Events

  1. , "Recent Progress to Understand and Improve Zeolite Stability in the Aqueous Medium", Pet. Chem., 60, 420-436, (2020). [10.1134/s0965544120040143]
  2. , "Atomic Layer Deposition for Preparing Isolated Co Sites on SiO2 for Ethane Dehydrogenation Catalysis", Nanomaterials, 10, 13, (2020). [10.3390/nano10020244]
  3. , "Catalytic resonance theory: parallel reaction pathway control", Chem. Sci., 11, 3501-3510, (2020). [10.1039/c9sc06140a]
  4. , "C–O bond activation using ultralow loading of noble metal catalysts on moderately reducible oxides", Nat. Catal., 8, , (2020). [10.1038/s41929-020-0445-x]
  5. , "Correlating furfural reaction pathways with interactions between furfural and monometallic surfaces", Catal. Today, 339, 289-295, (2020). [10.1016/j.cattod.2018.10.004]
  6. , "Surface chemistry dictates stability and oxidation state of supported single metal catalyst atoms", Chem. Sci., 11, 1469-1477, (2020). [10.1039/c9sc05944j]
  7. , "Cluster-mining: an approach for determining core structures of metallic nanoparticles from atomic pair distribution function data", Acta Crystallogr. Sect. A, 76, 24-31, (2020). [10.1107/s2053273319013214]
  8. , "An unconventional DCOx favored Co/N-C catalyst for efficient conversion of fatty acids and esters to liquid alkanes", Appl. Catal. A-Gen., 591, 9, (2020). [10.1016/j.apcata.2019.117385]
  9. , "Catalytic Adipic Acid Production on Zeolites from Biomass-Derived Tetrahydrofuran-2,5-dicarboxylic Acid", ACS Appl. Energ. Mater., 3, 99-105, (2020). [10.1021/acsaem.9b01954]
  10. , "Theoretical Approach To Predict the Stability of Supported Single-Atom Catalysts", ACS Catal., 9, 3289-3297, (2019). [10.1021/acscatal.9b00252]