2021
DOI: 10.1021/acs.jpclett.0c03841
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Anisotropic Janus SiP2 Monolayer as a Photocatalyst for Water Splitting

Abstract: The design of materials meeting the rigorous requirements of photocatalytic water splitting is still a challenge. Anisotropic Janus 2D materials exhibit great potential due to outstandingly high photocatalytic efficiency. Unfortunately, these materials are scarce. By means of ab initio swarm-intelligence search calculations, we identify a SiP 2 monolayer with Janus structure (i.e., out-of-plane asymmetry). The material turns out to be semiconducting with an indirect band gap of 2.39 eV e… Show more

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Cited by 63 publications
(55 citation statements)
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“…The three kinds of P–P bond lengths are 2.26, 2.27, and 2.28 Å, which are nearly identical with 2.24 Å in phosphorene and 2.27 Å in SiP 2 , and the P–S bond length of 2.16 Å is comparable to 2.33 Å in PS 2 and 2.15 Å in P 2 S 3 . The Bader charge analysis shows that S atoms get electronic charge from P atoms due to their different electronegativities.…”
mentioning
confidence: 74%
“…The three kinds of P–P bond lengths are 2.26, 2.27, and 2.28 Å, which are nearly identical with 2.24 Å in phosphorene and 2.27 Å in SiP 2 , and the P–S bond length of 2.16 Å is comparable to 2.33 Å in PS 2 and 2.15 Å in P 2 S 3 . The Bader charge analysis shows that S atoms get electronic charge from P atoms due to their different electronegativities.…”
mentioning
confidence: 74%
“…In the ultraviolet and visible light regions, its absorption coefficients reach 10 5 cm –1 (Figure f), which is much higher than in g-C 3 N 4 and comparable to that of MoS 2 . Moreover, its absorption coefficients are anisotropic, as observed in phosphorene and SiP 2 . We also calculated the absorption spectra of the C 3 S monolayer under biaxial strain (Figure S6).…”
mentioning
confidence: 92%
“…Although the band gap and energy band arrangement of the GaSe/InS heterostructure and P-GaSe/InS heterostructure meet the requirements of the photocatalyst, it is necessary to determine whether the band edge position of the heterostructure meets the occurrence of HER and OER. The standard potentials of H + /H 2 ( E H + /H 2 ) and H 2 O/O 2 ( E H 2 O/O 2 ) , with different pH values can be calculated from the standard potentials under acidic conditions at pH = 0 ( E H + /H 2 = −4.44 eV, E H 2 O/O 2 = −5.67 eV), the formula is as follows: …”
mentioning
confidence: 99%