
    • B. Bagheri
    • A. H. Mashhadzadeh
    • G. Naderi
    • A. Esmaeili
    • O. Abida
    • S. Habibzadeh
    • M. Saeb
    • M. Rybachuk

    - Scientific Reports - Year 2021

    The use of carbon nanotubes as anticancer drug delivery cargo systems is a promising modality as they are able to perforate cellular membranes and transport the carried therapeutic molecules into the cellular components. Our work describes the encapsulation process of a common anticancer drug, Isatin (1H-indole-2,3-dione) as a guest molecule, in a capped single-walled carbon nanotube (SWCNT) host with chirality of (10,10). The...

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Year 2022
  • Thermal degradation of polylactic acid (PLA)/polyhydroxybutyrate (PHB) blends: A systematic review
    Publication
    • M. Kervran
    • C. Vagner
    • M. Cochez
    • M. Ponçot
    • M. Saeb
    • H. Vahabi

    - POLYMER DEGRADATION AND STABILITY - Year 2022

    Polylactic acid (PLA) and polyhydroxybutyrate (PHB) are two biopolyesters obtained from renewable resources like corn or sugar under bacterial fermentation. PLA is the most widely used biopolymer in diverse applications. Addition of PHB to PLA can improves the crystallinity of PLA, and thereby its mechanical strength. However, both PLA and PHB suffer from poor thermal stability, which limits their potential industrial application....

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  • Theoretical examination of the fracture behavior of BC3 polycrystalline nanosheets: Effect of crack size and temperature
    Publication
    • A. Dadrasi
    • A. Albooyeh
    • S. Fooladpanjeh
    • A. Salmankhani
    • A. Hamed Mashhadzadeh
    • M. Saeb

    - INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES - Year 2022

    2D carbon graphene nanostructures are elements of advanced materials and systems. This theoretical survey provides explanation to the mechanical and fracture behavior of mono- and polycrystalline BC3 nanosheets (denoted as MC- and PCBC3NS, respectively) as a function of temperature and the type of crack defects. The mechanical performance of PCBC3NS at elevated temperatures was monitored varying the number of grain boundaries (the...

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  • The impact of thermomechanical and chemical treatment of waste Brewers’ spent grain and soil biodegradation of sustainable Mater-Bi-Based biocomposites
    Publication

    - WASTE MANAGEMENT - Year 2022

    Due to the massive plastic pollution, development of sustainable and biodegradable polymer materials is crucial to reduce environmental burdens and support climate neutrality. Application of lignocellulosic wastes as fillers for polymer composites was broadly reported, but analysis of biodegradation behavior of resulting biocomposites was rarely examined. Herein, sustainable Mater-Bi-based biocomposites filled with thermomechanically-...

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  • Synthesis of green benzamide-decorated UiO-66-NH2 for biomedical applications
    Publication
    • N. Rabiee
    • A. M. Ghadiri
    • V. Alinezhad
    • A. Sedaghat
    • S. Ahmadi
    • Y. Fatahi
    • P. Makvandi
    • M. Saeb
    • M. Bagherzadeh
    • M. Asadnia... and 2 others

    - CHEMOSPHERE - Year 2022

    Metal-organic frameworks (MOFs) biocompatible systems can host enzymes/bacteria/viruses. Herein we synthesized a series of fatty acid amide hydrolase (FAAH)-decorated UiO-66-NH2 based on Citrus tangerine leaf extract for drug delivery and biosensor applications. Five chemically manipulated FAAH-like benzamides were localized on the UiO-66-NH2 surface with physical interactions. Comprehensive cellular and molecular analyses were...

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  • Surface engineering of graphene oxide membranes for selective separation of perfluorooctanoic acids
    Publication
    • H. Khorramdel
    • M. Omidvar
    • M. Tajaddini
    • Y. Huang
    • M. Saeb
    • F. Seidi
    • H. Xiao

    - JOURNAL OF MEMBRANE SCIENCE - Year 2022

    Perfluoroalkyl compounds (PFCs) are environmental toxicants and their widespread detection and accumulation in the environment can be detrimental to the ecosystem. In this study, surface charge of GO membranes was engineered to enhance selectivity of graphene oxide (GO) membranes and for the removal of perfluorooctanoic acid (PFOA ∼400 Da) in real concentration ranges in wastewater streams. The structure and physicochemical properties...

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  • Successive cytotoxicity control by evolutionary surface decorated electronic push-pull green ZnCr-LDH nanostructures: Drug delivery enlargement for targeted breast cancer chemotherapy
    Publication
    • M. Kiani
    • M. Bagherzadeh
    • Y. Fatahi
    • H. Daneshgar
    • M. Safarkhani
    • G. Salehi
    • P. Makvandi
    • M. Saeb
    • E. C. Lima
    • N. Rabiee

    - OpenNano - Year 2022

    The reason for the increasing bioavailability and biocompatibility of the porous nanomaterials in the presence of different (bio)molecules is still unknown. The role of difference functional groups and their interactions with the potential bioavailability and biocompatibility is of great importance. To investigate the potential contribution of the electronic effects (especially on the surface of the porous nanomaterials) on their...

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  • Removal of diphenols using pine biochar. Kinetics, equilibrium, thermodynamics, and mechanism of uptake
    Publication
    • N. F. Cimirro
    • E. C. Lima
    • M. R. Cunha
    • P. S. Thue
    • A. Grimm
    • G. S. dos Reis
    • N. Rabiee
    • M. Saeb
    • F. Keivanimehr
    • S. Habibzadeh

    - JOURNAL OF MOLECULAR LIQUIDS - Year 2022

    Thermal pyrolysis synthesized activated biochar from the Pinus elliottii sawdust (PS) at 600° C. The obtained activated biochar (PB600) was used for the removal of three diphenols, catechol (CAT), resorcinol (RES), and hydroquinone (HYD), which are utilized mainly in different industries. The PB600 was characterized by several analytical techniques. The BET surface area of 1473 m2.g−1 and a total pore volume of 0.707 cm3 g−1 was...

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  • Recent advances in aqueous virus removal technologies
    Publication
    • H. Al-Hazmi
    • H. Shokrani
    • A. Shokrani
    • K. Jabbour
    • O. Abida
    • S. S. Mousavi Khadem
    • S. Habibzadeh
    • S. H. Sonawane
    • M. Saeb
    • A. Bonilla-Petriciolet
    • M. Badawi

    - CHEMOSPHERE - Year 2022

    The COVID-19 outbreak has triggered a massive research, but still urgent detection and treatment of this virus seems a public concern. The spread of viruses in aqueous environments underlined efficient virus treatment processes as a hot challenge. This review critically and comprehensively enables identifying and classifying advanced biochemical, membrane-based and disinfection processes for effective treatment of virus-contaminated...

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  • Pressure-induced flow processing behind the superior mechanical properties and heat-resistance performance of poly(butylene succinate)
    Publication

    - E-POLYMERS - Year 2022

    We propose a pressure-induced flow (PIF) processing method for the simultaneous enhancement of strength, toughness, and heat resistance of biodegradable poly(butylene succinate) (PBS). The pressure and temperature were systematically adjusted to optimize the tensile strength of PBS. Under the optimized processing conditions, the structured PBS was characterized by relatively high strength of 89.5 MPa, toughness of 21.4 kJ·m−2 ,...

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  • Polysaccharides in fabrication of membranes: A review
    Publication

    - CARBOHYDRATE POLYMERS - Year 2022

    Sustainability concerns have motivated and directed a great deal of interest over the past decade towards the development of green technologies. Polysaccharides are green polymers, which experienced growing demand to substitute chemically synthetic polymers. Different types of polysaccharides i.e. cellulose-, starch-, chitin- alginate-, and chitosan-based carbohydrate polymers have been applied in the fabrication of separation...

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  • Polysaccharide-based Nanocomposites for Biomedical Applications: A Critical Review
    Publication
    • H. Shokrani
    • A. Shokrani
    • S. M. Sajadi
    • M. Khodadadi Yazdi
    • F. Seidi
    • M. Jouyandeh
    • P. Zarrintaj
    • S. Kar
    • S. Kim
    • T. Kuang... and 4 others

    - Nanoscale Horizons - Year 2022

    Polysaccharides (PSA) are taking specific position among biomaterials for advanced applications in medicine. Nevertheless, poor mechanical properties is known as the main drawback of PSA, which highlights need for PSA modification. Nanocomposites PSA (NPSA) are a class of biomaterials widely used as biomedical platforms, but despite their importance and worldwide use have not been reviewed. Herein we critically reviewed application...

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  • Polysaccharide-based electroconductive hydrogels: Structure, properties and biomedical applications
    Publication
    • M. Khodadadi Yazdi
    • P. Zarrintaj
    • F. Seidi
    • M. Saeb
    • M. Mozafari

    - CARBOHYDRATE POLYMERS - Year 2022

    Architecting an appropriate platform for biomedical applications requires setting a balance between simplicity and complexity. Polysaccharides (PSAs) play essential roles in our life in food resources, structural materials, and energy storage capacitors. Moreover, the diversity and abundance of PSAs have made them an indispensable part of food ingredients and cosmetics. PSA-based hydrogels have been extensively reviewed in biomedical...

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  • Polydopamine Biomaterials for Skin Regeneration
    Publication
    • M. K. Yazdi
    • M. Zare
    • A. Khodadadi
    • F. Seidi
    • S. M. Sajadi
    • P. Zarrintaj
    • A. Arefi
    • M. Saeb
    • M. Mozafari

    - ACS Biomaterials Science & Engineering - Year 2022

    Designing biomaterials capable of biomimicking wound healing and skin regeneration has been receiving increasing attention recently. Some biopolymers behave similarly to the extracellular matrix (ECM), supporting biointerfacial adhesion and intrinsic cellular interactions. Polydopamine (PDA) is a natural bioadhesive and bioactive polymer that endows high chemical versatility, making it an exciting candidate for a wide range of...

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  • Nanomaterials for photothermal and photodynamic cancer therapy
    Publication
    • B. Nasseri
    • E. Alizadeh
    • F. Bani
    • S. Davaran
    • A. Akbarzadeh
    • N. Rabiee
    • A. Bahadori
    • M. Ziaei
    • M. Bagherzadeh
    • M. Saeb... and 2 others

    - Applied Physics Reviews - Year 2022

    In recent years, the role of optically sensitive nanomaterials has become powerful moieties in therapeutic techniques and has become particularly emphasized. Currently, by the extraordinary development of nanomaterials in different fields of medicine, they have found new applications. Phototherapy modalities, such as photothermal therapy (PTT) by toxic heat generation and photodynamic therapy (PDT) by reactive oxygen species, are...

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  • Mussel‐inspired biomaterials: From chemistry to clinic
    Publication
    • A. Taghizadeh
    • M. Taghizadeh
    • M. K. Yazdi
    • P. Zarrintaj
    • J. D. Ramsey
    • F. Seidi
    • F. J. Stadler
    • H. Lee
    • M. Saeb
    • M. Mozafari

    - Bioengineering & Translational Medicine - Year 2022

    After several billions of years, nature still makes decisions on its own to identify, develop, and direct the most effective material for phenomena/challenges faced. Likewise, and inspired by the nature, we learned how to take steps in developing new technologies and materials innovations. Wet and strong adhesion by Mytilidae mussels (among which Mytilus edulis—blue mussel and Mytilus californianus—California mussel are the most...

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  • Methods for biomaterials printing: A short review and perspective
    Publication

    - METHODS - Year 2022

    Printing technologies have opened larger windows of innovation and creativity to biomaterials engineers by providing them with the ability to fabricate complex shapes in a reasonable time, cost, and weight. However, there has always been a trouble with function adjusting in printing technologies in view of the multiplicity of materials and apparatus parameters. 3D printing, also known as additive manufacturing, revolutionized biomaterials...

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  • Metal-organic frameworks (MOF) based heat transfer: A comprehensive review
    Publication
    • M. Moayed Mohseni
    • M. Jouyandeh
    • S. Mohammad Sajadi
    • A. Hejna
    • S. Habibzadeh
    • A. Mohaddespour
    • N. Rabiee
    • H. Daneshgar
    • O. Akhavan
    • M. Asadnia... and 4 others

    - CHEMICAL ENGINEERING JOURNAL - Year 2022

    Higher than a standard level, the humidity provides a suitable environment for the pathogenic microorganisms to grow and increases energy consumption for cooling, increasing greenhouse gas emissions. Desiccant air-conditioning (DAC) is an effective method to reduce humidity and energy simultaneously. Conventional desiccants are not suitable for use as a desiccant in building air conditioners, mainly because of high regeneration...

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  • Metal nanoparticles-assisted early diagnosis of diseases
    Publication
    • M. Jouyandeh
    • S. M. Sajadi
    • F. Seidi
    • S. Habibzadeh
    • M. T. Munir
    • O. Abida
    • S. Ahmadi
    • D. Kowalkowska-Zedler
    • N. Rabiee
    • M. Rabiee... and 4 others

    - OpenNano - Year 2022

    Early diagnosis is essential for the effective illness treatment, but traditional diagnostic approaches inevitably have major downsides. Recent advancements in nanoparticle-based biosensors have created new opportunities for accelerating diagnosis. High surface area, exceptional sensitivity, high specificity, and optical characteristics of metal and metal oxide nanoparticles have made it possible to detect a variety of health conditions...

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  • Magnetic nanocomposites for biomedical applications
    Publication
    • M. Naghdi
    • M. Ghovvati
    • N. Rabiee
    • S. Ahmadi
    • N. Abbariki
    • S. Sojdeh
    • A. Ojaghi
    • M. Bagherzadeh
    • O. Akhavan
    • E. Sharifi... and 6 others

    - ADVANCES IN COLLOID AND INTERFACE SCIENCE - Year 2022

    Tissue engineering and regenerative medicine have solved numerous problems related to the repair and regeneration of damaged organs and tissues arising from aging, illnesses, and injuries. Nanotechnology has further aided tissue regeneration science and has provided outstanding opportunities to help disease diagnosis as well as treat damaged tissues. Based on the most recent findings, magnetic nanostructures (MNSs), in particular,...

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  • Layer-by-layer polymer deposited fabrics with superior flame retardancy and electrical conductivity
    Publication

    - REACTIVE & FUNCTIONAL POLYMERS - Year 2022

    Smart and multifunctional textiles and fabrics are progressively developing, such that multifunctional fabrics are becoming more widespread. We elaborated herein multi-layered flax fabrics with superior flame retardancy and conductivity, which revealed fireproof feature while keeping conductivity during burning. The flax fabric was reinforced by layer-by-layer (LbL) deposition of sodium polyacrylate (SPA), polyethylenimine (PEI),...

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  • Integration of antifouling properties into epoxy coatings: a review
    Publication

    - Journal of Coatings Technology and Research - Year 2022

    he need for nontoxic antifouling coatings has encouraged material scientists to develop a class of organic coatings for diverse applications. As a versatile thermosetting resin and well known for coating application, antifouling characteristics have been integrated into epoxy along with anticorrosion and adhesive functions. Accordingly, both micro- and macro-biofoulings have been successfully controlled by using epoxy-based antifouling...

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  • Hyperbranched polyethylenimine functionalized silica/polysulfone nanocomposite membranes for water purification
    Publication
    • V. Vatanpour
    • M. Jouyandeh
    • S. S. Mousavi Khadem
    • M. Ganjali
    • H. Moradi
    • S. Mirsadeghi
    • A. Badiei
    • A. Esmaeili
    • N. Rabiee
    • S. Habibzadeh... and 3 others

    - CHEMOSPHERE - Year 2022

    Hyperbranched polyethyleneimine functionalized silica (PEI-SiO2) nanoparticles with considerable hydrophilicity were synthesized and incorporated into a polysulfone (PSF)/dimethylacetamide (DMA)/polyvinylpyrrolidone (PVP) membrane casting solution in five different ratios to fabricate PEI-SiO2/PSF nanocomposite membranes using nonsolvent-induced phase separation. The hydrophilic PEI-SiO2 nanoparticles were characterized by TEM,...

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  • Highly sensitive large strain cellulose/multiwalled carbon nanotubes (MWCNTs)/thermoplastic polyurethane (TPU) nanocomposite foams: From design to performance evaluation
    Publication
    • Y. Fei
    • R. Jiang
    • W. Fang
    • T. Liu
    • M. Saeb
    • A. Hejna
    • M. Ehsani
    • M. Barczewski
    • S. M. Sajadi
    • F. Chen
    • T. Kuang

    - JOURNAL OF SUPERCRITICAL FLUIDS - Year 2022

    Aerogel-based polymer composite foams are promising for large strain piezoresistive sensors, but their aerogel skeleton is partially destroyed during the foaming process, limiting their sensitivity. Herein, the thermoplastic polyurethane was synthesized on the aerogel skeleton to obtain cellulose/multiwalled carbon nanotubes (MWCNTs)/thermoplastic polyurethane (TPU) nanocomposite materials foamed with the aid of supercritical carbon...

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  • GTR/Thermoplastics Blends: How Do Interfacial Interactions Govern Processing and Physico-Mechanical Properties?
    Publication

    - Materials - Year 2022

    In this work, GTR/thermoplastics blends (in ratio 50/50 and 75/25 wt.%) were prepared by melt-compounding in an internal mixer. During research, trans-polyoctenamer rubber (TOR), ethylene-vinyl acetate copolymer (EVA), ethylene-octene copolymer (EOC), and linear low-density polyethylene (LLDPE), were used in their thermoplastic phase. Microstructure and processing-performance property interrelationships of the studied materials...

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  • Green products from herbal medicine wastes by subcritical water treatment
    Publication
    • F. Seidi
    • M. K. Yazdi
    • M. Jouyandeh
    • S. Habibzadeh
    • M. T. Munir
    • H. Vahabi
    • B. Bagheri
    • N. Rabiee
    • P. Zarrintaj
    • M. Saeb

    - JOURNAL OF HAZARDOUS MATERIALS - Year 2022

    Herbal medicine wastes (HMWs) are byproducts of medicine factories, which are mainly landfilled for their environmental problems. Only bearing in mind the contamination and concerns caused by the COVID-19 pandemic and environmental emissions, the worth of herbal medicine wastes management and conversion to green products can be understood. In this work, subcritical water treatment was carried out batch-wise in a stainless tube...

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  • Green porous benzamide-like nanomembranes for hazardous cations detection, separation, and concentration adjustment
    Publication
    • N. Rabiee
    • Y. Fatahi
    • M. Asadnia
    • H. Daneshgar
    • M. Kiani
    • A. M. Ghadiri
    • M. Atarod
    • A. H. Mashhadzadeh
    • O. Akhavan
    • M. Bagherzadeh... and 2 others

    - JOURNAL OF HAZARDOUS MATERIALS - Year 2022

    Green biomaterials play a crucial role in the diagnosis and treatment of diseases as well as health-related problem-solving. Typically, biocompatibility, biodegradability, and mechanical strength are requirements centered on biomaterial engineering. However, in-hospital therapeutics require an elaborated synthesis of hybrid and complex nanomaterials capable of mimicking cellular behavior. Accumulation of hazardous cations like...

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  • Green Polymer Nanocomposites for Skin Tissue Engineering
    Publication

    - ACS Applied Bio Materials - Year 2022

    Fabrication of an appropriate skin scaffold needs to meet several standards related to the mechanical and biological properties. Fully natural/green scaffolds with acceptable biodegradability, biocompatibility, and physiological properties quite often suffer from poor mechanical properties. Therefore, for appropriate skin tissue engineering and to mimic the real functions, we need to use synthetic polymers and/or additives as complements...

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  • Fire Protection and Materials Flammability Control by Artificial Intelligence

    Fire safety has become a major challenge of materials developers because of the massive production of organic materials, often combustibles, and their use for different purposes. In this sense, fire safety is critically considered in the development of engineering materials [1, 2]. The multiplicity of parameters contributing to the development of formulation of flame-retardant materials from one side and the sustainability concerns...

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  • Enhanced aging resistance of poly(ε-caprolactone)/brewers’ spent grain composites
    Publication

    - Polimery - Year 2022

    The presented paper investigated the influence of brewers’ spent grain (BSG) extrusion pa-rameters on the photo-oxidative resistance of poly(ε-caprolactone)-based wood polymer composites. Filler samples characterized by the higher melanoidin content were more efficient in hindering of poly-mer degradation, inhibiting the decomposition of the polymer amorphous phase. As aresult, deteriora-tion of mechanical performance was limited,...

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  • Elucidating the impact of enzymatic modifications on the structure, properties, and applications of cellulose, chitosan, starch and their derivatives: a review
    Publication
    • Z. Shokri
    • F. Seidi
    • M. Saeb
    • Y. Jin
    • C. Li
    • H. Xiao

    - Materials Today Chemistry - Year 2022

    Polysaccharides, as one of the most prominent natural biopolymers, display numerous biological activities and industrial applications. Nevertheless, some polysaccharides lack biological properties or display weak biological activities. Besides, practical usages of polysaccharides still remain challenging because of their poor solubility and inappropriate hydrophilic/hydrophobic balance. Hence, enzymatic or chemical modifications...

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  • Dynamics of Antimicrobial Peptide Encapsulation in Carbon Nanotubes: The Role of Hydroxylation
    Publication
    • M. Zarghami Dehaghani
    • F. Yousefi
    • F. Seidi
    • S. M. Sajadi
    • N. Rabiee
    • S. Habibzadeh
    • A. Esmaeili
    • A. Hamed Mashhadzadeh
    • E. Mostafavi
    • M. Saeb

    - International Journal of Nanomedicine - Year 2022

    Introduction: Carbon nanotubes (CNTs) have been widely employed as biomolecule carriers, but there is a need for further functionalization to broaden their therapeutic application in aqueous environments. A few reports have unraveled biomolecule–CNT interactions as a measure of response of the nanocarrier to drug-encapsulation dynamics. Methods: Herein, the dynamics of encapsulation of the antimicrobial peptide HA-FD-13 (accession...

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  • Customizing nano-chitosan for sustainable drug delivery
    Publication
    • M. Saeedi
    • O. Vahidi
    • M. R. Moghbeli
    • S. Ahmadi
    • M. Asadnia
    • O. Akhavan
    • F. Seidi
    • M. Rabiee
    • M. Saeb
    • T. J. Webster... and 4 others

    - JOURNAL OF CONTROLLED RELEASE - Year 2022

    Chitosan is a natural polymer with acceptable biocompatibility, biodegradability, and mechanical stability; hence, it has been widely appraised for drug and gene delivery applications. However, there has been no comprehensive assessment to tailor-make chitosan cross-linkers of various types and functionalities as well as complex chitosan-based semi- and full-interpenetrating networks for drug delivery systems (DDSs). Herein, various...

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Year 2024
  • Progress in ATRP-derived materials for biomedical applications
    Publication

    - PROGRESS IN MATERIALS SCIENCE - Year 2024

    The continuing wave of technological breakthroughs and advances is critical for engineering well- defined materials, particularly biomaterials, with tailored microstructure and properties. Over the last few decades, controlled radical polymerization (CRP) has become a very promising option for the synthesis of precise polymeric materials with an unprecedented degree of control over mo lecular architecture. Atom transfer radical...

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