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Stahl Group – Professor Product Portal
he Stahl Lab focuses on the development of catalysts and catalytic reactions for selective oxidation of organic molecules, with particular emphasis on aerobic oxidation reactions.
Human Hematopoietic Progenitor Cells (HPC) and Growth Media
CD34+ Progenitor Cells are suitable for diverse studies, as well as for the directed differentiation into more committed blood cell phenotypes and endothelial lineages.
In Vitro Expansion of CD34+/CD38- Human Hematopoietic Progenitor Cells in a Serum-free and Xeno-free Stem Cell Culture Media
In vitro culture of human hematopoietic stem cells in PromoCell’s serum-free/xeno-free HPC Expansion Medium DXF. Explore over 350 PromoCell products
Primary Human Skeletal Muscle Cells and Growth Media
Primary human skeletal muscle cells and culture medium optimized for the in vitro cultivation and differentiation of primary human skeletal muscle cells. Protocols for handling, cell passaging, media, and product use.
Macmillan Imidazolidinone Organocatalysts
Discover Professor David MacMillan's groundbreaking metal-free asymmetric catalysis using imidazolidinone-based organocatalysts for versatile transformations.
Metal Borohydrides as Hydrogen Storage Materials
An article about metal borohydrides as hydrogen storage materials
Determination of Glycyrrhizic Acid Honokiol and Magnolol
Quantitative HPLC-UV analysis of honokiol, magnolol, and glycyrrhizic acid in Huoxiang Zhengqi Shui following the Chinese Pharmacopoeia draft.
Pharmaceutical Research Applications of Carbohydrates and Polysaccharides
Discover the role of carbohydrates in drug delivery, from solubility and stability improvement to advanced controlled-release systems.
Recent Advances in Scalable Synthesis and Processing of Two-Dimensional Materials
Advances in scalable synthesis and processing of two-dimensional materials
TRC Library Citations
TRC 1.5 human and mouse shRNA libraries
gamma Valerolactone Bio Based Dipolar Aprotic Solvent
Explore gamma-valerolactone (GVL) as a greener solvent replacing DMF, NMP, and DMAc in organic synthesis with efficiency and low toxicity.