Designing sites in heterogeneous catalysis: are we reaching selectivities competitive with those of homogeneous catalysts?
F Zaera - Chemical Reviews, 2022 - ACS Publications
A critical review of different prominent nanotechnologies adapted to catalysis is provided,
with focus on how they contribute to the improvement of selectivity in heterogeneous …
with focus on how they contribute to the improvement of selectivity in heterogeneous …
First-principles-based multiscale modelling of heterogeneous catalysis
First-principles-based multiscale models are ever more successful in addressing the wide
range of length and time scales over which material–function relationships evolve in …
range of length and time scales over which material–function relationships evolve in …
Surface Modulation of Hierarchical MoS2 Nanosheets by Ni Single Atoms for Enhanced Electrocatalytic Hydrogen Evolution
Surface modulation at the atomic level is an important approach for tuning surface chemistry
and boosting the catalytic performance. Here, a surface modulation strategy is demonstrated …
and boosting the catalytic performance. Here, a surface modulation strategy is demonstrated …
Advances of atomically dispersed catalysts from single-atom to clusters in energy storage and conversion applications
Owing to the special structural characteristics and maximized efficiency, atomically
dispersed catalysts (ADCs) with different atom sizes ranged from the single atom to clusters …
dispersed catalysts (ADCs) with different atom sizes ranged from the single atom to clusters …
Fabricating high temperature stable Mo-Co9S8/Al2O3 catalyst for selective hydrodeoxygenation of lignin to arenes
X Diao, N Ji, X Li, Y Rong, Y Zhao, X Lu, C Song… - Applied Catalysis B …, 2022 - Elsevier
Achieving high-temperature stability/duration without compromising the activity remains an
arduous task in catalyst design, particularly for MoS 2 materials. Herein, a robust catalyst …
arduous task in catalyst design, particularly for MoS 2 materials. Herein, a robust catalyst …
Scalable Edge-Oriented Metallic Two-Dimensional Layered Cu2Te Arrays for Electrocatalytic CO2 Methanation
H Wang, G Zhan, C Tang, D Yang, W Liu, D Wang… - ACS …, 2023 - ACS Publications
Copper-based nanomaterials are compelling for high-efficient, low-cost electrocatalytic CO2
reduction reaction (CO2RR) due to their exotic electronic and structural properties. However …
reduction reaction (CO2RR) due to their exotic electronic and structural properties. However …
Dual-phase MoC-Mo2C nanosheets prepared by molten salt electrochemical conversion of CO2 as excellent electrocatalysts for the hydrogen evolution reaction
Dual-phase structures usually have better electrocatalytic activity in the hydrogen evolution
reaction (HER) due to synergistic effects. Herein, a novel strategy is proposed to prepare …
reaction (HER) due to synergistic effects. Herein, a novel strategy is proposed to prepare …
Rational design of MoS2-based catalysts toward lignin hydrodeoxygenation: Interplay of structure, catalysis, and stability
X Diao, N Ji - Journal of Energy Chemistry, 2023 - Elsevier
The MoS 2-based materials are a vital class of heterogeneous catalysts for the
hydrodeoxygenation of lignin and its model compounds to produce value-added chemicals …
hydrodeoxygenation of lignin and its model compounds to produce value-added chemicals …
Ultrafast Internal Exciton Dissociation through Edge States in MoS2 Nanosheets with Diffusion Blocking
Edge states of two-dimensional transition-metal dichalcogenides (TMDCs) are crucial to
quantum circuits and optoelectronics. However, their dynamics are pivotal but remain …
quantum circuits and optoelectronics. However, their dynamics are pivotal but remain …
Surface engineering of CoMoS nanosulfide for hydrodeoxygenation of lignin-derived phenols to arenes
W Song, S Zhou, S Hu, W Lai, Y Lian, J Wang… - ACS …, 2018 - ACS Publications
We propose a surface atom engineering strategy to obtain a well-dispersed Co-incorporated
MoS2 nanomaterial, which maximizes the Co–Mo–S phase and achieves high activity in …
MoS2 nanomaterial, which maximizes the Co–Mo–S phase and achieves high activity in …