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Recent advances of hydrogen production through particulate semiconductor photocatalytic overall water

Frontiers in Energy 2022, Volume 16, Issue 1,   Pages 49-63 doi: 10.1007/s11708-022-0817-9

Abstract: Solar energy-driven photocatalytic water splitting has been investigated for decades to produce cleanand renewable green hydrogen.the cutting-edge research within the overall water splitting system is summarized from the one-step photocatalyticIn addition, the photocatalytic reaction engineering study is also reviewed which is crucial for future

Keywords: photocatalysis     overall water splitting     hydrogen    

Design and synthesis of ZnCoO/CdS for substantially improved photocatalytic hydrogen production

Frontiers of Chemical Science and Engineering 2023, Volume 17, Issue 5,   Pages 606-616 doi: 10.1007/s11705-022-2233-4

Abstract: In this study, the hydrogen evolution performance of CdS nanorods is improved using ZnCo2OAccording to the experimental results of photocatalytic hydrogen evolution, the final hydrogen evolutionZnCo2O4 expands the adsorption range of light and improves the performance of photocatalytichydrogen evolution.

Keywords: ZnCo2O4 nanosphere     CdS nanorods     photocatalytic hydrogen evolution    

A mini-review of ferrites-based photocatalyst on application of hydrogen production

Frontiers in Energy 2021, Volume 15, Issue 3,   Pages 621-630 doi: 10.1007/s11708-021-0761-0

Abstract: Photocatalytic water splitting for hydrogen production is a promising strategy to produce renewable energyand decrease production cost.Spinel-ferrites are potential photocatalysts in photocatalytic reaction system due to their room temperature/sub> or g-C3N4 are also summarized to illustrate the advanced improvement in photocatalytichydrogen production.

Keywords: photocatalyst     spinel-ferrite     composite     photocatalytic hydrogen production    

Sulfur and carbon co-doped g-CN microtubes with enhanced photocatalytic H production activity

Frontiers in Energy doi: 10.1007/s11708-023-0899-z

Abstract: nitride (g-C3N4) has captured significant attention as a low-cost and efficient hydrogenproduction photocatalyst through.accelerating the separation of photogenerated carriers remain crucial strategies for promoting the photocatalyticMore importantly, co-doping S and C has greatly improved the photocatalytic performance of graphiticConsequently, the SCCN exhibits a remarkable photocatalytic H2 evolution rate of 4868 μmol

Keywords: carbon nitride     photocatalysis     hydrogen production    

In-MOF-derived In2S3/Bi2S3 heterojunction for enhanced photocatalytichydrogen production

Frontiers in Energy 2023, Volume 17, Issue 5,   Pages 654-663 doi: 10.1007/s11708-023-0885-5

Abstract: for rationally designing innovative heterojunction photocatalysts of transition metal sulfides for photocatalytichydrogen production.

Keywords: photocatalytic hydrogen production     wide-spectrum response     metal sulfides     MOFs derivative     heterogeneous    

Research progress of defect-engineered UiO-66(Zr) MOFs for photocatalytic hydrogen production

Frontiers in Energy 2021, Volume 15, Issue 3,   Pages 656-666 doi: 10.1007/s11708-021-0765-9

Abstract: In recent years, defect-engineered Zr-based UiO-66 metal-organic frameworks (UiO-66(Zr) metal-organic frameworks (MOFs)) have shown huge advantages in catalytic, functional materials, adsorption, and other fields due to their large surface areas, well-ordered porous structures, and flexible tailorability. It is extremely challenging to introduce defect sites in the synthesis of MOFs to regulate the physicochemical properties of materials such as (energy band structure, pore structure, etc.) to obtain an excellent performance. This paper reviews the recent research results of synthesis methods, characterization technologies, and application fields of defect-engineered UiO-66(Zr) MOFs materials in order to provide new insights to synthesize high-performance UiO-66(Zr) MOFs materials and promote the development of UiO-66(Zr) in various fields.

Keywords: defect engineering     metal-organic frameworks     UiO-66     photocatalysis    

Enhanced hydrogen production from aqueous methanol solution using TiO

Paramasivan GOMATHISANKAR,Tomoko NODA,Hideyuki KATSUMATA,Tohru SUZUKI,Satoshi KANECO

Frontiers of Chemical Science and Engineering 2014, Volume 8, Issue 2,   Pages 197-202 doi: 10.1007/s11705-014-1417-y

Abstract: The photocatalytic hydrogen production from aqueous methanol solution using titanium dioxide (TiO ) wasThe results show that only the addition of copper particles enhances the hydrogen production.Under the optimal conditions, the hydrogen production using TiO /Cu as photocatalysts is approximately

Keywords: photocatalytic hydrogen generation     methanol     copper particles     TiO2     metal-semiconductor interface    

Function-reversible facets enabling SrTiO nanocrystals for improved photocatalytic hydrogen evolution

Frontiers in Energy doi: 10.1007/s11708-023-0894-4

Abstract: facets with different band levels contribute to promoted charge separation, and provide active sites for photocatalyticIn such cases, only one family of facets can be used for photocatalytic hydrogen evolution.hydrogen via chemically depositing Pt nanoparticles on all facets.hydrogen evolution after depositing Pt nanoparticles, together with the {001} facets.Thus, the full-facets-utilization led to a much-improved activity for photocatalytic hydrogen, in contrast

Keywords: SrTiO3 nanocrystals     crystal facets     photocatalysis     hydrogen evolution    

growth of a-few-layered MoS on CdS nanorod for high efficient photocatalytic H production

Frontiers in Energy 2021, Volume 15, Issue 3,   Pages 752-759 doi: 10.1007/s11708-021-0779-3

Abstract: sub>2 was grown on CdS nanorod by a solid state method using sulfur powder as sulfur source for photocatalyticH2 production.The hydrogen evolution rate on m(MoS2): m(CdS) = 1: 50 (m is mass) reachesThis work provides a new design for photocatalysts with high photocatalytic activities and provides adeeper understanding of the effect of MoS2 on enhancing photocatalytic activity.

Keywords: photocatalytic H2 production     CdS     MoS2 cocatalyst     charge separation    

Theoretical study on flow and radiation in tubular solar photocatalytic reactor

Frontiers in Energy 2021, Volume 15, Issue 3,   Pages 687-699 doi: 10.1007/s11708-021-0773-9

Abstract: mixture flow model, an optimized six-flux model is first established and applied to the tubular solar photocatalytic

Keywords: photocatalytic hydrogen photoreactor     nume- rical simulation     solar energy     flow model     radiation model    

Production of hydrogen from fossil fuel: A review

Frontiers in Energy 2023, Volume 17, Issue 5,   Pages 585-610 doi: 10.1007/s11708-023-0886-4

Abstract: Production of hydrogen, one of the most promising alternative clean fuels, through catalytic conversionHowever, using noble metals as a catalyst is costly for hydrogen production, thus mandating non-nobleThis paper reviews the various hydrogen production methods from fossil fuels through pyrolysis, partialoxidation, autothermal, and steam reforming, emphasizing the catalytic production of hydrogen via steamTo avoid carbon emission, this method of hydrogen production from methane should be integrated with carbon

Keywords: methane     catalytic conversion     natural gas     hydrogen production     CCUS    

Evaluating the impact of sulfamethoxazole on hydrogen production during dark anaerobic sludge fermentation

Frontiers of Environmental Science & Engineering 2023, Volume 17, Issue 1, doi: 10.1007/s11783-023-1607-2

Abstract:

● SMX promotes hydrogen production from dark anaerobic sludge fermentation

Keywords: Sulfamethoxazole     Hydrogen production     Dark anaerobic fermentation     Waste activated sludge    

Organic conjugated polymers and polymer dots as photocatalysts for hydrogen production

Frontiers in Energy 2021, Volume 15, Issue 1,   Pages 667-677 doi: 10.1007/s11708-021-0767-7

Abstract: process large breadth of potential synthetic diversity are the representative of photocatalysts for hydrogenproduction, which presents both an opportunity and a challenge.Then, recent reports on polymer dots which showed a superior photocatalytic activity and a robust stabilityunder visible-light irradiation, for hydrogen production were summarized.Finally, challenges and outlook on using organic polymer dots-based photocatalysts from hydrogen production

Keywords: polymer dots (Pdots)     photocatalysis     hydrogen production    

Novel strategies to tailor the photocatalytic activity of metal–organic frameworks for hydrogen generation

Luis A. ALFONSO-HERRERA, Leticia M. TORRES-MARTINEZ, J. Manuel MORA-HERNANDEZ

Frontiers in Energy 2022, Volume 16, Issue 5,   Pages 734-746 doi: 10.1007/s11708-022-0840-x

Abstract: strategies employed to increase the efficiency of metal–organic framework (MOF)-based systems toward the photocatalytichydrogen evolution (PHE) reaction through specific strategies: tailoring the photocatalytic activityAlthough several reviews have investigated the photocatalytic activity of MOFs from a general point ofHowever, they did not consider the interactions between the components of the photocatalytic materialThis study highlights the effects of strength of the supramolecular interactions on the photocatalytic

Keywords: metal–organic frameworks (MOFs)     photocatalytic hydrogen evolution     MOF heterojunctions     materials derived    

Effects of nitrate concentration on biological hydrogen production by mixed cultures

Bo WANG, Wei WAN, Jianlong WANG,

Frontiers of Environmental Science & Engineering 2009, Volume 3, Issue 4,   Pages 380-386 doi: 10.1007/s11783-009-0142-0

Abstract: The effects of nitrate on fermentative hydrogen production and soluble metabolites from mixed culturesThe results showed that the substrate degradation rate, hydrogen production potential, hydrogen yield, and average hydrogen production rate initially increased with increasing nitrate concentrations fromThe maximum hydrogen production potential of 305.0mL, maximum hydrogen yield of 313.1This study used the Modified Logistic model to describe the progress of cumulative hydrogen production

Keywords: nitrogen source     biohydrogen     fermentative hydrogen production     quantitative kinetic model    

Title Author Date Type Operation

Recent advances of hydrogen production through particulate semiconductor photocatalytic overall water

Journal Article

Design and synthesis of ZnCoO/CdS for substantially improved photocatalytic hydrogen production

Journal Article

A mini-review of ferrites-based photocatalyst on application of hydrogen production

Journal Article

Sulfur and carbon co-doped g-CN microtubes with enhanced photocatalytic H production activity

Journal Article

In-MOF-derived In2S3/Bi2S3 heterojunction for enhanced photocatalytichydrogen production

Journal Article

Research progress of defect-engineered UiO-66(Zr) MOFs for photocatalytic hydrogen production

Journal Article

Enhanced hydrogen production from aqueous methanol solution using TiO

Paramasivan GOMATHISANKAR,Tomoko NODA,Hideyuki KATSUMATA,Tohru SUZUKI,Satoshi KANECO

Journal Article

Function-reversible facets enabling SrTiO nanocrystals for improved photocatalytic hydrogen evolution

Journal Article

growth of a-few-layered MoS on CdS nanorod for high efficient photocatalytic H production

Journal Article

Theoretical study on flow and radiation in tubular solar photocatalytic reactor

Journal Article

Production of hydrogen from fossil fuel: A review

Journal Article

Evaluating the impact of sulfamethoxazole on hydrogen production during dark anaerobic sludge fermentation

Journal Article

Organic conjugated polymers and polymer dots as photocatalysts for hydrogen production

Journal Article

Novel strategies to tailor the photocatalytic activity of metal–organic frameworks for hydrogen generation

Luis A. ALFONSO-HERRERA, Leticia M. TORRES-MARTINEZ, J. Manuel MORA-HERNANDEZ

Journal Article

Effects of nitrate concentration on biological hydrogen production by mixed cultures

Bo WANG, Wei WAN, Jianlong WANG,

Journal Article