Matches in SemOpenAlex for { <https://semopenalex.org/work/W3081832135> ?p ?o ?g. }
- W3081832135 abstract "Abstract Various electrocatalyst adjustment methods have been reported with the efforts of plenty of researchers, such as element doping, defect, control crystalline phase, surface modification, etc. However, systematic studies on the relationship between the facets of electrocatalysts and the activity of NRR have not been reported. Pd nanocrystals are systematically studied herein, which selectively expose the (100) facet, (111) facet, and (110) facet (each of which behaves as a cube, octahedron, and rhombic dodecahedron) for NRR at mild conditions. Experimental data show that the NH 3 yield of Pd cubes is 24.3 μg mg ‐1 cat h ‐1 at 0 V vs reversible hydrogen electrode and the Faradaic efficiency is 36.6% in 0.1 m Li 2 SO 4 electrolyte, which are 2.7 and 5.3 times higher than Pd octahedrons and Pd rhombic dodecahedrons. Meanwhile, it is also one of the best catalytic materials to realize high activity at low overpotentials ever reported. Furthermore, Pd cubes show extraordinary stability for NRR after a long‐time stability test. Density functional theory calculations reveal the remarkable NRR performance of Pd (100) can be attributed to the lower energy barrier of *NNH generation and the lower energy barrier for producing NH 3 from *NH 3 (the rate determining step)." @default.
- W3081832135 created "2020-09-08" @default.
- W3081832135 creator A5005913193 @default.
- W3081832135 creator A5008182825 @default.
- W3081832135 creator A5011290810 @default.
- W3081832135 creator A5043304741 @default.
- W3081832135 creator A5049159792 @default.
- W3081832135 creator A5060523046 @default.
- W3081832135 creator A5061507436 @default.
- W3081832135 creator A5072157142 @default.
- W3081832135 creator A5073216396 @default.
- W3081832135 creator A5091738401 @default.
- W3081832135 date "2020-08-30" @default.
- W3081832135 modified "2023-10-18" @default.
- W3081832135 title "Exposure of Definite Palladium Facets Boosts Electrocatalytic Nitrogen Fixation at Low Overpotential" @default.
- W3081832135 cites W1972901386 @default.
- W3081832135 cites W1986820461 @default.
- W3081832135 cites W2022622293 @default.
- W3081832135 cites W2059804857 @default.
- W3081832135 cites W2071446570 @default.
- W3081832135 cites W2093853901 @default.
- W3081832135 cites W2156948146 @default.
- W3081832135 cites W2315956328 @default.
- W3081832135 cites W2319936148 @default.
- W3081832135 cites W2339336236 @default.
- W3081832135 cites W2556334122 @default.
- W3081832135 cites W2591686856 @default.
- W3081832135 cites W2626655409 @default.
- W3081832135 cites W2729258083 @default.
- W3081832135 cites W2729611653 @default.
- W3081832135 cites W2759485485 @default.
- W3081832135 cites W2767966656 @default.
- W3081832135 cites W2790613799 @default.
- W3081832135 cites W2800007040 @default.
- W3081832135 cites W2804705815 @default.
- W3081832135 cites W2810270534 @default.
- W3081832135 cites W2851584547 @default.
- W3081832135 cites W2887542968 @default.
- W3081832135 cites W2888829340 @default.
- W3081832135 cites W2894805156 @default.
- W3081832135 cites W2898376934 @default.
- W3081832135 cites W2902334028 @default.
- W3081832135 cites W2904663133 @default.
- W3081832135 cites W2906749653 @default.
- W3081832135 cites W2909197523 @default.
- W3081832135 cites W2909628148 @default.
- W3081832135 cites W2913399789 @default.
- W3081832135 cites W2913833914 @default.
- W3081832135 cites W2914146174 @default.
- W3081832135 cites W2914280674 @default.
- W3081832135 cites W2916737721 @default.
- W3081832135 cites W2919144141 @default.
- W3081832135 cites W2920465743 @default.
- W3081832135 cites W2922196521 @default.
- W3081832135 cites W2937303485 @default.
- W3081832135 cites W2946633992 @default.
- W3081832135 cites W2949570588 @default.
- W3081832135 cites W2953366342 @default.
- W3081832135 cites W2953589763 @default.
- W3081832135 cites W2956118812 @default.
- W3081832135 cites W2958810107 @default.
- W3081832135 cites W2962949646 @default.
- W3081832135 cites W2965531859 @default.
- W3081832135 cites W2975428386 @default.
- W3081832135 cites W2983000192 @default.
- W3081832135 cites W2990359859 @default.
- W3081832135 cites W2998667770 @default.
- W3081832135 cites W3092554490 @default.
- W3081832135 cites W4361798634 @default.
- W3081832135 doi "https://doi.org/10.1002/aenm.202002131" @default.
- W3081832135 hasPublicationYear "2020" @default.
- W3081832135 type Work @default.
- W3081832135 sameAs 3081832135 @default.
- W3081832135 citedByCount "40" @default.
- W3081832135 countsByYear W30818321352021 @default.
- W3081832135 countsByYear W30818321352022 @default.
- W3081832135 countsByYear W30818321352023 @default.
- W3081832135 crossrefType "journal-article" @default.
- W3081832135 hasAuthorship W3081832135A5005913193 @default.
- W3081832135 hasAuthorship W3081832135A5008182825 @default.
- W3081832135 hasAuthorship W3081832135A5011290810 @default.
- W3081832135 hasAuthorship W3081832135A5043304741 @default.
- W3081832135 hasAuthorship W3081832135A5049159792 @default.
- W3081832135 hasAuthorship W3081832135A5060523046 @default.
- W3081832135 hasAuthorship W3081832135A5061507436 @default.
- W3081832135 hasAuthorship W3081832135A5072157142 @default.
- W3081832135 hasAuthorship W3081832135A5073216396 @default.
- W3081832135 hasAuthorship W3081832135A5091738401 @default.
- W3081832135 hasConcept C115624301 @default.
- W3081832135 hasConcept C123480859 @default.
- W3081832135 hasConcept C130349721 @default.
- W3081832135 hasConcept C147597530 @default.
- W3081832135 hasConcept C147789679 @default.
- W3081832135 hasConcept C152365726 @default.
- W3081832135 hasConcept C15744967 @default.
- W3081832135 hasConcept C161790260 @default.
- W3081832135 hasConcept C171250308 @default.
- W3081832135 hasConcept C17525397 @default.
- W3081832135 hasConcept C175854130 @default.
- W3081832135 hasConcept C179104552 @default.