Navid Rabiee

· Saveetha University
94h 指数
56,732总引用
460发文
306i10

简介

Navid Rabiee, Ph.D., (Citations > 50,000; H-Index: 78) is a multidisciplinary scientist and one of the top 1% highly-cited researchers (based on Web of Science), whose work spans across molecular biology, cellular biology, biochemical sciences, and engineering to advance medical systems and devices for patient care. With a pioneering spirit in BioInorganic Chemistry, Dr. Rabiee has led groundbreaking work on CRISPR delivery systems through the application of inorganic nano-vectors, significantly advancing precision gene editing technologies. He has also spearheaded the development of high-gravity synthesis techniques for creating porous (in)organic nanomaterials grounded in green chemistry principles. This work laid the foundation for a new scientific field known as “Green Biomaterials,” dedicated to sustainable innovation in biomaterials science. Dr. Rabiee has made impactful contributions to both academic research and applied science, with over 350 peer-reviewed journal articles published in esteemed journals such as Nature, Nature Medicine, Nature Communications, Advanced Materials, and The Lancet. He has also authored 10 books and more than 20 book chapters, shaping scientific knowledge across multiple fields. His research has extended beyond academia to include substantial contributions to over 10 industrial projects, where he has applied his expertise in biotechnology, materials science, and diagnostics to address real-world challenges. In addition, he has been involved in 7 clinical projects, collaborating with healthcare professionals to bring innovative diagnostic tools and therapeutic solutions closer to patient care. Dr. Rabiee’s work exemplifies the integration of cutting-edge science with engineering applications, demonstrating his commitment to driving scientific discovery and its translation into tangible medical advancements.

研究方向

Graphene and Nanomaterials ApplicationsAdvanced biosensing and bioanalysis techniquesNanoparticle-Based Drug DeliveryNanoplatforms for cancer theranosticsAdvanced Nanomaterials in Catalysis

数据来源: OpenAlex + ORCID + Wikidata · 数据质量: verified

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