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A novel catalytic system, silane/MoO2Cl2 (10 mol %), for the reduction of imines in excellent to moderate yields and chemoselectivity was designed.
A biomimetic optical probe for detecting low molecular weight molecules (maltol, 3-hydroxy-2-methyl-4H-pyran-4-one, molecular weight of 126.11 g/mol), was designed, fabricated, and characterized.
This study was designed to examine the interaction of isofraxidin with human serum albumin (HSA) under physiological conditions with drug concentrations in the range of 3.3×10−6 mol L−1 3.0×10−5 mol L−1 and HSA concentration at 1.5×10−6 mol L−1.
This study was designed to investigate the binding of genistein to human serum albumin (HSA) under physiological conditions with drug concentrations in the range of 6.7 × 10−6 to 2.0 × 10−5 mol L−1 and HSA concentration at 1.5 × 10−6 mol L−1.
The prudent polar strategy identified a protein sequence that was thermodynamically stabilized by 2.5 kcal/mol relative to wild-type thioredoxin and 2.2 kcal/mol relative to a thioredoxin variant whose core was designed without polar residues.
At INRIM, a primary standard was designed and realized for the measurement of molar gas flow from 4 × 10−10 mol/s to 2 × 10−7 mol/s with reference to atmospheric pressure.
The glasses, synthesized in four and five component (TeO2-WO3-Na2O-Nb2O5 and TeO2-WO3-PbO-Na2O-Nb2O5) oxide systems with variable contents of WO3 (5–38 mol%) and PbO (0 18 mol%), are designed and manufactured, and the transmission properties of the obtained glasses for the spectral range of 200 nm–7 μm have been determined.
An amorphous comb-shaped polymer, 'TEC-24', with a side-chain content of 24 mol%, is designed and fine silica powder is dispersed within it to enhance the mechanical properties above the melting point.
They run on fuel gas that is 90% mol methane and are designed to cofire C4 C11 liquid fuel that is a by-product from the De-Propanizer tower.
A jet flow singlet oxygen generator (JSOG) capable of handling chlorine flows of nearly 1.5 mol s−1 has been designed, developed, and tested.
The MOL-PCR method is designed for processing 96-well plates, which takes about 3.5 h hands-on time and requires no high-level technical skills.
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