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Tambar Group – Professor Product Portal
The Tambar Group has developed a series of reactions to convert unactivated olefins into value-added products (e.g., allylic amination, allylic alkylation).
High-Purity Monomers & Polymers for Ophthalmic Applications
We offer a continuously expanding selection of high-purity monomers and polymers for ophthalmic applications, along with a full range of initiators, crosslinkers, dyes, and solvents.
Degradable Poly(ethylene glycol) Hydrogels for 2D and 3D Cell Culture
Progress in biotechnology fields such as tissue engineering and drug delivery is accompanied by an increasing demand for diverse functional biomaterials. One class of biomaterials that has been the subject of intense research interest is hydrogels, because they closely mimic
抗菌肽
由于细菌耐药性和新出现的传染病成为人类的潜在威胁,核糖体合成的抗菌肽已成为抗生素研究的一个有前途的重点领域。
Role of Advanced Electrolytes in Sodium Ion Batteries
Discover the role of electrolytes in sodium-ion batteries, to enhance performance, safety, and sustainability in energy storage solutions.
MXenes: A Tunable Family of 2D Carbides and Nitrides
Professor Gogotsi and Dr. Shuck introduce MXenes: a promising family of two-dimensional materials with a unique combination of high conductivity, hydrophilicity, and extensive tunability.
Silicon Nitride Atomic Layer Deposition: A Brief Review of Precursor Chemistry
atomic layer deposition (ALD), microelectronics, Mo:Al2O3 films, nanocomposite coating, photovoltaics, semiconductor devices, W:Al2O3 films, composite films, layer-by-layer
Nanoparticle-Based Drug and Gene Delivery for Tumor Targeting
Professor Yoshiki Katayama (Kyushu University, Japan) discusses recent advances in drug delivery systems and strategies that exploit the EPR effect, with a special focus on stimuli-responsive systems based on novel materials.
RNA Isolation from Blood, Cultured Cells, and Animal or Plant Tissue on Whatman™ FTA™ Cards
This article describes the evaluation of Whatman FTA cards from Cytiva for their ability to collect, store, and isolate high-quality RNA from a variety of crude biological samples.
Biomedical Implant Devices Fabricated from Low Young’s Modulus Titanium Alloys Demonstrating High Mechanical Biocompatibility
Biomedical implants are essentially foreign substances within the human body that must survive many years’ exposure to demanding mechanical and physiological conditions. Despite these challenges, metal implants have been widely used to substitute for or rebuild hard tissues such as