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Mn210-catalyzed atom transfer radical cyclizations

Mn2Br2. Temperature dependence of x m-Curves fitted according to antiferromagnetic Heisenberg linear-chain model full curve

Mn2Br2. Temperature dependence of zl . Curves fitted according to antiferromagnetic Heisenberg linear-chain model full curve

Mn2Cl2. Temperature dependence of x m- Curves fitted according to antiferromagnetic Heisenberg linear-chain model full curve

Mn2p XPS spectra for the Sr-Mn catalyst

Mn2Si04. Temperature dependence of 1 Zg

Mn3 complexes that function as excellent MTT reagents.

Mn304 . Temperature dependence of magnetization Mg at 17700 0e .

Mn3j 13.6HjO . Temperature dependence of x , ,

Mn4 dimer geometry. The dimer is formed by inversion of the threefold symmetric monomer. Each monomer has a magnetic core consisting of three ferromagnetically coupled Mn3 spins ion leading to a total spin of S 9 2. The distance between the two central Cl atoms marked as the dotted line was measured to be 3.86 A. Cited from Ref. .

Mn4-mediated aromatic substitutions

MNA crystal structure. Following Figs. 3 and 4 of Ref. 17, a, b, and c refer to the crystallographic axes for a nonstandard setting . Copyright 2001 American Chemical Society.

MnandPDl values data of copolymers synthesized with different comonomer feed ratios.

MnAs structure and the evolution from the orthogonal to hexagonal form as a function of increasing magnetic field strength along the y axis

MnBr2-4H,0. Phase diagram, transition inducing field intensity vs. T with H ,pp lc axis .

MnCl iphen . Temperature dependence of l and . .

MnCl2-catalyzed carbonylative coupling of organostannanes

MnCl3 . Temperature dependence of 1 and . .

MnCl4 . Temperature dependence of 1 x .

MnCl4 . Temperature dependence of x m and .

MnClj . Temperature dependence of

MnClj . Temperature dependence of x m

MnClj inhibition of DPC - DCIP activity of NHjOH- .

MnClj inhibition of DPC - DCIP activity of Tris- .

MNCs have a limited presence in China — for now.



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