Hydrogen Evolution Activity of Nitrogen-Rich g -C 3- x N 4+ x Synthesized by Solid-Gas Interface Method

Synthesis of a metal-free carbon nitride ( -C N ) photocatalyst in the form of nitrogen-rich -C N derivatives is desirable for efficient solar to hydrogen conversion and remains a challenging task to achieve. Herein we report the development of homogeneous sheets of nitrogen-rich graphitic carbon ni...

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Veröffentlicht in:Langmuir 2023-08, Vol.39 (34), p.11992-12003
Hauptverfasser: Rajendramani, Radha, Madan, Krateeka, Kallingal, Mohammed Sadik Nalakath, Guru, Sruthi, De, Susmita, Gangavarapu, Ranga Rao
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Sprache:eng
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Zusammenfassung:Synthesis of a metal-free carbon nitride ( -C N ) photocatalyst in the form of nitrogen-rich -C N derivatives is desirable for efficient solar to hydrogen conversion and remains a challenging task to achieve. Herein we report the development of homogeneous sheets of nitrogen-rich graphitic carbon nitride samples from melamine by a solid-gas interface approach. Using this method, pure -C N (CN), -C N under ammonia flow (CN-NH ) and -C N under nitrogen flow (CN-N ) are prepared. The -C N (CN-NH ) sample shows better surface conductivity, wide optical absorbance in the visible region, reduced recombination and high electron donor density, and higher performance toward photoelectrochemical hydrogen evolution (HER). The -C N (CN-NH ) generates a photocurrent of 2.06 μA cm , which is 2.5 times higher than that of the pure -C N (CN) sample (0.85 μA cm ). It also shows higher photocatalytic water splitting ability compared to the CN and CN-N samples, generating 634 μmol g hydrogen without cocatalyst and 1163 μmol g of hydrogen with Pt cocatalyst. Density functional calculations suggest that the progressive band gap reduction with the increase in the N-dopant percentage can be attributed to the gradual increase in the partial π-occupations, which can lead to a significant stabilization of the conduction band minima. The theoretical modeling, however, indicates a saturation in the band gap effect after 75% of N-dopant. The onset potential of -C N for HER appears at η = 0.43 V in dark and η = 0.34 V vs Ag/AgCl under solar light illumination of 1 sun.
ISSN:0743-7463
1520-5827
DOI:10.1021/acs.langmuir.3c00867