The rapid recombination of photogenerated carriers poses a significant limitation on the use of CdS quantum dots(QDs)in photocatalysis.Herein,the construction of a novel S-scheme heterojunction between cubic-phase CdS...The rapid recombination of photogenerated carriers poses a significant limitation on the use of CdS quantum dots(QDs)in photocatalysis.Herein,the construction of a novel S-scheme heterojunction between cubic-phase CdS QDs and hollow nanotube In_(2)O_(3)is successfully achieved using an electrostatic self-assembly method.Under visible light irradiation,all CdS-In_(2)O_(3)composites exhibit higher hydrogen evolution efficiency compared to pure CdS QDs.Notably,the photocatalytic H_(2)evolution rate of the optimal CdS-7%In_(2)O_(3)composite is determined to be 2258.59μmol g^(−1)h^(−1),approximately 12.3 times higher than that of pure CdS.The cyclic test indicates that the CdS-In_(2)O_(3)composite maintains considerable activity even after 5 cycles,indicating its excellent stability.In situ X-ray photoelectron spectroscopy and density functional theory calculations confirm that carrier migration in CdS-In_(2)O_(3)composites adheres to a typical S-scheme heterojunction mechanism.Additionally,a series of characterizations demonstrate that the formation of S-scheme heterojunctions between In_(2)O_(3)and CdS inhibits charge recombination and accelerates the separation and migration of photogenerated carriers in the CdS QDs,thus achieving enhanced photocatalytic performance.This work elucidates the pivotal role of S-scheme heterojunctions in photocatalytic H_(2)production and offers novel insights into the construction of effective composite photocatalysts.展开更多
Emerging contaminants in water sources present serious environmental and health risks,creating an urgent need for efficient and reliable treatment strategies.Photocatalytic advanced oxidation processes(AOPs)provide ra...Emerging contaminants in water sources present serious environmental and health risks,creating an urgent need for efficient and reliable treatment strategies.Photocatalytic advanced oxidation processes(AOPs)provide rapid reaction rates and strong oxidation capabilities,however,comprehensive evaluations of wastewater treatment,including degradation pathways,toxicity assessments and mechanistic insights,remain underexplored in the literature.This study presents novel S-scheme Mn_(0.5)Cd_(0.5)S/In_(2)S_(3)(MCS/IS)photocatalysts for efficient degradation of antibiotic pollutants,with a particular focus on tetracycline hydrochloride(TCH).The optimized MCS/IS photocatalyst demonstrates exceptional degradation efficiency and robust resistance to inorganic anions.Additionally,a continuous-flow wastewater treatment system,using an MCS/IS membrane,demonstrates outstanding stability in TCH photodegradation.Utilizing response surface methodology and Fukui function analysis,the effects of various parameters on photocatalytic degradation rates,along with the associated pathways and intermediate products,have been thoroughly investigated.Toxicity assessments confirm the environmental safety of the treated effluents.Mechanistic studies show that the S-scheme heterojunction in the MCS/IS photocatalyst improves electron-hole separation,thereby enhancing photocatalytic performance.It is expected that this study will serve as a model for advancing the removal of emerging contaminants,further enhancing photocatalytic AOPs as sustainable water purification technologies.展开更多
A deficiency ofγδT cells has been described in Crohn's disease(CD).AIM To analyze the gene expression of interleukin 7(IL-7)and its receptors in the tissues of patients with CD.METHODS We studied the peripheral ...A deficiency ofγδT cells has been described in Crohn's disease(CD).AIM To analyze the gene expression of interleukin 7(IL-7)and its receptors in the tissues of patients with CD.METHODS We studied the peripheral blood of 80 patients with CD,comparing them with a group of 80 healthy subjects.The number and apoptosis ofαβandγδT cells in peripheral blood and the proportion ofαβandγδT cells in the intestinal tissues of patients with CD(n=25)were studied.The gene and protein expression of IL-7,IL-2 receptor subunitγ[cluster of differentiation 132(CD132)],receptorα(CD127),and caspase-3 in tissues was analyzed by quantitative PCR.Serum IL-7 levels were also analyzed.RESULTS In patients with CD,a decreased number ofγδT cells and an increase in the apoptosis of CD56+αβandγδT cells in peripheral blood was observed(P<0.0001 and P<0.01)respectively,and there was an inverse correlation among T subsets and their apoptosis.In addition,IL-7 gene expression and IL-7 protein in the tissues of these patients were increased.The titers of caspase-3 in tissues were low vs control group(P>0.01).The percentage of CD8+γδT cells decreased in tissues(P<0.01),and was directly related to IL-7 levels in peripheral blood.The expression of IL-2 receptor subunitγ(CD132)was greatly decreased in the tissues of patients with CD(P<0.05).CONCLUSION There may be a cause-effect relationship between the lower gene expression of the IL-2 receptor subunitγ(CD132)in tissues of patients with CD andγδT cells immunodeficiency.展开更多
文摘The rapid recombination of photogenerated carriers poses a significant limitation on the use of CdS quantum dots(QDs)in photocatalysis.Herein,the construction of a novel S-scheme heterojunction between cubic-phase CdS QDs and hollow nanotube In_(2)O_(3)is successfully achieved using an electrostatic self-assembly method.Under visible light irradiation,all CdS-In_(2)O_(3)composites exhibit higher hydrogen evolution efficiency compared to pure CdS QDs.Notably,the photocatalytic H_(2)evolution rate of the optimal CdS-7%In_(2)O_(3)composite is determined to be 2258.59μmol g^(−1)h^(−1),approximately 12.3 times higher than that of pure CdS.The cyclic test indicates that the CdS-In_(2)O_(3)composite maintains considerable activity even after 5 cycles,indicating its excellent stability.In situ X-ray photoelectron spectroscopy and density functional theory calculations confirm that carrier migration in CdS-In_(2)O_(3)composites adheres to a typical S-scheme heterojunction mechanism.Additionally,a series of characterizations demonstrate that the formation of S-scheme heterojunctions between In_(2)O_(3)and CdS inhibits charge recombination and accelerates the separation and migration of photogenerated carriers in the CdS QDs,thus achieving enhanced photocatalytic performance.This work elucidates the pivotal role of S-scheme heterojunctions in photocatalytic H_(2)production and offers novel insights into the construction of effective composite photocatalysts.
文摘Emerging contaminants in water sources present serious environmental and health risks,creating an urgent need for efficient and reliable treatment strategies.Photocatalytic advanced oxidation processes(AOPs)provide rapid reaction rates and strong oxidation capabilities,however,comprehensive evaluations of wastewater treatment,including degradation pathways,toxicity assessments and mechanistic insights,remain underexplored in the literature.This study presents novel S-scheme Mn_(0.5)Cd_(0.5)S/In_(2)S_(3)(MCS/IS)photocatalysts for efficient degradation of antibiotic pollutants,with a particular focus on tetracycline hydrochloride(TCH).The optimized MCS/IS photocatalyst demonstrates exceptional degradation efficiency and robust resistance to inorganic anions.Additionally,a continuous-flow wastewater treatment system,using an MCS/IS membrane,demonstrates outstanding stability in TCH photodegradation.Utilizing response surface methodology and Fukui function analysis,the effects of various parameters on photocatalytic degradation rates,along with the associated pathways and intermediate products,have been thoroughly investigated.Toxicity assessments confirm the environmental safety of the treated effluents.Mechanistic studies show that the S-scheme heterojunction in the MCS/IS photocatalyst improves electron-hole separation,thereby enhancing photocatalytic performance.It is expected that this study will serve as a model for advancing the removal of emerging contaminants,further enhancing photocatalytic AOPs as sustainable water purification technologies.
文摘A deficiency ofγδT cells has been described in Crohn's disease(CD).AIM To analyze the gene expression of interleukin 7(IL-7)and its receptors in the tissues of patients with CD.METHODS We studied the peripheral blood of 80 patients with CD,comparing them with a group of 80 healthy subjects.The number and apoptosis ofαβandγδT cells in peripheral blood and the proportion ofαβandγδT cells in the intestinal tissues of patients with CD(n=25)were studied.The gene and protein expression of IL-7,IL-2 receptor subunitγ[cluster of differentiation 132(CD132)],receptorα(CD127),and caspase-3 in tissues was analyzed by quantitative PCR.Serum IL-7 levels were also analyzed.RESULTS In patients with CD,a decreased number ofγδT cells and an increase in the apoptosis of CD56+αβandγδT cells in peripheral blood was observed(P<0.0001 and P<0.01)respectively,and there was an inverse correlation among T subsets and their apoptosis.In addition,IL-7 gene expression and IL-7 protein in the tissues of these patients were increased.The titers of caspase-3 in tissues were low vs control group(P>0.01).The percentage of CD8+γδT cells decreased in tissues(P<0.01),and was directly related to IL-7 levels in peripheral blood.The expression of IL-2 receptor subunitγ(CD132)was greatly decreased in the tissues of patients with CD(P<0.05).CONCLUSION There may be a cause-effect relationship between the lower gene expression of the IL-2 receptor subunitγ(CD132)in tissues of patients with CD andγδT cells immunodeficiency.