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高熵P2/O3双相正极的协同设计助力高性能钠离子电池
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作者 赵珊 刘旭 +4 位作者 郭昊天 柳宗琳 王鹏飞 舒杰 伊廷锋 《物理化学学报》 北大核心 2026年第1期49-61,共13页
P2型层状过渡金属氧化物(P2-Na_(x)TMO_(2))因其优异的循环稳定性和倍率性能,成为钠离子电池正极材料的有力候选者。然而,其在高电压下的不可逆相变和固有低理论容量问题,阻碍了实际应用。本研究工作提出高熵策略与双相结构的协同设计... P2型层状过渡金属氧化物(P2-Na_(x)TMO_(2))因其优异的循环稳定性和倍率性能,成为钠离子电池正极材料的有力候选者。然而,其在高电压下的不可逆相变和固有低理论容量问题,阻碍了实际应用。本研究工作提出高熵策略与双相结构的协同设计来克服这些挑战。通过在P2相高熵基体中引入O3相,构建新型P2/O3双相高熵层状氧化物Na_(0.70)Ni_(0.25)Mn_(0.35)Co_(0.15)Fe_(0.05)Ti_(0.20)O_(2)(简称Na_(0.70)NMCFT)。其中,高熵设计通过构型熵稳定效应有效抑制P2相的不可逆相变,而O3相则通过协同作用弥补容量不足并提升循环稳定性。此外,双相组分之间的相互作用进一步促进P2-O3与P2-P3相变的高度可逆性。Na_(0.70)NMCFT在1C倍率下的初始放电容量为102.08 mAhg^(-1),200次循环后容量保持率达88.15%,表明具有优异的循环稳定性。更重要的是,即使在10C的高倍率下,Na_(0.70)NMCFT仍能提供85.67 mAh g^(-1)的初始放电比容量,并在1000次循环后容量保持率达70%。本工作证实双相高熵设计在提升钠离子电池正极性能中的关键作用,为开发先进钠离子电池正极材料提供了新思路。 展开更多
关键词 钠离子电池 层状氧化物正极 高熵 P2/o3双相 相变
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尺寸控制的FeF_(3)·0.33H_(2)O多孔微球正极材料的制备及电化学性能研究
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作者 李继 李怡暄 +5 位作者 况知凡 甘振鉴 刘红英 王石泉 曾造 李琳 《湖北大学学报(自然科学版)》 2026年第1期1-10,共10页
以Fe(NO_(3))_(3)·9H_(2)O为铁源,氢氟酸(40%,质量分数)为氟源,通过调控溶剂中乙醇与聚乙二醇(PEG)的体积比,利用溶剂热及退火处理制备了3种不同粒径的FeF_(3)·0.33H_(2)O微球。探究了3种样品的结构、形貌以及电化学性能等方... 以Fe(NO_(3))_(3)·9H_(2)O为铁源,氢氟酸(40%,质量分数)为氟源,通过调控溶剂中乙醇与聚乙二醇(PEG)的体积比,利用溶剂热及退火处理制备了3种不同粒径的FeF_(3)·0.33H_(2)O微球。探究了3种样品的结构、形貌以及电化学性能等方面的不同。结果表明:聚乙二醇∶乙醇的体积比为1∶1时,所得产物(A-3)的尺寸最小,微球直径约为0.5μm。作为锂离子电池(LIBs)正极材料,在1.5~4.0 V的电压范围下,和A-1,A-2样品相比,A-3样品有更高的放电比容量和较好的循环性能与倍率性能。在0.1 C的电流密度下,循环50圈后仍有近200 mAh·g^(-1)的可逆放电比容量。在1C电流密度下,循环300圈仍保持135 mAh·g^(-1)。作为SIBs正极材料时,0.1 C下循环50圈可以保持145 mAh·g^(-1),在1C电流密度下循环300圈仍保持105 mAh·g^(-1)。A-3良好的储锂储钠性能可以归因于制备的FeF_(3)·0.33H_(2)O晶体具有较小的尺寸和较大的比表面积,可以加快锂离子、钠离子的传输速度。制备的A-3样品可以作为较有潜力的锂/钠离子电池正极材料。 展开更多
关键词 锂离子电池 钠离子电池 正极材料 FeF_(3)·0.33H_(2)o 电化学性能
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Utilization of steelwork off-gases through methanol synthesis:Sulfur-induced dynamic migration of ZnO_(x) over industrial Cu/ZnO/Al_(2)O_(3) catalyst and the poisoning mechanism
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作者 Yukun Tian Yu Zeng +5 位作者 Ziyang Chen Hua Tong Ming Chen Zhiyong Zhong Daiqi Ye Limin Chen 《Journal of Environmental Sciences》 2025年第12期659-673,共15页
The reduction of carbon emissions in the steel industry is a significant challenge,and utilizing CO_(2) from carbon intensive steel industry off-gases for methanol production is a promising strategy for decarbonizatio... The reduction of carbon emissions in the steel industry is a significant challenge,and utilizing CO_(2) from carbon intensive steel industry off-gases for methanol production is a promising strategy for decarbonization.However,steelwork off-gases typically contain various impurities,including H_(2)S,which can deactivate commercial methanol synthesis catalysts,Cu/ZnO/Al_(2)O_(3)(CZA).Reverse water-gas shift(RWGS)reaction is the predominant side reaction in CO_(2) hydrogenation to methanol which can occur at ambient pressure,enabling the decouple of RWGS from methanol production at high pressure.Then,a series of activated CZA catalysts has been in-situ pretreated in 400 ppm H_(2)S/Ar at 250℃and tested for both RWGS reaction at ambient pressure and CO_(2) hydrogenation to methanol at high pressure.An innovative decoupling strategy was employed to isolate the RWGS reaction from the methanol synthesis process,enabling the investigation of the evolution of active site structures and the poisoning mechanism through elemental analysis,X-ray Diffraction,X-ray Photoelectron Spectroscopy,Fourier Transform Infrared Spectroscopy,Temperature Programmed Reduction and CO_(2) Temperature Programmed Desorption.The results indicate that there are different dynamic migration behaviors of ZnO_(x) in the two reaction systems,leading to different poisoning mechanisms.These interesting findings are beneficial to develop sulfur resistant and durable highly efficient catalysts for CO_(2) hydrogenation to methanol,promoting the carbon emission reduction in steel industry. 展开更多
关键词 Steelwork off-gases Co_(2)hydrogenation to methanol H_(2)S Cu/Zn o/Al_(2)o_(3)catalysts Zno_(x)migration Deactivation and promotion mechanisms
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钠离子电池P2/O3相正极材料改性研究进展
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作者 李添 段其乐 +1 位作者 赵德威 丁翔 《电池》 北大核心 2026年第1期215-221,共7页
正极材料是决定钠离子电池性能与成本的核心组件,其中金属层状氧化物因高能量密度和易合成性备受关注,但单一P2或O3相材料存在不可逆相变、扩散动力学差异等缺陷。阐述P2相与O3相的结构特征及性能,可通过P2/O3双相协同设计的界面互锁效... 正极材料是决定钠离子电池性能与成本的核心组件,其中金属层状氧化物因高能量密度和易合成性备受关注,但单一P2或O3相材料存在不可逆相变、扩散动力学差异等缺陷。阐述P2相与O3相的结构特征及性能,可通过P2/O3双相协同设计的界面互锁效应实现性能互补;介绍溶胶-凝胶法、固相法、共沉淀法在双相材料的应用场景;分析元素掺杂、高熵设计、结构调控及煅烧工艺优化改性策略的作用机制。双相协同与多策略结合,能够突破单一相材料性能瓶颈,为高性能钠离子电池正极材料的开发提供理论依据。 展开更多
关键词 钠离子电池 P2/o3相层状氧化物 元素掺杂 高熵设计 煅烧工艺优化
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Pressure dependence of the structures and transport properties of supercritical NaAlSi_(3)O_(8)-H_(2)O fluids
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作者 Ziteng Long Yicheng Sun 《Acta Geochimica》 2026年第1期155-167,共13页
Supercritical fluids play a crucial role in material transport within Earth's deep interior.Investigating the pressure-dependent atomic structures and transport properties of such fluids is essential for understan... Supercritical fluids play a crucial role in material transport within Earth's deep interior.Investigating the pressure-dependent atomic structures and transport properties of such fluids is essential for understanding their petrological,chemical,and geophysical behaviors.In this study,we employed first-principles molecular dynamics simulations to explore the structures,self-diffusion coefficients(D),and viscosities(η)of supercritical NaAlSi_(3)O_(8)-H_(2)O fluids under conditions of 2000 K and 3-10 GPa,with water contents of 30 wt% and 50 wt%.Our calculations indicate that at a water content of 30 wt%,Q^(2) and Q^(3) exhibit a certain degree of positive and negative pressure dependence,respectively,while other Q^(n) species(n represents the number of bridging oxygens connected to Si/Al)show minimal changes.At a water content of 50 wt%,Q^(2) and Q^(0) exhibit a certain degree of positive and negative pressure dependence,respectively,while other Q^(n) species show minimal changes.At both water contents,Si-O-H and molecular water in the system exhibit negative pressure dependence,suggesting that the migration of supercritical fluids from deep to shallow regions is accompanied by the release of water.The self-diffusion coefficients in the supercritical NaAlSi_(3)O_(8)-H_(2)O fluid follow the order D_(Na)≈D_(H)>D_(O)>D_(Al)≈D_(Si),with an overall weak negative pressure dependence.By comparing the viscosities of anhydrous and hydrous silicate melts from previous studies,we found that the addition of water caused a transition from negative to positive pressure dependence of viscosity,corresponding to a structural change from polymerization to depolymerization.Additionally,we calculated the fluid mobility Δp/η of supercritical NaAlSi_(3)O_(8)-H_(2)O fluids and found that their mobility is several orders of magnitude higher than that of basalt melt and is also significantly greater than that of carbonate melt.As supercritical fluids ascend from deeper to shallower regions,their mobility is further enhanced,significantly contributing to the transport of elements from subducting slabs to the overlying mantle wedge. 展开更多
关键词 Supercritical fluids NaAlSi_(3)o_(8)-H_(2)o Firstprinciples SPECIAtioN Transport properties
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Ti_(3)C_(2)T_(x) MXene改性C-TiO_(2)/Cu_(2)O Z型异质结的构建及其光催化降解四环素
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作者 王晓云 范功端 +2 位作者 陈礼洪 牛佳 付爱民 《环境科学学报》 北大核心 2025年第12期120-134,共15页
通过煅烧Ti_(3)C_(2)T_(x) MXene制备C-TiO_(2),并采用水热法制备Cu_(2)O及不同成分比例的C-TiO_(2)/Cu_(2)O复合光催化材料.同时,对制备的MXene复合材料进行形貌、结构、比表面积和光电特性等表征分析,探讨其对四环素(TC)的光催化降解... 通过煅烧Ti_(3)C_(2)T_(x) MXene制备C-TiO_(2),并采用水热法制备Cu_(2)O及不同成分比例的C-TiO_(2)/Cu_(2)O复合光催化材料.同时,对制备的MXene复合材料进行形貌、结构、比表面积和光电特性等表征分析,探讨其对四环素(TC)的光催化降解效能,并考察其光催化活性增强机理.实验结果显示,以450℃煅烧制备的C掺杂TiO_(2)以表面掺杂或负载为主,保持了部分Ti_(3)C_(2)T_(x)特性,更有利于可见光的吸收.对于50%C-TiO_(2)/Cu_(2)O而言,C掺杂可有效减小TiO_(2)的能带间隙,C-TiO_(2)与Cu_(2)O形成以C层为媒介的Z型异质结构,可有效减小光生e^(-)-h^(+)的复合,在pH=7.0时对TC的光催化降解效率为95.5%,其反应速率常数分别是C-TiO_(2)和Cu_(2)O的6.8和4.5倍.经过5次循环重复实验,50%C-TiO_(2)/Cu_(2)O MXene复合材料总体效能与稳定性良好,且在较宽泛pH范围(3~11)内对TC保持优异降解率,具有良好的实际应用前景.淬灭实验及电子顺磁共振测试结果显示,h^(+)是50%C-TiO_(2)/Cu_(2)O降解TC过程中最主要的活性物种,其次为^(1)O_(2)和^(·)O_(2)^(-).采用密度泛函理论(DFT)计算福井函数(Fukui function)预测了活性物种对TC分子的攻击位置,结合高效液相色谱-质谱联用技术(HPLC-MS)得出TC的光降解过程包括去甲基化、去甲酰化、开环反应、脱水、脱氨基等反应,并最终被氧化为小分子有机物、二氧化碳和水. 展开更多
关键词 Ti_(3)C_(2)T_(x)MXene改性 C-tio_(2)/Cu_(2)o Z型异质结 四环素 光催化降解机理 密度泛函理论 降解产物
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Al_(2)O_(3)/TiO_(2)/Na_(2)O对石灰在炼钢渣中溶解的影响
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作者 皮溅清 王明理 +3 位作者 张延玲 赵宏博 余阚 李更 《有色金属科学与工程》 北大核心 2025年第1期1-7,共7页
含有Al_(2)O_(3)、TiO_(2)、Na_(2)O组元的赤泥基熔剂对传统的炼钢渣系具有显著的助熔作用,研究炼钢炉渣中石灰的溶解机理及影响其溶解速率的因素,对促进炼钢中无氟熔剂的发展有很大意义。本实验采用圆柱旋转法测定了石灰在含Al_(2)O_(3... 含有Al_(2)O_(3)、TiO_(2)、Na_(2)O组元的赤泥基熔剂对传统的炼钢渣系具有显著的助熔作用,研究炼钢炉渣中石灰的溶解机理及影响其溶解速率的因素,对促进炼钢中无氟熔剂的发展有很大意义。本实验采用圆柱旋转法测定了石灰在含Al_(2)O_(3)、TiO_(2)、Na_(2)O的炼钢渣系中的溶解速率,对其熔化过程矿相变化进行分析论证。结果表明,在1400℃时,石灰溶解的促进系数按Na_(2)O>TiO_(2)>Al_(2)O_(3)的顺序下降,添加10%的Na_(2)O能使石灰溶解的促进系数提高7倍。此外文章探究了Al_(2)O_(3)、TiO_(2)、Na_(2)O对CaO在熔渣中的扩散以及边界层上石灰分解反应的影响,阐明了该条件下石灰的溶解机理。发现同时包含Al_(2)O_(3)/TiO_(2)/Na_(2)O的赤泥基熔剂可以作为合适的炼钢熔剂。 展开更多
关键词 石灰溶解 Al_(2)o_(3)/tio_(2)/Na_(2)o 炼钢渣
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Rational construction of S-scheme CdS quantum dots/In_(2)O_(3) hollow nanotubes heterojunction for enhanced photocatalytic H_(2)evolution 被引量:3
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作者 Yong-Hui Wu Yu-Qing Yan +3 位作者 Yi-Xiang Deng Wei-Ya Huang Kai Yang Kang-Qiang Lu 《Chinese Journal of Catalysis》 2025年第3期333-340,共8页
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
关键词 CdS In2o3 Quantum dot Photocatalytic H_(2)evolution S-scheme heterojunction
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In_2O_3与CuO掺杂TiO_2纳米纤维光催化脱汞的研究 被引量:5
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作者 袁媛 张军营 +3 位作者 赵永椿 刘芳芳 樊国祥 郑楚光 《工程热物理学报》 EI CAS CSCD 北大核心 2013年第12期2405-2408,共4页
采用静电纺丝法制备In_2O_3和CuO掺杂TiO_2的纳米纤维,使用纤维进行模拟燃煤烟气光催化脱汞的研究.利用X射线衍射(XRD)、扫描电子显微镜(SEM)和透射电子显微镜(TEM)等手段对纤维的晶体结构和形貌进行了表征.实验考察了TiO_2、TiO_2-In_2... 采用静电纺丝法制备In_2O_3和CuO掺杂TiO_2的纳米纤维,使用纤维进行模拟燃煤烟气光催化脱汞的研究.利用X射线衍射(XRD)、扫描电子显微镜(SEM)和透射电子显微镜(TEM)等手段对纤维的晶体结构和形貌进行了表征.实验考察了TiO_2、TiO_2-In_2O_3和TiO_2-CuO分别在无光、可见光和紫外光下的脱汞效率,以及In_2O_3和CuO的最佳掺杂量,并分析了纤维光催化脱汞的机理.结果表明当In_2O_3的质量含量为10%时,TiO_2-In_2O_3在紫外光下的脱汞率有了很大提高,可达到93%,其原因是In_xTi_1-_xO_2/In_2O_3复合结构的形成.当CuO的质量含量为10%时,TiO_2-CuO在可见光下的脱汞效率有了较大提高,电子的跃迁是TiO_2-CuO在可见光下催化活性提高的主要原因. 展开更多
关键词 tio2-in2o3 tio2-Cuo 静电纺丝 光催化 脱汞
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Colorless/Black Switching Electrochromic Device Based on WO_(3)·xH_(2)O and Reversible Metal Electrodeposition
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作者 WAN Xinyi WANG Wenqi +3 位作者 LI Jiacheng ZHAO Junliang MA Dongyun WANG Jinmin 《无机材料学报》 北大核心 2025年第10期1163-1172,I0001,I0002,共12页
Electrochromic(EC)smart windows utilizing a reversible metal electrodeposition device(RMED)offer a compelling alternative for dynamically regulating transmissions of optical and thermal energy.An EC device(ECD)is cons... Electrochromic(EC)smart windows utilizing a reversible metal electrodeposition device(RMED)offer a compelling alternative for dynamically regulating transmissions of optical and thermal energy.An EC device(ECD)is constructed by reversible metal electrodeposition(RME)of Bi/Cu on WO_(3)·xH_(2)O film electrodeposited onto fluorine-doped tin oxide(FTO)transparent conductive glass.The electrolyte consists of CuCl_(2),BiCl_(3),KCl and HCl aqueous solution,supplying necessary components for both electrochemical and electrodeposition processes.The ECD shows ability to rapidly transition between colorless and black states,which achieves a large optical modulation of 77.0%at 570 nm.In the black state,the ECD exhibits a near-zero transmittance in the wavelength range of 400-1100 nm while maintaining 96.6%of its initial optical modulation after coloration/bleaching cycling of 60000 s,exhibiting good cyclic stability.This RMED has relatively high stability under open-circuit voltage and also possesses excellent heat insulation performance.The results offer a solution to overcome the poor cyclic stability of RMEDs and improve the optical modulation of ECDs. 展开更多
关键词 reversible metal electrodeposition electrochromic Wo_(3)·xH_(2)o
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Interface-engineered S-scheme 2D/1D heterojunction of Cs_(0.32)WO_(3)/WO_(3)·2H_(2)O for boosted CO_(2)photoreduction:Synergistic charge separation and activation
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作者 Guangmei Gan Lin Yin +3 位作者 Xiaotian Wang Juyuan Xing Yuan Li Gaoke Zhang 《Chinese Journal of Catalysis》 2025年第12期219-230,共12页
Developing efficient photocatalysts for CO_(2)conversion under full-spectrum irradiation remains a key challenge for solar-to-chemical energy conversion.In this study,a novel S-scheme heterojunction composed of reduct... Developing efficient photocatalysts for CO_(2)conversion under full-spectrum irradiation remains a key challenge for solar-to-chemical energy conversion.In this study,a novel S-scheme heterojunction composed of reduction Cs_(0.32)WO_(3)(CWO)nanosheets with hexagonal structure and oxidation WO_(3)·2H_(2)O(WO)nanorods with monoclinic structure photocatalyst was successfully constructed via an ultrasound strategy.Under full-spectrum irradiation for 4 h,the optimized 2D/1D of heterostructure CWO/WO-0.8 exhibited superior photocatalytic performance,achieving CO and CH_(3)OH yields of 29.74 and 63.71μmol·g^(-1),respectively.The enhanced activity is primarily ascribed to the formation of an S-scheme charge transfer pathway,which facilitates efficient separation and directional migration of photogenerated charge carriers through the internal electric field at the CWO/WO interface.This process facilitates the electron enrichment on the CWO surface and significantly enhances its CO_(2)reduction ability.Besides,the results of various characterizations show that CWO/WO-0.8 possesses enhanced optical response capability.The results of density functional theory calculations and CO_(2)-temperature programmed desorption analysis confirmed that the CWO/WO heterojunction exhibits stronger CO_(2)adsorption and activation abilities compared to the pristine CWO and WO.The reaction pathway for CH_(3)OH production was elucidated by in-situ diffused reflectance Fourier transformed infrared tests.This work provides new insights into the rational design of S-scheme photocatalysts for efficient and selective CO_(2)conversion. 展开更多
关键词 S-scheme heterojunction Photocatalysts Co_(2)reduction Cs_(0.32)Wo_(3) Wo_(32H_(2)o CH_(3)oH
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Z-scheme heterojunction Zn_(3)(OH)_(2)(V_(2)O_(7))(H_(2)O)_(2)/V-Zn(O,S)for enhanced visible-light photocatalytic N2 fixation via synergistic heterovalent vanadium states and oxygen vacancy defects
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作者 Pengkun Zhang Qinhan Wu +7 位作者 Haoyu Wang Dong-Hau Kuo Yujie Lai Dongfang Lu Jiqing Li Jinguo Lin Zhanhui Yuan Xiaoyun Chen 《Chinese Journal of Catalysis》 2025年第7期279-293,共15页
Herein,we established a Zn_(3)(OH)_(2)(V_(2)O_(7))(H_(2)O)_(2)/V-Zn(O,S)Z-scheme heterojunction labeled ZnVO/V-Zn(O,S)with a heterovalent V^(4+)/V^(5+)states and oxygen vacancies in both phases via a one-step in-situ ... Herein,we established a Zn_(3)(OH)_(2)(V_(2)O_(7))(H_(2)O)_(2)/V-Zn(O,S)Z-scheme heterojunction labeled ZnVO/V-Zn(O,S)with a heterovalent V^(4+)/V^(5+)states and oxygen vacancies in both phases via a one-step in-situ hydrolysis method.The NaBH_(4) regulated the ZnVO/V-Zn(O,S)-3 with rich Vo and suitable n(V^(4+))/n(V^(5+))ratio achieved an excellent photocatalytic nitrogen fixation activity of 301.7μmol/(g×h)and apparent quantum efficiency of 1.148%at 420 nm without any sacrificial agent,which is 11 times than that of V-Zn(O,S).The Vo acts as the active site to trap and activate N_(2) molecules and to trap and activate H_(2)O to produce the H for N_(2) molecules photocatalytic reduction.The rich Vo defects can also reduce the competitive adsorption of H_(2)O and N_(2) molecules on the surface active site of the catalyst.The heterovalent vanadium states act as the photogenerated electrons,quickly hopping between V^(4+)and V^(5+)to transfer for the photocatalytic N_(2) reduction reaction.Additionally,the Z-scheme heterojunction effectively minimizes photogenerated carrier recombination.These synergistic effects collectively boost the photocatalytic nitrogen fixation activity.This study provides a practical method for designing Z-scheme heterojunctions for efficient photocatalytic N_(2) fixation under mild conditions. 展开更多
关键词 Zn_(3)(oH)_(2)(V_(2)o_(7))(H_(2)o)_(2) Z-scheme heterojunction Heterovalent valence states oxygen vacancy Photocatalytic N_(2)fixation
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不同分子量P3HT/TiO_(2)复合材料可见光催化性能研究
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作者 张见玲 《广州化工》 2025年第10期111-114,共4页
为进一步优化共轭聚合物/二氧化钛(TiO_(2))复合光催化材料的结构,提升其可见光催化降解性能,本研究制备了不同分子量P3HT/TiO_(2)复合光催化材料,并研究了其可见光催化降解甲基橙的性能。结果表明:低分子量P3HT/TiO_(2)复合光催化材料... 为进一步优化共轭聚合物/二氧化钛(TiO_(2))复合光催化材料的结构,提升其可见光催化降解性能,本研究制备了不同分子量P3HT/TiO_(2)复合光催化材料,并研究了其可见光催化降解甲基橙的性能。结果表明:低分子量P3HT/TiO_(2)复合光催化材料表现出更显著的可见光催化降解性能提升,综合分析复合材料的可见光吸收能力、光电流和对甲基橙的吸附性能,这是由于低分子量P3HT对MO较高的吸附性能促进了光催化降解过程中的界面反应。 展开更多
关键词 复合光催化材料 分子量 P3HT tio2
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Al_(2)O_(3)coated polyimide porous films enable thin yet strong polymer-in-salt solid-state electrolytes for dendrite-free lithium metal batteries
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作者 Haotian Zhang Shengfa Feng +6 位作者 Mufan Cao Xiong Xiong Liu Pengcheng Yuan Yaping Wang Min Gao Long Pan Zhengming Sun 《Chinese Chemical Letters》 2025年第8期492-497,共6页
The ineluctable introduction of lithium salt to polymer solid-state electrolytes incurs a compromise between strength,ionic conductivity,and thickness.Here,we propose Al_(2)O_(3)-coated polyimide(AO/PI)porous film as ... The ineluctable introduction of lithium salt to polymer solid-state electrolytes incurs a compromise between strength,ionic conductivity,and thickness.Here,we propose Al_(2)O_(3)-coated polyimide(AO/PI)porous film as a high-strength substrate to support fast-ion-conducting polymer-in-salt(PIS)solid-state electrolytes,aiming to suppress lithium dendrite growth and improve full-cell performance.The Al_(2)O_(3)coating layer not only refines the wettability of polyimide porous film to PIS,but also performs as a high modulus protective layer to suppress the growth of lithium dendrites.The resulting PI/AO@PIS exhibits a small thickness of only 35μm with an outstanding tensile strength of 11.3 MPa and Young's modulus of 537.6 MPa.In addition,the PI/AO@PIS delivers a high ionic conductivity of 0.1 m S/cm at 25°C.As a result,the PI/AO@PIS enables symmetric Li cells to achieve exceptional cyclability for over 1000 h at 0.1 m A/cm2without noticeable lithium dendrite formation.Moreover,the PI/AO@PIS-based LiFePO4||Li full cells demonstrate outstanding rate performance(125.7 m Ah/g at 5 C)and impressive cycling stability(96.1%capacity retention at 1 C after 200 cycles).This work highlights the efficacy of enhancing the mechanical properties of polymer matrices and extending cell performance through the incorporation of a dense inorganic interface layer. 展开更多
关键词 Polymer-in-salt solid-state electrolytes Inorganic interface layer Al2o3interfacial layer Li dendrites Cycling performance
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Mechanistic insights into sulfation-induced deactivation of CoMn_(2)O_(4)/CeTiO_(x) catalyst under low-temperature SCR conditions
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作者 Ning Luo Fengyu Gao +5 位作者 Chengzhi Wang Honghong Yi Shunzheng Zhao Yuansong Zhou Shangfeng Du Xiaolong Tang 《Chinese Journal of Catalysis》 2025年第10期70-86,共17页
The problem of water and sulfur poisoning in flue gas atmosphere remains a significant obstacle for low-temperature deNO_(x) catalysts.This study investigated the sulfation mechanism of the CoMn_(2)O_(4)/CeTiO_(x)(CMC... The problem of water and sulfur poisoning in flue gas atmosphere remains a significant obstacle for low-temperature deNO_(x) catalysts.This study investigated the sulfation mechanism of the CoMn_(2)O_(4)/CeTiO_(x)(CMCT)catalyst during the selective catalytic reduction of NO_(x) with NH3 under conditions containing H2O and SO_(2) at 150℃.Employing a comprehensive suite of time-resolved analysis and characterization techniques,the evolution of sulfate species was systematically categorized into three stages:initial rapid surface sulfate accumulation,the transformation of surface sulfates to bulk metal sulfates,and partial sulfates decomposition after the removal of H2O and SO_(2).These findings indicate that bulk metal sulfates irreversibly deactivate the catalyst by distorting active component lattices and consuming oxygen vacancies,whereas surface sulfates(including ammonium sulfates and surface-coordinated metal sulfates)cause reversible performance loss through decomposition.Furthermore,the competitive adsorption of H2O and SO_(2) significantly influences the catalytic efficiency,with H2O suppressing SO_(2) adsorption while simultaneously enhancing the formation of Brönsted acid sites.This research underscores the critical role of sulfate dynamics on catalyst performance,revealing the enhanced SO_(2) resistance of the Eley-Rideal mechanism facilitated by the Ce-Ti support relative to the Langmuir-Hinshelwood pathway.Collectively,the study unravels the complex interplay of sulfate dynamics influencing catalyst performance and provides potential approaches to mitigate deactivation in demanding atmospheric conditions. 展开更多
关键词 Selective catalytic reduction with NH3 CoMn_(2)o_(4)/Cetio_(x) H2o and So_(2)resistance Surface sulfate Bulk sulfate
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Enhanced photoelectrochemical performance of TiO_(2)/Sb_(2)S_(3) nanorod arrays by annealing in Ar ambience
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作者 SUI Meirong GU Xiuquan 《Optoelectronics Letters》 2025年第7期385-390,共6页
In this work,the TiO_(2)/Sb_(2)S_(3) nanorod arrays(NRAs)were synthesized through a two-stage hydrothermal route for photoelectrochemical(PEC)water splitting.The effect of annealing treatment in Ar ambience on the PEC... In this work,the TiO_(2)/Sb_(2)S_(3) nanorod arrays(NRAs)were synthesized through a two-stage hydrothermal route for photoelectrochemical(PEC)water splitting.The effect of annealing treatment in Ar ambience on the PEC activity of TiO_(2)/Sb_(2)S_(3) composite sample was investigated by electrochemical impedance analysis,including Nyquist and Mott-Schottky(M-S)plots.It was demonstrated that vacuum annealing could crystallize Sb_(2)S_(3) component and change its color from red to black,leading to an increment of photocurrent density from 1.9 A/m^(2) to 4.25 A/m^(2) at 0 V versus saturated calomel electrode(VSCE).The enhanced PEC performance was mainly attributed to the improved visible light absorption.Moreover,annealing treatment facilitated retarding the electron-hole recombination occurred at the solid/liquid interfaces.Our work might provide a novel strategy for enhancing the PEC performance of a semiconductor electrode. 展开更多
关键词 electrochemical impedance analysisincluding visible light absorption tio_(2)/Sb_(2)S_(3)nanorod arrays nanorod arrays nras vacuum annealing annealing treatment increment o photoelectrochemical performance
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Towards rational design of Cu-SSZ-13 catalysts with less N_(2)O formation in NH_(3)-SCR reaction:The effect of BrФsted acid sites
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作者 Jianqi Liu Jinpeng Du +9 位作者 Jingyi Wang Shichao Han Yulong Shan Yan Zhang Xuanhao Wu Shan Gao Yunbo Yu Zhongbiao Wu Wenpo Shan Hong He 《Journal of Environmental Sciences》 2025年第11期546-557,共12页
Ammonia Selective Catalytic Reduction(NHs-SCR)technology has been employed to eliminate NO_(x) from diesel engine exhaust,with Cu-SSZ-13 serving as the commercial catalyst.The greenhouse gas N_(2)O is produced as a by... Ammonia Selective Catalytic Reduction(NHs-SCR)technology has been employed to eliminate NO_(x) from diesel engine exhaust,with Cu-SSZ-13 serving as the commercial catalyst.The greenhouse gas N_(2)O is produced as a byproduct when using Cu-SSZ-13 as the NH_(3)-SCR catalyst.To achieve synergistic control of pollutants and greenhouse gases in diesel engine exhaust,rational design of Cu-SSZ-13 catalysts is required.In this study,the effect of Brønsted acid sites in Cu-SSZ-13 catalysts on the formation of N_(2)O was investigated.Mild thermal treatmentwas innovatively employed to prepare Cu-SSZ-13 catalysts with different amounts of Brønsted acid sites.EPR,H_(2)-TPR,NH_(3)-TPD,NMR were utilized to determine that the Brønsted acid sites were modified while the Cu species remained unchanged.Thereby an accurate assessment of the influence of Brønsted acid sites on N_(2)O formation could be achieved.Our results showed that Cu-SSZ-13 with more Brønsted acid sites produced less N_(2)O during the NH_(3)-SCR reaction.In the low-temperature region,the presence of framework acid sites facilitates the decomposition of the NH_(4)NO_(3)assisted by NO to form N_(2)and H_(2)O,reducing the formation of N_(2)O.In the high-temperature region,the Brønsted acid sites promote the decomposition of NH_(2)NO into N_(2)and H_(2)O.Meanwhile,the N_(2)O-SCR reaction can also be promoted by Brønsted acid sites,thereby decreasing N_(2)O emissions.This study suggests that in the future design and synthesis of Cu-SSZ-13 zeolites,attention should be paid to creating more Brønsted acid sites in Cu-SSZ-13 to reduce N_(2)O emissions. 展开更多
关键词 NH_(3)-SCR No_(x)abatement N_(2)o emission control Cu-SSZ-13 zeolite Brønsted acid sites
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水氮耦合对河西灌区滴灌西瓜NH_(3)和N_(2)O排放的影响
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作者 薛亮 马忠明 +3 位作者 赵安宇 罗双龙 薛莲 Muhammad Ali RAZA 《干旱区地理》 北大核心 2025年第5期801-811,共11页
NH_(3)和N_(2)O排放是氮素气态损失的主要途径,研究膜下滴灌条件下不同水氮供应量对氮素气态损失的影响对于河西灌区西瓜生产中水氮管理方案的制定具有重要意义。试验采用裂区设计,主处理按田间持水量的80%(I80)、65%(I65)和50%(I50)设... NH_(3)和N_(2)O排放是氮素气态损失的主要途径,研究膜下滴灌条件下不同水氮供应量对氮素气态损失的影响对于河西灌区西瓜生产中水氮管理方案的制定具有重要意义。试验采用裂区设计,主处理按田间持水量的80%(I80)、65%(I65)和50%(I50)设3个灌水下限,灌水上限设为田间持水量的95%,副处理设0(N0)、100 kg·hm^(-2)(N100)、200 kg·hm^(-2)(N200)和300 kg·hm^(-2)(N300)4个施氮水平。试验采用通气法和静态箱-气相色谱法,分析了不同处理下土壤NH_(3)和N_(2)O排放动态变化以及西瓜产量和品质。结果表明:(1)土壤氮素气态排放受水氮共同影响,NH_(3)、N_(2)O排放在施用基肥后1~2 d达到高峰,持续5~7 d,累积排放量在苗期最大,分别占全生育期的33.33%和47.22%;全生育期NH_(3)、N_(2)O累积排放量分别为3.05~15.39 kg·hm^(-2)和0.51~2.00 kg·hm^(-2)。(2)提高水氮供应量均会促使NH_(3)、N_(2)O排放,氮素的作用大于灌水,I80条件下增施氮肥,NH_(3)、N_(2)O累积排放量分别增加了63.86%~285.48%和120.41%~308.82%。(3)处理I65N200的氮素利用率达到32.62%,显著高于处理I80N300,产量和可溶性固形物含量分别为70159 kg·hm^(-2)和11.39%,与处理I80N300差异不显著。综合考虑产量、品质和氮素利用率,在河西灌区西瓜膜下滴灌种植中,将土壤含水量控制在田间最大持水量的65%~95%之间,施氮量优化至200 kg·hm^(-2)时,能够保持较高的产量和品质,并有利于控制NH_(3)和N_(2)O排放。 展开更多
关键词 西瓜 滴灌 水氮耦合 NH_(3)排放 N_(2)o排放
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铜与双氰胺配施对土壤硝化作用和N_(2)O排放的影响
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作者 温裕宏 冯迪 +8 位作者 孔梦如 万云星 朱启林 伍延正 但小倩 汤水荣 Ahmed S.Elrys 张金波 孟磊 《农业环境科学学报》 北大核心 2026年第2期526-536,共11页
为探究双氰胺(DCD)硝化抑制剂配施铜(Cu)对土壤硝化作用及N_(2)O排放的影响,本研究采用2种不同有机质水平土壤,通过室内培养试验,分别设置尿素(U)、尿素配施DCD(U_DCD)、尿素配施DCD并添加10 mg·kg^(-1) Cu(U_DCD_Cu1)和200 mg... 为探究双氰胺(DCD)硝化抑制剂配施铜(Cu)对土壤硝化作用及N_(2)O排放的影响,本研究采用2种不同有机质水平土壤,通过室内培养试验,分别设置尿素(U)、尿素配施DCD(U_DCD)、尿素配施DCD并添加10 mg·kg^(-1) Cu(U_DCD_Cu1)和200 mg·kg^(-1) Cu(U_DCD_Cu2)处理。结果表明:与U_DCD处理相比,高、低有机质土壤U_DCD_Cu1处理NO_(3)^(-)-N含量分别显著降低30.79%和提高5.37%(P<0.05)。相比于U_DCD处理,U_DCD_Cu2处理土壤N_(2)O排放量显著提高25.48%(高有机质土壤)和11.00%(低有机质土壤)。DCD与Cu的协同效应受土壤有机质含量和Cu含量的调节:低含量Cu在高有机质土壤中增强了DCD的抑制效果,在低有机质土壤中则表现为削弱作用,两种Cu含量均降低了DCD抑制N_(2)O排放的效果。研究揭示了在不同有机质水平土壤下外源添加Cu对DCD调控氮素流失的作用机制,为减少土壤N_(2)O排放提供理论依据。 展开更多
关键词 双氰胺硝化抑制剂 硝态氮 N_(2)o排放
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