Search Within
Content Type
Topic Area
Product Category
Applications
325854-68-0
Applied Filters:
Keyword:'325854-68-0'
Showing 1-10 of 352 results for "325854-68-0" within Site Content
NHC-based Palladium Catalysts
In collaboration with Umicore AG and Co.,1 we are pleased to offer a series of robust Pd(II) and Pd(0) complexes employed as the linchpin in C–C bond forming reactions.
Louie Group – Professor Product Portal
Professor Louie's research focuses on the discovery and mechanistic understanding of new reactions catalyzed by transition metal complexes. She has developed a highly active Ni(0) catalyst that effectively mediates a variety of cycloaddition and isomerization reactions.
Echavarren Group – Professor Product Portal
The research of the Echavarren group centers on the development of new reactions based on the use of electrophilic complexes of Au(I), Pt(II), and other transition metals as catalysts and their applications in organic synthesis of complex, biologically active molecules.
The
Long and Accurate PCR
Long and accurate PCR applications address the needs for longer read lengths, greater fidelity and higher yields than that which can be achieved with Taq DNA polymerase.
Advanced Materials for Magnetic Cooling
Today, near-room-temperature refrigeration is almost entirely based on a vapor-compression refrigeration cycle.
Detecting Heavy Metals in Food & Beverages
Recent advances in analytical tech for heavy metal detection ensure food safety, with products and services supporting trust in consumption.
Long and Accurate PCR Amplification of DNA (D8045)
Protocol for high fidelity amplification of long PCR fragments up to 22kb from complex DNA mixtures and up to 40kb from simple DNA mixtures. AccuTaq LA.
Alkaline Phosphatase Protocol
Alkaline phosphatase (AP) is a non-specific phosphomonoester hydrolase that catalyzes the hydrolysis of a wide variety of organic monophosphates.
Microscopic Examination of Samples
This protocol covers 3 modes for the microscopic examination of cell samples.
HPLC Method for the Separation of Nine Key Silymarin Components of Milk Thistle
Experimental steps, coupled with prediction software, provided conditions suitable for the analysis biologically active milk thistle components.
Page 1 of 36