The atomically dispersed metal catalyst or single-atom catalyst (SAC) with the utmost metal utilization efficiency shows excellent selectivity toward ethylene compared to the metal nanoparticles catalyst in the acetylene semi-hydrogenation reaction. However, these catalysts normally work at relatively high temperatures. Achieving low-temperature reactivity while preserving high selectivity remains a challenge. To improve the intrinsic reactivity of SACs, rationally tailoring the coordination environments of the first metal atom by coordinating it with a second neighboring metal atom affords an opportunity. Here, we report the fabrication of a dual-atom catalyst (DAC) that features a bonded Pd1–Cu1 atomic pair anchoring on nanodiamond graphe...
SiO2 supported IB metals alloyed Pd single-atom catalysts (SACs) for selective hydrogenation of acet...
Single-atom catalysts, in particular the Fe–N–C family of materials, have emerged as a promising alt...
Single-atom catalysts, in particular the Fe–N–C family of materials, have emerged as a promising alt...
Selective hydrogenation of acetylene in excess ethylene is an important reaction in both fundamental...
Selective hydrogenation of acetylene to ethylene is an industrially important reaction. Pd-based cat...
We reported here a strategy to use a defective nanodiamond-graphene (ND@G) to prepare an atomically ...
Semihydrogenation of acetylene in an ethylene-rich stream is an industrially important process. Conv...
Semihydrogenation of acetylene in an ethylene-rich stream is an industrially important process. Conv...
The heterogeneity of active sites is the main obstacle for selectivity control in heterogeneous cata...
An atomically dispersed palladium (Pd) catalyst supported onto a defective nanodiamond-graphene (ND@...
Selective hydrogenation of acetylene to ethylene is an important industrial reaction. In this work, ...
Single atom catalysts (SACs) have received a lot of attention in recent years for their high catalyt...
Single-atom alloys, which are prepared byembedding isolated metal sites in host metals, are promisin...
Cu-alloyed Pd single-atom catalysts exhibit excellent catalytic performance for the semi-hydrogenati...
Controlling the structure sensitivity of catalyzed reactions over metals is central to developing at...
SiO2 supported IB metals alloyed Pd single-atom catalysts (SACs) for selective hydrogenation of acet...
Single-atom catalysts, in particular the Fe–N–C family of materials, have emerged as a promising alt...
Single-atom catalysts, in particular the Fe–N–C family of materials, have emerged as a promising alt...
Selective hydrogenation of acetylene in excess ethylene is an important reaction in both fundamental...
Selective hydrogenation of acetylene to ethylene is an industrially important reaction. Pd-based cat...
We reported here a strategy to use a defective nanodiamond-graphene (ND@G) to prepare an atomically ...
Semihydrogenation of acetylene in an ethylene-rich stream is an industrially important process. Conv...
Semihydrogenation of acetylene in an ethylene-rich stream is an industrially important process. Conv...
The heterogeneity of active sites is the main obstacle for selectivity control in heterogeneous cata...
An atomically dispersed palladium (Pd) catalyst supported onto a defective nanodiamond-graphene (ND@...
Selective hydrogenation of acetylene to ethylene is an important industrial reaction. In this work, ...
Single atom catalysts (SACs) have received a lot of attention in recent years for their high catalyt...
Single-atom alloys, which are prepared byembedding isolated metal sites in host metals, are promisin...
Cu-alloyed Pd single-atom catalysts exhibit excellent catalytic performance for the semi-hydrogenati...
Controlling the structure sensitivity of catalyzed reactions over metals is central to developing at...
SiO2 supported IB metals alloyed Pd single-atom catalysts (SACs) for selective hydrogenation of acet...
Single-atom catalysts, in particular the Fe–N–C family of materials, have emerged as a promising alt...
Single-atom catalysts, in particular the Fe–N–C family of materials, have emerged as a promising alt...