Heterogeneous, metal, single-site catalysts often exhibit higher catalytic performance than other catalysts because of their maximized atom efficiency of 100 %. Reported herein is a precoordination/solvothermal polymerization strategy to fabricate a stable mononuclear Pd-metalized porous organic polymer catalyst (Pd@POP). Pd@POP was easy to use in regioselective organic reactions because the internal structure of this Pd@POP can be easily modified. The catalyst was used to solve the intractable regioselectivity problems of Heck reactions. Pd@POP-9 can efficiently activate the ends of olefins, thereby leading to high selectivity for substitution at the external position. To understand the reason underlying the high selectivity and activity o...
It is highly desirable to design functionalized supports in heterogeneous catalysis regarding the st...
The aminophosphine-based pincer complexes [C6H3-2,6-(XP(piperidinyl)2)2Pd(Cl)] (X=NH 1; X=O 2) are r...
Thesis (Ph.D.)--University of Washington, 2019Catalyst transfer polymerization (CTP) is a versatile ...
Heterogeneous, metal, single-site catalysts often exhibit higher catalytic performance than other ca...
The development of organometallic single-site catalysts (SSCs) has inspired the designs of new heter...
New polymeric materials containing functional sites analogous to ionic liquids have been synthesized...
A new Pd(0) complex of a pendant cyclophosphazene-containing cross-linked polymer is found to be an ...
A new generation of confined palladium(II) catalysts covalently attached inside of porous organic po...
The performances of palladium metal catalysts supported by organic resins containing tertiary amino,...
Palladium (Pd) recycling from waste materials is an important approach in order to meet the growing ...
The development of organometallic single-site catalysts (SSCs) has inspired the designs of new heter...
Porous polymerized organocatalysts (PPOs) have been successfully synthesized from the corresponding ...
Highly selective catalytic hydrogenation of alkynes to alkenes is a highly important reaction owing ...
A new, high surface area, nanoporous polymer (COP-220) was synthesized using sustainable building bl...
Carbon-carbon bond formation reactions are among the most important processes in chemistry, as they ...
It is highly desirable to design functionalized supports in heterogeneous catalysis regarding the st...
The aminophosphine-based pincer complexes [C6H3-2,6-(XP(piperidinyl)2)2Pd(Cl)] (X=NH 1; X=O 2) are r...
Thesis (Ph.D.)--University of Washington, 2019Catalyst transfer polymerization (CTP) is a versatile ...
Heterogeneous, metal, single-site catalysts often exhibit higher catalytic performance than other ca...
The development of organometallic single-site catalysts (SSCs) has inspired the designs of new heter...
New polymeric materials containing functional sites analogous to ionic liquids have been synthesized...
A new Pd(0) complex of a pendant cyclophosphazene-containing cross-linked polymer is found to be an ...
A new generation of confined palladium(II) catalysts covalently attached inside of porous organic po...
The performances of palladium metal catalysts supported by organic resins containing tertiary amino,...
Palladium (Pd) recycling from waste materials is an important approach in order to meet the growing ...
The development of organometallic single-site catalysts (SSCs) has inspired the designs of new heter...
Porous polymerized organocatalysts (PPOs) have been successfully synthesized from the corresponding ...
Highly selective catalytic hydrogenation of alkynes to alkenes is a highly important reaction owing ...
A new, high surface area, nanoporous polymer (COP-220) was synthesized using sustainable building bl...
Carbon-carbon bond formation reactions are among the most important processes in chemistry, as they ...
It is highly desirable to design functionalized supports in heterogeneous catalysis regarding the st...
The aminophosphine-based pincer complexes [C6H3-2,6-(XP(piperidinyl)2)2Pd(Cl)] (X=NH 1; X=O 2) are r...
Thesis (Ph.D.)--University of Washington, 2019Catalyst transfer polymerization (CTP) is a versatile ...