2018
DOI: 10.1021/acscatal.8b00783
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Engineering the Electronic Structure of MoS2 Nanorods by N and Mn Dopants for Ultra-Efficient Hydrogen Production

Abstract: Developing economical and efficient electrocatalysts with nonprecious metals for the hydrogen evolution reaction (HER), especially in water-alkaline electrolyzers, is pivotal for large-scale hydrogen production. Recently, both density functional theory (DFT) calculations and experimental studies have demonstrated that earth-abundant MoS 2 is a promising HER electrocatalyst in acidic solution. However, the HER kinetics of MoS 2 in alkaline solution still suffer from a high overpotential (90−220 mV at a current … Show more

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Cited by 185 publications
(111 citation statements)
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“…The electrochemical double‐layer capacitance (C dl ) of E‐Ti 3 C 2 O x is measured to be 12.9 mF cm −2 , which is much higher than that of E‐Ti 3 C 2 (OH) x and E‐Ti 3 C 2 T x ‐450 (Figure S7). These results reveal that heat treatment can increase the number of exposed active sites for Ti 3 C 2 ‐based catalysts . Unexpectedly, the specific HER activity of E‐Ti 3 C 2 O x is lower than that of E‐Ti 3 C 2 (OH) x (Figure S8) upon normalizing with respect to C dl .…”
Section: Resultsmentioning
confidence: 99%
“…The electrochemical double‐layer capacitance (C dl ) of E‐Ti 3 C 2 O x is measured to be 12.9 mF cm −2 , which is much higher than that of E‐Ti 3 C 2 (OH) x and E‐Ti 3 C 2 T x ‐450 (Figure S7). These results reveal that heat treatment can increase the number of exposed active sites for Ti 3 C 2 ‐based catalysts . Unexpectedly, the specific HER activity of E‐Ti 3 C 2 O x is lower than that of E‐Ti 3 C 2 (OH) x (Figure S8) upon normalizing with respect to C dl .…”
Section: Resultsmentioning
confidence: 99%
“…The HER performance is comparable with recently reported MoS 2 ‐based electrocatalysts . It may be due to the improved in‐plane electrical conductivity and carrier concentration of MoS 2 after nitrogen doping as observed in earlier cases for the nitrogen‐manganese co‐doped MoS 2 and nickel@N‐doped carbon@MoS 2 systems . Therefore, the HER activity enhancement can be related to the N dopants in the MoS 2 crystal structure.…”
Section: Resultsmentioning
confidence: 99%
“…The calculated Tafel slope value of the above three reactions were 118, 39, and 29 mV dec −1 . For all the prepared materials, the Tafel slope values varied within 70–48 mV dec −1 range which represented the Volmer‐Heyrovsky mechanism for HER process . As presented in Figure b, Tafel slope decreased from 68.8 to 48.2 mV dec −1 after successive N doping.…”
Section: Resultsmentioning
confidence: 99%
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“…[15][16][17][18][19] By breaking the periodicity in MoS 2 crystal and reconfiguring it with alien atoms, it is possible to create localized electronic density on host atoms, hence altering the energy barriers for the reaction. [15][16][17][18][19] By breaking the periodicity in MoS 2 crystal and reconfiguring it with alien atoms, it is possible to create localized electronic density on host atoms, hence altering the energy barriers for the reaction.…”
Section: Doi: 101002/advs201900140mentioning
confidence: 99%