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调控等级孔UiO-66(Ce)中Ru纳米团簇的电子态、丰度和微环境用于高效催化双环戊二烯加氢
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作者 李如硕 汪琳梦 +7 位作者 周佩云 林璟 刘志远 陈娟 赵丹凤 黄秀兵 陶志平 王戈 《Chinese Journal of Catalysis》 SCIE CAS CSCD 2024年第1期150-165,共16页
催化石油加工副产物双环戊二烯(DCPD)加氢得到的四氢双环戊二烯(THDCPD)是一种高能量密度燃料,在航空航天领域具有重要应用价值.传统DCPD加氢催化剂在反应中存在使用寿命短和重复使用性差等问题.金属有机框架(MOFs)作为一种周期有序多... 催化石油加工副产物双环戊二烯(DCPD)加氢得到的四氢双环戊二烯(THDCPD)是一种高能量密度燃料,在航空航天领域具有重要应用价值.传统DCPD加氢催化剂在反应中存在使用寿命短和重复使用性差等问题.金属有机框架(MOFs)作为一种周期有序多孔材料,有望成为用于DCPD加氢的新型高效催化剂.通过引入介孔或大孔来构建等级孔MOFs(HP-MOFs),可以克服微孔对DCPD等大客体分子的扩散限制,促进底物分子向HP-MOFs内部活性位点转移.此外,加入合适的金属组分(如价格相对低廉的Ru)到HP-MOFs,可以使金属的原子利用率最大化,优化活性位点的分散性和稳定性,进一步协同提升催化性能.因此,发展HP-MOFs与金属组分间异质结构的调控方法,建立构效关系至关重要.本文采用软模板法制备了HP-UiO-66(Ce),设计和构建了介孔UiO-66(Ce)负载钌纳米簇(NCs)异质材料,并用于催化DCPD加氢反应.X射线衍射(XRD)、扫描电镜、透射电镜、氮气吸脱附和DCPD加氢结果表明,与微孔和大孔UiO-66(Ce)相比,介孔UiO-66(Ce)独特的结构在催化剂制备和DCPD加氢中显示出独特的优势:(1)具有配体缺失缺陷的Ce-oxo簇促进了Ru^(3+)的有效吸附;(2)微孔框架的约束作用实现了Ru NCs的有效固定和均匀分散,抑制了Ru NCs的团聚和流失,保证了催化剂的稳定性;(3)介孔结构为DCPD和H_(2)底物分子提供了高效的传质通道,也有利于暴露更多的活性中心,促进DCPD与H_(2)底物分子的吸附和活化.此外,通过优化合成条件,可以精确控制Ru NCs活性位点的电子结构、分布和微环境.XRD和X射线光电子能谱结果表明,Ru NCs和Meso-UiO-66(Ce)之间Ru-O-Ce强异质界面的形成导致了晶格畸变,Ru@Meso-UiO-25-200中Ru^(0)和M-O占比最多,主要来源于还原处理得到的Ru NCs和Ru-O-Ce异质界面中Ru‒O键的形成,且样品中Ru0的含量与Ru^(3+)吸附温度呈反相关趋势,与样品还原温度呈正相关趋势.密度泛函理论计算结果表明,金属Ru0作为主要活性位点,极大地促进了DCPD和H2的吸附,并激活了催化剂上吸附的DCPD的C=C键,促进了DCPD两个C=C双键的“共吸附”和连续化加氢过程.因此,介孔UiO-66(Ce)和Ru NCs异质结构的构建,在低温(60℃)下仅用35 min就实现了DCPD催化加氢得到四氢双环戊二烯(THDCPD)(100%转化率和~100%选择性),且循环使用6次后性能基本保持不变,表现出较好的活性和稳定性.综上,本文通过等级孔和异质结构的构筑,证明了介孔结构在大底物分子催化反应中的结构优越性,并进一步揭示了催化剂合成条件、结构和性能之间的关系,为理性设计新型MOFs基功能材料在催化、吸附、储能等方面的应用提供新思路. 展开更多
关键词 等级孔 UiO-66(Ce) Ru纳米簇 双环戊二烯 微环境调控
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Expediting^(*)OH accumulation kinetics on metal-organic frameworks-derived CoOOH with CeO_(2) “accelerator” for electrocatalytic 5-hydroxymethylfurfural oxidation valorization
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作者 Peiyun Zhou Haokun Pan +3 位作者 Guangtong Hai Xiang Liu xiubing huang Ge Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第11期721-732,共12页
In this work,nickel foam supported CeO_(2)-modified CoBDC(BDC stands for terephthalic acid linker)metal-organic frameworks(NF/CoBDC@CeO_(2)) are prepared by hydrothermal and subsequent impregnation methods,which can b... In this work,nickel foam supported CeO_(2)-modified CoBDC(BDC stands for terephthalic acid linker)metal-organic frameworks(NF/CoBDC@CeO_(2)) are prepared by hydrothermal and subsequent impregnation methods,which can be further transformed to NF/CoOOH@CeO_(2) by reconstruction during the electrocatalytic test.The obtained NF/CoOOH@CeO_(2) exhibits excellent performance in electrocatalytic oxidation of 5-hydroxymethylfurfural(HMF) because the introduction of CeO_(2) can optimize the electronic structure of the heterointerface and accelerate the accumulation of ^(*)OH.It requires only a potential of 1.290 V_(RHE) to provide a current density of 50 mA cm^(-2) in 1.0 M KOH+50 mM HMF,which is 222 mV lower than that required in 1,0 M KOH(1.512 V_(RHE)).In addition,density-functional theory calculation results demonstrate that CeO_(2) biases the electrons to the CoOOH side at the heterointerface and promotes the adsorption of ^(*)OH and ^(*)HMF on the catalyst surface,which lower the reaction energy barrier and facilitate the electrocata lytic oxidation process. 展开更多
关键词 CeO_(2) Metal-organic frameworks 5-Hydroxymethylfurfural oxidation reaction HETEROINTERFACE Reconstruction
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Cu-based materials for electrocatalytic CO_(2) to alcohols:Reaction mechanism,catalyst categories,and regulation strategies
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作者 Yaru Lei Yaxin Niu +8 位作者 Xiaolong Tang Xiangtao Yu xiubing huang Xiaoqiu Lin Honghong Yi Shunzheng Zhao Jiaying Jiang Jiyue Zhang Fengyu Gao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第10期593-611,I0013,共20页
Electrocatalytic CO_(2) reduction reaction(CO_(2)RR)technology,which enables carbon capture storage and resource utilization by reducing CO_(2) to valuable chemicals or fuels,has become a global research hotspot in re... Electrocatalytic CO_(2) reduction reaction(CO_(2)RR)technology,which enables carbon capture storage and resource utilization by reducing CO_(2) to valuable chemicals or fuels,has become a global research hotspot in recent decades.Among the many products of CO_(2)RR(carbon monoxide,acids,aldehydes and alcohols,olefins,etc.),alcohols(methanol,ethanol,propanol,etc.)have a higher market value and energy density,but it is also more difficult to produce.Copper is known to be effective in catalyzing CO_(2) to high valueadded alcohols,but with poor selectivity.The progress of Cu-based catalysts for the selective generation of alcohols,including copper oxides,bimetals,single atoms and composites is reviewed.Meanwhile,to improve Cu-based catalyst activity and modulate product selectivity,the modulation strategies are straighten out,including morphological regulation,crystalline surface,oxidation state,as well as elemental doping and defect engineering.Based on the research progress of electrocatalytic CO_(2) reduction for alcohol production on Cu-based materials,the reaction pathways and the key intermediates of the electrocatalytic CO_(2)RR to methanol,ethanol and propanol are summarized.Finally,the problems of traditional electrocatalytic CO_(2)RR are introduced,and the future applications of machine learning and theoretical calculations are prospected.An in-depth discussion and a comprehensive review of the reaction mechanism,catalyst types and regulation strategies were carried out with a view to promoting the development of electrocatalytic CO_(2)RR to alcohols. 展开更多
关键词 Electrocatalytic CO_(2)RR Cu-based catalyst ALCOHOLS Reaction mechanism Regulation strategies
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High-throughput calculation-based rational design of Fe-doped MoS_(2) nanosheets for electrocatalytic p H-universal overall water splitting
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作者 Guangtong Hai Xiangdong Xue +3 位作者 Zhenyu Wu Canyang Zhang Xin Liu xiubing huang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第4期194-202,共9页
Electrocatalytic water splitting is crucial for H2generation via hydrogen evolution reaction(HER)but subject to the sluggish dynamics of oxygen evolution reaction(OER).In this work,single Fe atomdoped MoS_(2)nanosheet... Electrocatalytic water splitting is crucial for H2generation via hydrogen evolution reaction(HER)but subject to the sluggish dynamics of oxygen evolution reaction(OER).In this work,single Fe atomdoped MoS_(2)nanosheets(SFe-DMNs)were prepared based on the high-throughput density functional theory(DFT)calculation screening.Due to the synergistic effect between Fe atom and MoS_(2)and optimized intermediate binding energy,the SFe-DMNs could deliver outstanding activity for both HER and OER.When assembled into a two-electrode electrolytic cell,the SFe-DMNs could achieve the current density of 50 mA cm^(-2)at a low cell voltage of 1.55 V under neutral condition.These results not only confirmed the effectiveness of high-throughput screening,but also revealed the excellent activity and thus the potential applications in fuel cells of SFe-DMNs. 展开更多
关键词 High-throughput calculation Overall water splitting Single atom doped catalyst Molybdenum disulfide nanosheet
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Covalently integrated core-shell MOF@COF hybrids as efficient visible-light-driven photocatalysts for selective oxidation of alcohols 被引量:6
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作者 Guilong Lu xiubing huang +3 位作者 Yang Li Guixia Zhao Guangsheng Pang Ge Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第4期8-15,共8页
Building a covalently connected structure with accelerated photo-induced electrons and charge-carrier separation between semiconductors could enhance the photocatalytic performance.In this work,we report a facile and ... Building a covalently connected structure with accelerated photo-induced electrons and charge-carrier separation between semiconductors could enhance the photocatalytic performance.In this work,we report a facile and novel seed growth method to coat NH2-MIL-125 MOFs with crystalline and porous covalent organic frameworks(COFs)materials and form a range of NH2-MIL-125@TAPB-PDA nanocomposites with different thicknesses of COF shell.The introduction of appropriate content of COF could not only modify the intrinsic electronic and optical properties,but also enhance the photocatalytic activity distinctly.Especially,NH2-MIL-125@TAPB-PDA-3 with COF shell thickness of around 20nm exhibited the highest yield(94.7%)of benzaldehyde which is approximately 2.5 and 15.5 times as that of parental NH2-MIL-125 and COF,respectively.The promoted photocatalytic performance of hybrid materials was mainly owing to the enhanced photo-induced charge carriers transfer between the MOF and COF through the covalent bond.In addition,a possible mechanism to elucidate the process of photocatalysis was explored.Therefore,this kind of MOF-based photocatalysts possesses great potentials in future green organic synthesis. 展开更多
关键词 Metal organic frameworks Covalent organic frameworks Core-shell structure PHOTOCATALYST Selective alcohol oxidation
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A review on photo-, electro- and photoelectro- catalytic strategies for selective oxidation of alcohols 被引量:3
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作者 Duoyue Tang Guilong Lu +6 位作者 Zewen Shen Yezi Hu Ling Yao Bingfeng Li Guixia Zhao Baoxiang Peng xiubing huang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第2期80-118,I0003,共40页
Traditional conversion of alcohols into carbonyl compounds exists a few drawbacks such as harsh reaction conditions,production of large amounts of hazardous wastes,and poor selectivity.The newly emerging conversion ap... Traditional conversion of alcohols into carbonyl compounds exists a few drawbacks such as harsh reaction conditions,production of large amounts of hazardous wastes,and poor selectivity.The newly emerging conversion approaches via photo-,electro-,and photoelectro-catalysis to oxidize alcohols into high value-added corresponding carbonyl compounds as well as the possible simultaneous production of clean fuel hydrogen(H_(2))under mild conditions are promising to substitute the traditional approach to form greener and sustainable reaction systems and thus have aroused tremendous investigations.In this review,the state-of-the-art photocatalytic,electrocatalytic,and photoelectrocatalytic strategies for selective oxidation of different types of alcohols(aromatic and aliphatic alcohols,single alcohol,and polyols,etc.)as well as the simultaneous production of H_(2) in certain systems are discussed.The design of photocatalysts,electrocatalysts,and photoelectrocatalysts as well as reaction mechanism is summarized and discussed in detail.In the end,current challenges and future research directions are proposed.It is expected that this review will not only deepen the understanding of environmentally friendly catalytic systems for alcohol conversion as well as H_(2) production,but also enlighten significance and inspirations for the follow-up study of selective oxidation of various types of organic molecules to value-added chemicals. 展开更多
关键词 Alcohol oxidation Carbonyl compounds PHOTOCATALYSIS ELECTROCATALYSIS PHOTOELECTROCATALYSIS
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Decorating cobalt phosphide and rhodium on reduced graphene oxide for high-efficiency hydrogen evolution reaction 被引量:1
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作者 Haiyan Zheng xiubing huang +4 位作者 Hongyi Gao Wenjun Dong Guilong Lu Xiao Chen Ge Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第7期72-79,共8页
Electrochemical reduction of water to hydrogen holds great promise for clean energy,while its widespread application relies on the development of efficient catalysts with large surface area,abundant exposed active sit... Electrochemical reduction of water to hydrogen holds great promise for clean energy,while its widespread application relies on the development of efficient catalysts with large surface area,abundant exposed active sites and superior electron conductivity.Herein,we report a facile strategy to configure an electrocatalyst composed of cobalt phosphide and rhodium uniformly anchored on reduced graphene oxide for hydrogen generation.The hybrids effectively integrate the exposed active sites,electron conductivity and synergistic effect of the catalyst.Electrochemical tests exhibit that the catalyst shows superior hydrogen evolution reaction catalytic activity and stability,with a small Tafel slope of 43 m V dec-1.Overpotentials as low as 29 and 72 mV are required to achieve current densities of 2 and 10 mA cm-2in 0.5M H2SO4,respectively.The hybrid constitution with highly active sites on conductive substrate is a new strategy to synthesize extremely efficient electrocatalysts.Especially,the efficient synergistic effect among cobalt phosphide,rhodium and reduced graphene oxide provides a novel approach for configuring electrocatalysts with high electron efficiency. 展开更多
关键词 Reduced graphene OXIDE COBALT PHOSPHIDE Hydrogen evolution reaction ELECTROCATALYSTS SYNERGISTIC effect
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Highly dispersed Pt clusters encapsulated in MIL-125-NH_(2) via in situ auto-reduction method for photocatalytic H_(2) production under visible light 被引量:4
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作者 xiubing huang Xiangjun Li +6 位作者 Qingjie Luan Kaiyue Zhang Zhenyu Wu Baozhen Li Zuoshuai Xi Wenjun Dong Ge Wang 《Nano Research》 SCIE EI CSCD 2021年第11期4250-4257,共8页
Efficient hydrogen production via photocatalysis with high utilization efficiency of Pt cocatalyst is of great importance for sustainable development. In this work, we report an in situ auto-reduction strategy to enca... Efficient hydrogen production via photocatalysis with high utilization efficiency of Pt cocatalyst is of great importance for sustainable development. In this work, we report an in situ auto-reduction strategy to encapsulate highly dispersed Pt clusters inside the cages of MIL-125-NH_(2). The amino groups in MIL-125-NH_(2) first react with formaldehyde to form reducing groups (i.e.,–NH-CH_(2)OH), which can in situ auto-reduce the confined Pt^(2+) ions to ultrasmall Pt clusters within the cavities. With optimized Pt content, photocatalytic H_(2) production over the obtained Pt(1.5)/MIL-125-NH-CH_(2)OH catalyst with 1.43 wt.% Pt loading achieved as high as 4,496.4 µmol·g^(-1)·h^(-1) under visible light (λ > 420 nm) due to the facilitated transfer and separation of the photo-induced charger carriers arising from the synergetic effects between highly dispersed Pt clusters and MIL-125-NH-CH_(2)OH framework. This in situ auto-reduction strategy may be extended to encapsulate various kinds of metal or alloy clusters/nanoparticles within amino-functioned metal-organic frameworks (MOFs) with superior properties and excellent performance. 展开更多
关键词 Pt clusters MIL-125-NH_(2) in situ auto-reduction method photocatalytic H_(2)production visible light
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Covalent-organic frameworks with keto-enol tautomerism for efficient photocatalytic oxidative coupling of amines to imines under visible light 被引量:2
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作者 Zhenyu Wu xiubing huang +3 位作者 Xiangjun Li Guangtong Hai Baozhen Li Ge Wang 《Science China Chemistry》 SCIE EI CSCD 2021年第12期2169-2179,共11页
Photocatalytic oxidation of organic molecules into highly value-added products is an innovative and challenging research which has gradually attracted remarkable attention of scientists.In this work,it is demonstrated... Photocatalytic oxidation of organic molecules into highly value-added products is an innovative and challenging research which has gradually attracted remarkable attention of scientists.In this work,it is demonstrated that the COF-TpPa with keto-enol tautomerism equilibrium structure shows excellent performance(yield>99%after 8 h)in the selective photocatalytic oxidative coupling of amines to imines under visible light irradiation.It is revealed that three kinds of reactive oxygen species(superoxide radical,hydroxyl radical and singlet oxygen)participate in this photocatalytic oxidation reaction.In addition,hydrogen protons cleaved from the benzyl are proven to be reduced to hydrogen in the conduction band of COF-TpPa in anaerobic atmosphere,accompanied with the formation of imines.The direct hydrogen evolution from amine provides an effective way to extract clean energy from organic molecule as well as the production of value-added chemicals.As a contrast,COF-LZU1 with similar structure and chemical composition to COF-TpPa but without keto-enol tautomerism exhibits worse optical properties and photocatalytic performance.It is also demonstrated that keto-enol tautomerism favors the adsorption of benzylamine based on the characterization results and theoretical calculations. 展开更多
关键词 covalent-organic frameworks PHOTOCATALYSTS aerobic/anaerobic benzylamine oxidation keto-enol tautomerism
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Highly dispersed Pd clusters/nanoparticles encapsulated in MOFs via in situ auto-reduction method for aqueous phenol hydrogenation 被引量:1
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作者 xiubing huang Xiaoyu Li +3 位作者 Wei Xia Bin Hu Martin Muhler Baoxiang Peng 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第14期167-175,共9页
In this work,a novel in situ auto-reduction strategy was developed to encapsulate uniformly dispersed Pd clusters/nanoparticles in MIL-125-NH_(2).It is demonstrated that the amino groups in MIL-125-NH_(2)can react wit... In this work,a novel in situ auto-reduction strategy was developed to encapsulate uniformly dispersed Pd clusters/nanoparticles in MIL-125-NH_(2).It is demonstrated that the amino groups in MIL-125-NH_(2)can react with formaldehyde to form novel reducing groups(-NH-CH_(2)OH),which can in situ auto-reduce the encapsulated Pd^(2+)ions to metallic Pd clusters/nanoparticles.As no additional reductants are required,the strategy limits the aggregation and migration of Pd clusters and the formation of large Pd nanoparticles via controlling the amount of Pd^(2+)precursor.When applied as catalysts in the hydrogenation of phenol in the aqueous phase,the obtained Pd(1.5)/MIL-125-NH-CH_(2)OH catalyst with highly dispersed Pd clusters/nanoparticles with the size of around 2 nm exhibited 100%of phenol conversion and 100%of cyclohexanone selectivity at 70℃ after 5 h,as well as remarkable reusability for at least five cycles due to the large MOF surface area,the highly dispersed Pd clusters/nanoparticles and their excellent stability within the MIL-125-NH-CH_(2)OH framework. 展开更多
关键词 Pd clusters Pd nanoparticles MIL-125-NH_(2) In situ auto-reduction Double solvent method Hydrogenation of phenol
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Ce-doped MIL-125-NH_(2)coupled Ce^(4+)/Ce^(3+)and Ti^(4+)/Ti^(3+)redox mediators for thermo-enhanced photocatalytic oxidative desulfurization 被引量:1
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作者 Kaiyue Zhang Feng Chu +3 位作者 Yezi Hu xiubing huang Guixia Zhao Ge Wang 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第5期306-310,共5页
Photocatalytic oxidative desulfurization(PODS)over efficient earth-abundant catalysts to obtain clean fuel oil is of great importance for the environmental protection.In this work,a series of Ce-doped MIL-125-NH_(2)ph... Photocatalytic oxidative desulfurization(PODS)over efficient earth-abundant catalysts to obtain clean fuel oil is of great importance for the environmental protection.In this work,a series of Ce-doped MIL-125-NH_(2)photocatalysts were successfully prepared via a simple in-situ doping method and exhibited superior PODS performance of dibenzothiophene(DBT)under mild reaction conditions.The 1.0 mol%Ce/MIL-125-NH_(2)catalyst achieved 100%sulfur removal within 22 min at 30℃ under visible light illumination,which is mainly attributed to the high surface area and the formation of Ce-Ti-oxo clusters due to electronic coupling.The valence transformation of Ce^(4+)/Ce^(3+)and Ti^(4+)/Ti^(3+)redox mediators could not only expose abundant Lewis acid sites,but also promote the separation and transfer of photogenerated charges.In addition,increasing the reaction temperature has been demonstrated to be effective in promoting the PODS performance.Additionally,a thermo-enhanced PODS mechanism was proposed over Ce/MIL-125-NH_(2),demonstrating the great potential of thermal energy to promote the desulfurization activity. 展开更多
关键词 Photocatalytic oxidative desulfurization Ce-doped-MIL-125-NH_(2) Ce^(4+)/Ce^(3+)and Ti^(4+)/Ti^(3+)redox couples Thermal enhancement Visible light Photocatalytic oxidation
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Covalent organic framework stabilized CdS nanoparticles as efficient visible-light-driven photocatalysts for selective oxidation of aromatic alcohols 被引量:1
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作者 Kaiyue Zhang Guilong Lu +3 位作者 Zuoshuai Xi Yaqiong Li Qingjie Luan xiubing huang 《Chinese Chemical Letters》 SCIE CAS CSCD 2021年第7期2207-2211,共5页
Noble-metal-free photocatalysts with high and stable performance provide an environmentally-friendly and cost-efficient route for green organic synthesis.In this work,CdS nanoparticles with small particle size and dif... Noble-metal-free photocatalysts with high and stable performance provide an environmentally-friendly and cost-efficient route for green organic synthesis.In this work,CdS nanoparticles with small particle size and different amount were successfully deposited on the surface of covalent organic frameworks(COFs).The deposition of suitable content of CdS on COFs could not only modify the light adsorption ability and the intrinsic electronic properties,but also enhance the photocatalytic activity and cycling performance of CdS for the selective oxidation of aromatic alcohols under visible light.Especially,COF/CdS-3 exhibited the highest yield(97.1%)of benzalde hyde which is approximately 2.5 and 15.9 times as that of parental CdS and COF,respectively.The results show that the combination of CdS and COF can improve the utilization of visible light and the separation of photo-generated charge carriers,and COF with theπ-conjugated system as supports for CdS nanoparticles could provide efficient electron transport channels and improve the photocatalytic performance.Therefore,this kind of COF-supported photocatalysts with accelerated photo-induced electrons and charge-carrier separation between semiconductors possesses great potentials in future green organic synthesis. 展开更多
关键词 Covalent organic frameworks CdS nanoparticles PHOTOCATALYST Selective alcohol oxidation Visible light Green organic synthesis
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Anisotropic hemp-stem-derived biochar supported phase change materials with efficient solar-thermal energy conversion and storage 被引量:1
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作者 Ruiying Yang Xiran Guo +5 位作者 Haotian Wu Weizhi Kang Kun Song Yaqiong Li xiubing huang Ge Wang 《Biochar》 SCIE 2022年第1期546-560,共15页
As cheap and renewable sources,the exploitation of biomass resources was of great value in phase change energy storage.In this study,hemp stems were converted into biochars with three-dimensional multi-level anisotrop... As cheap and renewable sources,the exploitation of biomass resources was of great value in phase change energy storage.In this study,hemp stems were converted into biochars with three-dimensional multi-level anisotropic pores through a temperature-controlled charring process,which were used as supports for polyethylene glycol(PEG6000)to form shape-stable composite phase change materials(ss-CPCMs).It is shown that the ss-CPCMs using anisotropic hemp-stem-derived biochar obtained at a carbonization temperature of 900℃as a support has high PEG6000 loading rate(88.62wt%),large latent heat(170.44 J/g)and favorable thermal stability owning to its high surface area and hierarchical pores.The biochar-based ss-CPCM also has good light absorption ability with a maximum solar-thermal conversion efficiency of 97.70%.In addition,the different thermal conductivities in the transverse and longitudinal directions of ss-CPCMs reflect the unique anisotropic structure.This work can not only improve the high-value utilization of biochars,but also provide the ss-CPCMs with excellent performance for solar-thermal conversion and storage systems. 展开更多
关键词 BIOCHAR Phase change materials Anisotropic structure Solar-thermal conversion
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Materials genome engineering:a promising approach for the development of high-performance metal–organic frameworks 被引量:1
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作者 Xiangdong Xue xiubing huang Ge Wang 《Science Bulletin》 SCIE EI CSCD 2022年第12期1197-1200,共4页
The“modular”structural features of metal–organic frameworks(MOFs),that is,inorganic nodes and organic ligands that are used as building blocks and assembled according to a certain topology,endow MOFs with an almost... The“modular”structural features of metal–organic frameworks(MOFs),that is,inorganic nodes and organic ligands that are used as building blocks and assembled according to a certain topology,endow MOFs with an almost unlimited number of varieties.Although thousands of MOFs are synthesized every year. 展开更多
关键词 金属有机框架 INORGANIC TOPOLOGY
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Defect engineering and Ni promoter synergistically accelerating electron transfer to Ru^(0) sites in UiO-66(Ce) for dicyclopentadiene hydrogenation under mild condition
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作者 Rushuo Li Tao Ban +6 位作者 Danfeng Zhao Jing Lin Zhiyuan Liu Linmeng Wang xiubing huang Zhiping Tao Ge Wang 《Nano Research》 SCIE EI 2024年第11期9550-9563,共14页
Olefin hydrogenation under mild condition is crucial and challenging for industrial applications. Herein, defective UiO-66(Ce) was constructed by using cyanuric acid as the molecular etching “scissors” and further t... Olefin hydrogenation under mild condition is crucial and challenging for industrial applications. Herein, defective UiO-66(Ce) was constructed by using cyanuric acid as the molecular etching “scissors” and further to synthesize heterogeneous catalyst with highly dispersed RuNi nanoparticles (Ru1Ni1.5@UiO-66(Ce)-12 h). The construction of Ce-O-Ru/Ni heterogeneous interfaces and Ni–Ru bonds provide electron transfer channels from Ce-oxo clusters and Ni species to Ru species. Furthermore, the microenvironment and electronic structure of Ru0 active sites were synergistically regulated by adjusting the content of metal-organic frameworks (MOFs) defects and Ni promoter, thereby enhancing the adsorption and activation ability of H–H and C=C bonds. Therefore, Ru1Ni1.5@UiO-66(Ce)-12 h achieved dicyclopentadiene saturated hydrogenation (100% conversion) to tetrahydrodicyclopentadiene (∼ 100% selectivity) under mild condition (35℃, 1 MPa) with only 25 min. Meanwhile, the sample exhibited excellent structural stability after 6 cycles test. This study provides a promising strategy for the rational design of remarkable noble metal-based catalysts for practical applications. 展开更多
关键词 metal-organic frameworks defect engineering Ni promoter electron-rich Ru^(0)active sites dicyclopentadiene hydrogenation
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