Manganese-catalyzed C−H bond activation chemistry is emerging as a powerful and complementary method for molecular functionalization. A highly reactive seven-membered MnIintermediate is detected and characterized that is effective for H-transfer or reductive elimination to deliver alkenylated or pyridinium products, respectively. The two pathways are determined at MnIby judicious choice of an electron-deficient 2-pyrone substrate containing a 2-pyridyl directing group, which undergoes regioselective C−H bond activation, serving as a valuable system for probing the mechanistic features of Mn C−H bond activation chemistry
Detailed understanding of the mechanistic processes that underpin transition metal-catalysed reactio...
Low-valent manganese-catalyzed C–H alkylation of pyridine derivatives with both primary and challeng...
The strong C-H bond activation of hydrocarbons is a difficult reaction in environmental and biologic...
Manganese-catalyzed C−H bond activation chemistry is emerging as a powerful and complementary method...
Manganese-catalyzed C−H bond activation chemistry is emerging as a powerful and complementary method...
Manganese-catalyzed C−H bond activation chemistry is emerging as a powerful and complementary method...
Manganese(I) carbonyl-catalyzed C–H bond functionalization of 2-phenylpyridine and related compound...
Manganese(I) carbonyl-catalyzed C–H bond functionalization of 2-phenylpyridine and related compound...
As a synthetic methodology, C–H activation represents a complimentary protocol to traditional cross-...
While Mn-catalyzed (de)hydrogenation of carbonyl derivatives has been well established, the reactivi...
The first <i>manganese-catalyzed</i> aromatic C–H alkenylation with terminal alkynes is described. T...
While Mn-catalyzed (de)hydrogenation of carbonyl derivatives has been well established, the reactivi...
A new efficient manganese-catalyzed selective C2-alkylation of indoles via carbenoid insertion has b...
While Mn-catalyzed (de)hydrogenation of carbonyl derivatives has been well established, the reactivi...
While Mn-catalyzed (de)hydrogenation of carbonyl derivatives has been well established, the reactivi...
Detailed understanding of the mechanistic processes that underpin transition metal-catalysed reactio...
Low-valent manganese-catalyzed C–H alkylation of pyridine derivatives with both primary and challeng...
The strong C-H bond activation of hydrocarbons is a difficult reaction in environmental and biologic...
Manganese-catalyzed C−H bond activation chemistry is emerging as a powerful and complementary method...
Manganese-catalyzed C−H bond activation chemistry is emerging as a powerful and complementary method...
Manganese-catalyzed C−H bond activation chemistry is emerging as a powerful and complementary method...
Manganese(I) carbonyl-catalyzed C–H bond functionalization of 2-phenylpyridine and related compound...
Manganese(I) carbonyl-catalyzed C–H bond functionalization of 2-phenylpyridine and related compound...
As a synthetic methodology, C–H activation represents a complimentary protocol to traditional cross-...
While Mn-catalyzed (de)hydrogenation of carbonyl derivatives has been well established, the reactivi...
The first <i>manganese-catalyzed</i> aromatic C–H alkenylation with terminal alkynes is described. T...
While Mn-catalyzed (de)hydrogenation of carbonyl derivatives has been well established, the reactivi...
A new efficient manganese-catalyzed selective C2-alkylation of indoles via carbenoid insertion has b...
While Mn-catalyzed (de)hydrogenation of carbonyl derivatives has been well established, the reactivi...
While Mn-catalyzed (de)hydrogenation of carbonyl derivatives has been well established, the reactivi...
Detailed understanding of the mechanistic processes that underpin transition metal-catalysed reactio...
Low-valent manganese-catalyzed C–H alkylation of pyridine derivatives with both primary and challeng...
The strong C-H bond activation of hydrocarbons is a difficult reaction in environmental and biologic...