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PILC-encapsulated CCl4 indeed reacts, giving chlorobenzene (PhCl) and biphenyl as main products (with benzoyl chloride as a side-product).
The gas phase condensation of acetone generates mesityl oxide (C6) and isophorones (C9) as main products, with high selectivities for mesityl oxide (up to 80%).
The gas evolved on the anode was composed of (CF3 3N and CF4 as main products with small amounts of NF3, C2F6, CHF3, C2HF5, CF3N CF2H 2, and (CF3 2NCHF2.
By reacting with the halogen atom and α, β-unsaturated malonitrile in probe 1, Cys, Hcy and GSH can generate a total of three main products with distinct photophysical properties.
In in vivo assays, it was identified as a multiproduct enzyme with the volatile sesquiterpene hydrocarbon δ-cadinene as one of the two main products with α-muuorlene, β-caryophyllene, α-humulene and α-copaene as minor products.
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Catalytic treatment of all the three reactants resulted in production of n-heptadecane as the main product with high selectivity.
Hydrogen is the main product with a selectivity around 55 60%.
Hydrogen is the main product with different by-products depending on reaction conditions.
Over H-beta zeolites, 2-TBN was obtained as the main product with relatively small amounts of dialkylated compounds.
Finally, with C2 catalyst containing the Ni element, the main reaction product of tetrahydrofurfuryl alcohol is tetrahydofuran, while δ-valerolactone is the main product with C1 one.
A mixture of lepidocrocite and goethite was formed, and the latter was the main product with high crystallinity at pH 7.0.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com