2017
DOI: 10.1002/adma.201705941
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Interstitial P‐Doped CdS with Long‐Lived Photogenerated Electrons for Photocatalytic Water Splitting without Sacrificial Agents

Abstract: Photocatalytic hydrogen evolution from pure water is successfully realized by using interstitial P-doped CdS with rich S vacancies (CdS-P) as the photocatalyst in the absence of any electron sacrificial agents. Through interstitial P doping, the impurity level of S vacancies is located near the Fermi level and becomes an effective electron trap level in CdS-P, which can change dynamic properties of photogenerated electrons and thus prolong their lifetimes. The long-lived photogenerated electrons are able to re… Show more

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Cited by 498 publications
(242 citation statements)
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“…Surprisingly,O 2 was not detected. [22] Although the valence band position of the materials allows the formation of O 2 and H 2 O 2 ,compared to the concerted four-electron process for O 2 evolution, these species formed H 2 O 2 via the two-electron process is kinetically more favorable. As the photocatalytic reaction proceeded, as mall amount of H 2 O 2 was also detected ( Figure S24).…”
Section: Angewandte Chemiementioning
confidence: 99%
“…Surprisingly,O 2 was not detected. [22] Although the valence band position of the materials allows the formation of O 2 and H 2 O 2 ,compared to the concerted four-electron process for O 2 evolution, these species formed H 2 O 2 via the two-electron process is kinetically more favorable. As the photocatalytic reaction proceeded, as mall amount of H 2 O 2 was also detected ( Figure S24).…”
Section: Angewandte Chemiementioning
confidence: 99%
“…Interestingly, no O 2 evolution by four-electron water oxidation was observed (Supporting Information, Figure S13). Instead, hydrogen peroxide (H 2 O 2 )w ere produced by photoholes via at wo-electron process of water oxidation, [15,22] with the H 2 :H 2 O 2 ratio (1:0.9) close to 1:1( Supporting Information, Figures S14, S15). Moreover,P CN@HP(0.4) still retained 90.4 %o fi ts original photocatalytic HER rate after a1 6h continuous light irradiation, revealing its reasonable photocatalytic durability (Supporting Information, Figure S16).…”
Section: Angewandte Chemiementioning
confidence: 99%
“…It is well known that defective states cause a defect energy level between CB and VB, which thereby narrows the semiconductor band gap . The blueshifted DRS and slightly enlarged band gap of S‐treated ZCS demonstrate clearly that the defective state energy level that corresponds to S vacancies exists in the ZCS sample . The VB position remains unchanged and is 1.04 eV below the fermi level for both ZCS and S‐treated ZCS (Figure a), whereas the E g of S‐treated ZCS changed from 2.69 for the ZCS sample to 2.81 eV (inset of Figure S12).…”
Section: Resultsmentioning
confidence: 86%