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Promoting CO_(2) and H_(2)O activation on O-vacancy regulated In-Ti dual-sites for enhanced CH_(4) photo-production
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作者 Cong Chen liang Chen +7 位作者 Yangguang Hu Ke Yan Ting Wang Youju Huang Chao Gao Junjie Mao Shoujie liu benxia li 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第11期599-608,I0013,共11页
Engineering the specific active sites of photocatalysts for simultaneously promoting CO_(2)and H_(2)O activation is important to achieve the efficient conversion of CO_(2)to hydrocarbon with H_(2)O as a proton source ... Engineering the specific active sites of photocatalysts for simultaneously promoting CO_(2)and H_(2)O activation is important to achieve the efficient conversion of CO_(2)to hydrocarbon with H_(2)O as a proton source under sunlight.Herein,we delicately design the In/TiO_(2)-VOphotocatalyst by engineering In single atoms(SAs)and oxygen vacancies(VOs)on porous TiO_(2).The relation between structure and performance of the photocatalyst is clarified by both experimental and theoretical analyses at the atomic levels.The In/TiO_(2)-VOphotocatalyst furnish a high CH_(4)production rate up to 35.49μmol g^(-1)h^(-1)with a high selectivity of 91.3%under simulated sunlight,while only CO is sluggishly generated on TiO_(2)-VO.The combination of in situ spectroscopic analyses with theoretical calculations reveal that the VOsites accelerate H_(2)O dissociation and increase proton feeding for CO_(2)reduction.Furthermore,the VOregulated In-Ti dual sites enable the formation of a stable adsorption conformation of In-C-O-Ti intermediate,which is responsible for the highly selective reduction of CO_(2)to CH_(4).This work demonstrates a new strategy for the development of effective photocatalysts by coupling metal SA sites with the adjacent metal sites of support to synergistically enhance the activity and selectivity of CO_(2)photoreduction. 展开更多
关键词 In single atoms Oxygen vacancies CO_(2) photoreduction Water dissociation Synergetic effect
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Accelerating solar driven CO_(2) reduction via sulfur-doping boosted water dissociation and proton transfer
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作者 Ke Yan liang Chen +5 位作者 Yangguang Hu Ting Wang Cong Chen Chao Gao Youju Huang benxia li 《Nano Research》 SCIE EI CSCD 2024年第3期1056-1065,共10页
Exploring efficient photocatalysts for solar driven CO_(2) reduction with water(H_(2)O)as a proton donor is highly imperative but remains a great challenge because the synchronous enhancement of CO_(2) activation,H_(2... Exploring efficient photocatalysts for solar driven CO_(2) reduction with water(H_(2)O)as a proton donor is highly imperative but remains a great challenge because the synchronous enhancement of CO_(2) activation,H_(2)O dissociation and proton transfer is hardly achieved on a photocatalyst.Particularly,the sluggish H_(2)O dissociation impedes the photocatalytic CO_(2) reduction reaction involving multiple proton–electron coupling transfer processes.Herein,a sulfur-doped BiOCl(S-BiOCl)photocatalyst with abundant oxygen vacancies(OV)is developed,which exhibits broadband-light harvesting across solar spectrum and distinct photothermal effect due to photochromism.For photocatalytic CO_(2) reduction with H_(2)O in a gas–solid system,the high CO yield of 49.76μmol·g_(cat)^(-1)·h^(-1) with 100%selectivity is achieved over the S-BiOCl catalyst under a simulated sunlight.The H_(2)O-assisted CO_(2) reduction reaction on S-BiOCl catalyst is triggered by photocatalysis and the photothermal heating further enhances the reaction rate.The kinetic isotope experiments indicate that the sluggish H_(2)O dissociation affects the whole photocatalytic CO_(2) reduction process.The presence of oxygen vacancies promotes the adsorption and activation of H_(2)O and CO_(2),and the doped S sites play a crucial role in boosting H_(2)O dissociation and accelerating the dynamic migration of hydrogen species.As a result,the ingenious integration of OV defects,S sites and photothermal effect in S-BiOCl catalyst conjointly contributes to the significant improvement in photocatalytic CO_(2) reduction performance. 展开更多
关键词 BiOCl sulfur doping photocatalytic CO_(2)reduction H_(2)O activation proton feeding
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中国海的极端海浪强度变化及归因分析 被引量:5
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作者 王娟娟 李本霞 +2 位作者 高志一 侯放 王久珂 《科学通报》 EI CAS CSCD 北大核心 2021年第19期2455-2467,共13页
海浪作为海洋上主要的动力过程,其极端强度的时空变化正在得到越来越多的关注.为了获得中国海的极端海浪强度的长期时空变化趋势,并研究导致该变化的主要原因,采用欧洲中期天气预报中心最新发布的ERA-5海浪和大气再分析资料,使用Sen斜... 海浪作为海洋上主要的动力过程,其极端强度的时空变化正在得到越来越多的关注.为了获得中国海的极端海浪强度的长期时空变化趋势,并研究导致该变化的主要原因,采用欧洲中期天气预报中心最新发布的ERA-5海浪和大气再分析资料,使用Sen斜率估计和Mann-Kendall趋势检测方法,分析中国海的极端海浪强度(此处用有效波高的99.5%百分位数表征)在年际、台风浪和冷空气浪盛行期的历史40 a(1979~2018年)变化趋势.并通过对极端风速以及热带气旋数量和强度的变化趋势分析,研究导致中国海极端海浪变化的原因.分析结果表明,东海南部海域的极端海浪存在十分显著的年际增强趋势,幅度可达+5 cm/a,与其在台风浪盛行期的增强趋势及幅度一致,而极端风速在年际和台风浪盛行期的增强趋势是直接原因.此外,影响东海南部的强台风和超强台风的数量也存在显著增加趋势,这也导致了该海域极端海浪的恶劣程度加剧.同时,南海南部的极端海浪在年际、台风浪和冷空气浪盛行期均存在增强趋势,幅度最大+3 cm/a,而极端风速的增强是直接原因. 展开更多
关键词 极端海浪 中国海 极端风速 热带气旋 变化趋势
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