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NCDs/TiO_2复合材料的制备及其在太阳光下催化制氢的应用 被引量:4
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作者 魏婕 李雪冬 +2 位作者 王宏志 张青红 李耀刚 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2015年第9期925-930,共6页
采用溶剂热法,以乙腈为溶剂和葡萄糖为原料制备了粒径约4 nm的氮掺杂碳量子点NCDs。当激发波长从330 nm增加到470 nm,NCDs水溶液发射光谱出现红移。随后,将一定配比的NCDs、TiO2及5 m L超纯水超声混合60 min,并在80℃烘箱内陈化24 h,NCD... 采用溶剂热法,以乙腈为溶剂和葡萄糖为原料制备了粒径约4 nm的氮掺杂碳量子点NCDs。当激发波长从330 nm增加到470 nm,NCDs水溶液发射光谱出现红移。随后,将一定配比的NCDs、TiO2及5 m L超纯水超声混合60 min,并在80℃烘箱内陈化24 h,NCDs纳米颗粒成功地复合到TiO2(TiO2)表面。该方法有效地拓宽了TiO2吸收光谱的范围,并且减少了光生电子和空穴对,从而增强了TiO2的光催化制氢性能。实验结果表明:投料比为m(NCDs):m(TiO2)=15:85时,以甲醇为牺牲剂的反应体系光催化制氢效果最好,该复合材料具有一定的稳定性,循环三次使用后仍然有一定的光催化制氢性能。 展开更多
关键词 NCDs 碳量子点/TiO2复合材料 阳光催化制氢 溶剂热合成
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日本研究利用太阳光制氢
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《能源通讯》 2002年第2期23-23,共1页
关键词 日本 利用 太阳光制氢
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化合物半导体Cu2ZnSnS4太阳电池与人工光合作用制氢 被引量:2
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作者 江丰 李林涛 +2 位作者 冯旷 王康 黄定旺 《华南师范大学学报(自然科学版)》 CAS 北大核心 2020年第6期1-9,共9页
太阳能作为一种取之不尽、用之不竭的清洁能源,将成为未来新能源的重要组成部分.目前人们除了利用太阳能光伏发电以外,还有利用仿生光合作用将太阳能转化为化学能、利用半导体光电极分解水制氢等方式.而在半导体材料中,低成本环保型的... 太阳能作为一种取之不尽、用之不竭的清洁能源,将成为未来新能源的重要组成部分.目前人们除了利用太阳能光伏发电以外,还有利用仿生光合作用将太阳能转化为化学能、利用半导体光电极分解水制氢等方式.而在半导体材料中,低成本环保型的化合物半导体光伏材料(如Cu2ZnSnS4等)具有优良的光伏发电性能,同时也非常适合作为太阳光分解水制氢的材料.文章综述了近年来在Cu2ZnSnS4光伏电池及其太阳光分解水制氢领域的研究进展. 展开更多
关键词 化合物半导体光伏材料 光伏电池结构 阳光分解水制氢 Cu2ZnSnS4
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Progress in designing effective photoelectrodes for solar water splitting 被引量:3
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作者 Zhiliang Wang Lianzhou Wang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第3期369-378,共10页
Photoelectrochemical(PEC)water splitting process is regarded as a promising route to generate hydrogen by solar energy and at the heart of PEC is efficient electrode design.Great progress has been achieved in the aspe... Photoelectrochemical(PEC)water splitting process is regarded as a promising route to generate hydrogen by solar energy and at the heart of PEC is efficient electrode design.Great progress has been achieved in the aspects of material design,cocatalyst study,and electrode fabrication over the past decades.However,some key challenges remain unsolved,including the most demanded conversion efficiency issue.As three critical steps,i.e.light harvesting,charge transfer and surface reaction of the PEC process,occur in a huge range of time scale(from10-12s to100s),how to manage these subsequent steps to facilitate the seamless cooperation between each step to realize efficient PEC process is essentially important.This review focuses on an integral consideration of the three key criteria based on the recent progress on high efficient and stable photoelectrode design in PEC.The basic principles and potential strategies are summarized.Moreover,the challenge and perspective are also discussed. 展开更多
关键词 Solar energy Hydrogen production PHOTOELECTRODE Light harvesting Charge separation Surface reaction
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Latest progress in hydrogen production from solar water splitting via photocatalysis,photoelectrochemical,and photovoltaic-photoelectrochemical solutions 被引量:11
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作者 Rengui Li 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2017年第1期5-12,共8页
Hydrogen production via solar water splitting is regarded as one of the most promising ways to utilize solar energy and has attracted more and more attention. Great progress has been made on photocatalytic water split... Hydrogen production via solar water splitting is regarded as one of the most promising ways to utilize solar energy and has attracted more and more attention. Great progress has been made on photocatalytic water splitting for hydrogen production in the past few years. This review summarizesthe very recent progress (mainly in the last 2–3 years) on three major types of solar hydrogenproduction systems: particulate photocatalysis (PC) systems, photoelectrochemical (PEC) systems,and photovoltaic‐photoelectrochemical (PV‐PEC) hybrid systems. The solar‐to‐hydrogen (STH)conversion efficiency of PC systems has recently exceeded 1.0% using a SrTiO3:La,Rh/Au/BiVO4:Mophotocatalyst, 2.5% for PEC water splitting on a tantalum nitride photoanode, and reached 22.4%for PV‐PEC water splitting using a multi‐junction GaInP/GaAs/Ge cell and Ni electrode hybrid system.The advantages and disadvantages of these systems for hydrogen production via solar watersplitting, especially for their potential demonstration and application in the future, are briefly describedand discussed. Finally, the challenges and opportunities for solar water splitting solutions are also forecasted. 展开更多
关键词 Solar energy utilization PHOTOCATALYSIS Water splitting for hydrogen production Charge separation
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Ni-based photocatalytic H_2-production cocatalysts 被引量:9
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作者 Rongchen Shen Jun Xie +3 位作者 Quanjun Xiang Xiaobo Chen Jizhou Jiang Xin Li 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第3期240-288,共49页
Photocatalysis is believed to be one of the best methods to realize sustainable H2 production. However, achieving this through heterogeneous photocatalysis still remains a great challenge owing to the absence of activ... Photocatalysis is believed to be one of the best methods to realize sustainable H2 production. However, achieving this through heterogeneous photocatalysis still remains a great challenge owing to the absence of active sites, sluggish surface reaction kinetics, insufficient charge separation, and a high thermodynamic barrier. Therefore, cocatalysts are necessary and of great significance in boosting photocatalytic H2 generation. This review will focus on the promising and appealing low-cost Ni-based H2-generation cocatalysts as the alternatives for the high-cost and low-abundance noble metal cocatalysts. Special emphasis has been placed on the design principle, modification strategies for further enhancing the activity and stability of Ni-based cocatalysts, and identification of the exact active sites and surface reaction mechanisms. Particularly, four types of modification strategies based on increased light harvesting, enhanced charge separation, strengthened interface interaction, and improved electrocatalytic activity have been thoroughly discussed and compared in detail. This review may open a new avenue for designing highly active and durable Ni-based cocatalysts for photocatalytic H2 generation. 展开更多
关键词 Heterogeneous photocatalysts Ni-based cocatalysts Photocatalytic H2 generation Solar fuel Heterojunctions
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The Use of Hydrogen as a Fuel for Inland Waterway Units 被引量:3
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作者 M. Morsy El Gohary Yousri M. A. Welaya AmrAbdelwahabSaad 《Journal of Marine Science and Application》 2014年第2期212-217,共6页
Escalating apprehension about the harmful effects of widespread use of conventional fossil fuels in the marine field and in internal combustion engines in general, has led to a vast amount of efforts and the directing... Escalating apprehension about the harmful effects of widespread use of conventional fossil fuels in the marine field and in internal combustion engines in general, has led to a vast amount of efforts and the directing of large capital investment towards research and development of sustainable alternative energy sources. One of the most promising and abundant of these sources is hydrogen. Firstly, the use of current fossil fuels is. discussed focusing on the emissions and economic sides to emphasize the need for a new, cleaner and renewable fuel with particular reference to hydrogen as a suitable possible alternative. Hydrogen properties, production and storage methods are then reviewed along with its suitability from the economical point of view. Finally, a cost analysis for the use of hydrogen in internal combustion engines is carried out to illustrate the benefits of its use as a replacement for diesel. The outcome of this cost analysis shows that 98% of the capital expenditure is consumed by the equipment, and 68.3% of the total cost of the equipment is spent on the solar photovoltaic cells. The hydrogen plant is classified as a large investment project because of its high initial cost which is about 1 billion US$; but this is justified because hydrogen is produced in a totally green way. When hydrogen is used as a fuel, no harmful emissions are obtained. 展开更多
关键词 sustainable alternative energy sources hydrogen fuel hydrogen properties hydrogen production hydrogen storage costanalysis inland waterway units
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菠菜发电和生物光合作用制氢
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《现代材料动态》 2004年第11期26-27,共2页
关键词 菠菜发电 生物能 氢能 阳光络合催化分解水制氢 光合作用发电 生物光合作用制氢
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