His work focuses on many connections between Dispersity and other disciplines, such as Polymer chemistry, that overlap with his field of interest in Self-healing hydrogels. His Polymer chemistry research extends to the thematically linked field of Self-healing hydrogels. His study in Differential scanning calorimetry intersects with areas of studies such as Thermogravimetric analysis and Thermodynamics. While working in this field, Lobat Tayebi studies both Thermogravimetric analysis and Differential scanning calorimetry. As part of his studies on Thermodynamics, he frequently links adjacent subjects like Contact angle. Lobat Tayebi integrates Contact angle and Wetting in his studies. His study on Wetting is mostly dedicated to connecting different topics, such as Chemical engineering. His research on Chemical engineering frequently connects to adjacent areas such as Silver nanoparticle. He undertakes multidisciplinary studies into Silver nanoparticle and Bacteria in his work.
You can notice a mix of various disciplines of study, such as Metallurgy and Physical chemistry, in his Chemical engineering studies. Metallurgy is closely attributed to Corrosion in his research. Lobat Tayebi performs multidisciplinary study in Physical chemistry and Chemical engineering in his work. In his works, Lobat Tayebi undertakes multidisciplinary study on Composite material and Polymer. His work blends Polymer and Composite material studies together. With his scientific publications, his incorporates both Nanotechnology and Biomedical engineering. He performs multidisciplinary study in the fields of Biomedical engineering and Nanotechnology via his papers. Many of his studies on Nanoparticle apply to PLGA as well. His study in Nanoparticle extends to PLGA with its themes.
This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.
Effect of ion substitution on properties of bioactive glasses: A review
Sayed Mahmood Rabiee;Neda Nazparvar;Misaq Azizian;Daryoosh Vashaee.
Ceramics International (2015)
Porous magnesium-based scaffolds for tissue engineering.
Mostafa Yazdimamaghani;Mehdi Razavi;Daryoosh Vashaee;Keyvan Moharamzadeh.
Materials Science and Engineering: C (2017)
Stimulus-responsive polymeric nanogels as smart drug delivery systems.
Sakineh Hajebi;Navid Rabiee;Mojtaba Bagherzadeh;Sepideh Ahmadi.
Acta Biomaterialia (2019)
3D conductive nanocomposite scaffold for bone tissue engineering
Aref Shahini;Mostafa Yazdimamaghani;Kenneth J Walker;Margaret A Eastman.
International Journal of Nanomedicine (2013)
Graphene and its derivatives: Opportunities and challenges in dentistry
Mohammadreza Tahriri;M. Del Monico;Amirhossein Moghanian;M. Tavakkoli Yaraki.
Materials Science and Engineering: C (2019)
Long-range interlayer alignment of intralayer domains in stacked lipid bilayers
Lobat Tayebi;Yicong Ma;Daryoosh Vashaee;Gang Chen.
Nature Materials (2012)
Evaluation of glycated albumin (GA) and GA/HbA1c ratio for diagnosis of diabetes and glycemic control: A comprehensive review
Sara Yazdanpanah;Mohammad Rabiee;Mohammadreza Tahriri;Mojgan Abdolrahim.
Critical Reviews in Clinical Laboratory Sciences (2017)
Hybrid macroporous gelatin/bioactive-glass/nanosilver scaffolds with controlled degradation behavior and antimicrobial activity for bone tissue engineering.
M. Yazdimamaghani;D. Vashaee;S. Assefa;K .J. Walker.
Journal of Biomedical Nanotechnology (2014)
In situ preparation of iron oxide nanoparticles in natural hydroxyapatite/chitosan matrix for bone tissue engineering application
Fatemeh Heidari;Mohammad E. Bahrololoom;Daryoosh Vashaee;Lobat Tayebi.
Ceramics International (2015)
Development of PLGA-coated β-TCP scaffolds containing VEGF for bone tissue engineering
Arash Khojasteh;Farahnaz Fahimipour;Farahnaz Fahimipour;Mohamadreza Baghaban Eslaminejad;Mohammad Jafarian.
Materials Science and Engineering: C (2016)
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