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Co_(9)S_(8)/Cu_(2)S/CF纳米阵列的制备及其电化学析氢性能
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作者 施华锋 朱佳伟 《淮北师范大学学报(自然科学版)》 CAS 2024年第3期30-37,共8页
过渡金属硫属化合物因其组成、结构和功能的特殊性,在电解水析氢高效电催化剂制备领域受到广泛关注。采用溶剂热法在泡沫铜基底上制备出Co_(9)S_(8)/Cu_(2)S/CF纳米复合材料。借助X射线衍射(XRD)、扫描电镜(SEM)以及透射电镜(TEM)等分... 过渡金属硫属化合物因其组成、结构和功能的特殊性,在电解水析氢高效电催化剂制备领域受到广泛关注。采用溶剂热法在泡沫铜基底上制备出Co_(9)S_(8)/Cu_(2)S/CF纳米复合材料。借助X射线衍射(XRD)、扫描电镜(SEM)以及透射电镜(TEM)等分析手段对材料进行详细表征并探究其电解水析氢性能。在0.5 mol/L H_(2)SO_(4)溶液、磷酸盐缓冲溶液(PBS)和1 mol/L KOH溶液中,只需要82 mV、117 mV和153 mV过电位就可以达到10 mA·cm^(-2)。此外,该催化剂在历经多次电化学析氢反应后,其过电位值无明显变化,具有优异的电化学稳定性。相较于单一Cu_(2)S与Co_(9)S_(8)材料,复合催化剂Co_(9)S_(8)/Cu_(2)S在催化活性上有较大程度提高。 展开更多
关键词 电解水 自支撑电极 co_(9)s_(8)/cu_(2)s 溶剂热法
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纳米碳片负载Mott-Schottky型Co/Co_(9)S_(8)异质结的原位合成及电催化性能研究 被引量:1
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作者 方瑜 李靖 +4 位作者 孔维超 周雪 徐林 孙冬梅 唐亚文 《材料导报》 EI CAS CSCD 北大核心 2024年第8期44-50,共7页
以K_(3)[Co(CN)_(6)]为Co源,硫脲为S源,富含-OH和-NH_(2)的天然亲水性高分子壳聚糖为碳源,通过形成CS-K_(3)[Co(CN)_(6)]水凝胶将Co前驱体和S源均匀分布于C前驱体中。水凝胶形成的主要驱动力来自金属Co离子与壳聚糖中-NH_2的配位交联以... 以K_(3)[Co(CN)_(6)]为Co源,硫脲为S源,富含-OH和-NH_(2)的天然亲水性高分子壳聚糖为碳源,通过形成CS-K_(3)[Co(CN)_(6)]水凝胶将Co前驱体和S源均匀分布于C前驱体中。水凝胶形成的主要驱动力来自金属Co离子与壳聚糖中-NH_2的配位交联以及Co离子之间通过-CN的桥接作用。得益于均匀分散的前驱体和后续热解处理初期形成的Co的催化作用,通过简单地调控Co与S的原子比,原位构建出均匀镶嵌有Co/Co_(9)S_(8)异质结的N,S共掺杂富含微孔的碳纳米片(Co/Co_(9)S_(8)@N,S-CNSs)。采用SEM、TEM、BET、XRD、Raman、XPS和电化学工作站等方法对所制备催化剂的形貌、组成和结构以及电催化性能进行了表征。结果表明,形成的Mott-Schottky型Co/Co_(9)S_(8)异质界面有效地调控了活性中心的电子结构和电荷传输特性;二维掺杂多孔碳纳米片的负载使活性位点更加均匀分散,同时提供了高速的电子和传质通道,也避免了活性位点在催化过程中的迁移聚集。两者的协同作用使合成的Co/Co_(9)S_(8)@N,S-CNSs复合催化剂具有了更优的催化性能,在10 mA·cm^(-2)的电流密度下,其催化碱性析氧反应/OER的过电位仅为304 mV,优于商业化的RuO_(2)催化剂。该研究为发展具有优异电催化性能的廉价过渡金属催化剂提供帮助。 展开更多
关键词 co/co_(9)s_(8) Mott-schottky N s共掺杂碳纳米片 过渡金属电催化剂
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P掺杂Co_(9)S_(8)@VS_(2)纳米管阵列的制备及其水性锌离子混合超级电容器性能研究 被引量:2
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作者 张浩 刘梦洁 +1 位作者 钱惠 张惠 《功能材料》 CAS CSCD 北大核心 2022年第3期3136-3145,共10页
近年来,二硫化钒(VS_(2))作为一种具有二维层状结构的高表面活性的过渡金属硫化物而广泛地应用在锌离子电池(ZIBs)正极材料中。然而,VS_(2)的生长堆叠问题和低能量密度严重阻碍了其在储能设备中的应用。通过在Co_(9)S_(8)纳米管阵列(NT... 近年来,二硫化钒(VS_(2))作为一种具有二维层状结构的高表面活性的过渡金属硫化物而广泛地应用在锌离子电池(ZIBs)正极材料中。然而,VS_(2)的生长堆叠问题和低能量密度严重阻碍了其在储能设备中的应用。通过在Co_(9)S_(8)纳米管阵列(NTAs)表面包覆生长P掺杂VS_(2)纳米片的方式构建一种具有核壳异质结构的Co_(9)S_(8)@P-VS_(2) NTAs,从而有效地避免了大块VS_(2)纳米片的堆积生长,使得层状VS_(2)被分散包覆在纳米管的表面;而且P掺杂增强了Co_(9)S_(8)纳米管与VS_(2)纳米之间异质结的导电性,提升了其比容量,进而提高了能量密度。因此,得益于纳米核壳结构与P掺杂改性的协同作用,制备的Co_(9)S_(8)@P-VS_(2) NTAs在作为电容型正极与电池型锌负极组装成新型的锌离子混合超级电容器(ZHSCs)后获得了优异的电化学储能性能。前驱液中的磷源加入量为30μL/35 mL,2 mol/L ZnSO_(4)水系电解质中,Co_(9)S_(8)@P-VS_(2) NTAs(Co_(9)S_(8)@P-VS_(2)-30 NTAs)获得了一个高达6.72 F/cm^(2)的超高面积比电容(电流密度:2 mA/cm^(2)),远高于Co_(9)S_(8)@VS_(2) NTAs(2.98 F/cm^(2));在1.6 W/cm^(2)的功率密度下,其能量密度可以达到2.39 mWh/cm^(2);并且在1000个循环充放电后,其面积比容量仍能保持为初始比电容的74.26%,具有良好的循环稳定性。 展开更多
关键词 Vs_(2) co_(9)s_(8) P掺杂 过渡金属硫化物 核壳异质结构 锌离子混合超级电容器
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一步水热法制备高效析氧3D花球阵列Co_(9)S_(8)/MoS_(2)@TM催化电极 被引量:1
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作者 卫学玲 包维维 +3 位作者 蒋鹏 艾桃桃 李文虎 邹祥宇 《精细化工》 EI CAS CSCD 北大核心 2022年第1期164-170,211,共8页
以四水合钼酸铵、六水合硝酸钴和硫脲为原料,采用一步水热法在钛网(TM)上原位构筑了不同阵列结构Co_(9)S_(8)/MoS_(2)@TM催化电极。通过改变原料中钴、钼、硫的物质的量之比来调控Co_(9)S_(8)/MoS_(2)@TM电极的结构。采用SEM、XRD和XPS... 以四水合钼酸铵、六水合硝酸钴和硫脲为原料,采用一步水热法在钛网(TM)上原位构筑了不同阵列结构Co_(9)S_(8)/MoS_(2)@TM催化电极。通过改变原料中钴、钼、硫的物质的量之比来调控Co_(9)S_(8)/MoS_(2)@TM电极的结构。采用SEM、XRD和XPS对Co_(9)S_(8)/MoS_(2)@TM进行物相分析和形貌表征,并在1 mol/L KOH电解液中对Co_(9)S_(8)/MoS_(2)@TM的电催化析氧性能进行了研究。结果表明,钴、钼、硫的物质的量之比为10∶14∶600时,制备的Co_(9)S_(8)/MoS_(2)@TM为3D花瓣状阵列结构,且在10 m A/cm^(2)电流密度下过电势为271 m V,塔菲尔斜率为88.5 m V/dec,具有良好的析氧稳定性和耐久性,展现了优异的电化学性能。 展开更多
关键词 一步水热法 电催化析氧 co_(9)s_(8)/Mos_(2)@TM 花瓣状阵列结构 有机电化学与工业
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三维双金属硫化物Co_(9)S_(8)/MoS_(2)/C异质结用于增强钠离子存储 被引量:1
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作者 陈红 穆建佳 +4 位作者 边煜华 高宣雯 王达 刘朝孟 骆文彬 《新型炭材料(中英文)》 SCIE EI CAS CSCD 北大核心 2023年第3期510-521,共12页
钠离子电池(SIBs)的阳极材料一直备受研究关注,但缓慢的动力学行为和较大的体积变化限制了其在实际应用中的推广。为了克服这些问题,本研究利用金属有机框架和MoS_(2)的优异性能,设计并制备了具有稳定骨架结构的复合材料。以Co-ZIF为前... 钠离子电池(SIBs)的阳极材料一直备受研究关注,但缓慢的动力学行为和较大的体积变化限制了其在实际应用中的推广。为了克服这些问题,本研究利用金属有机框架和MoS_(2)的优异性能,设计并制备了具有稳定骨架结构的复合材料。以Co-ZIF为前驱体,添加Mo源材料,在高温硫化烧结的过程中,构建了花状的Co_(9)S_(8)/MoS_(2)/C复合材料,探究其在不同温度条件下的结构和电化学性能。此外,通过密度泛函理论(DFT)分析了Co9S8(001)/MoS2异质结对扩散动力学的影响。结果表明,电子结构在异质结构的界面处发生了重塑,Co_(9)S_(8)/MoS_(2)表现出典型的金属性和显著增强的电子导电性。在所有样品中,700℃合成的阳极材料Co_(9)S_(8)/MoS_(2)/C具有更稳定的结构和优异的电化学性能。当电流密度从4000恢复到40 mA g^(-1)时,Co_(9)S_(8)/MoS_(2)/C-700的放电容量可以从368 mAh g^(-1)完全恢复到571 mAh g^(-1),并稳定在543 mAh g^(-1)。综上所述,本研究提供了一些关于异质结材料合理制备的思路,有助于设计高性能的金属钠离子电池负极复合材料。 展开更多
关键词 钠离子电池 负极 金属有机框架 Mos_(2) co_(9)s_(8)
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Co_(9)S_(8)@Ti_(3)C_(2)正极材料制备及其镁离子电池性能研究
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作者 陈昊元 徐昊 张可敏 《广州化学》 CAS 2023年第1期19-27,共9页
采用模板法合成了Co_(9)S_(8)@Ti_(3)C_(2)复合材料,通过SEM和XRD研究了复合材料的形貌结构。以不同Co_(9)S_(8)负载量的复合材料以及纯相的Co_(9)S_(8)作为正极,以纯镁为负极,苯酚氯化镁-氯化铝/四氢呋喃作为电解液,组装镁离子电池进... 采用模板法合成了Co_(9)S_(8)@Ti_(3)C_(2)复合材料,通过SEM和XRD研究了复合材料的形貌结构。以不同Co_(9)S_(8)负载量的复合材料以及纯相的Co_(9)S_(8)作为正极,以纯镁为负极,苯酚氯化镁-氯化铝/四氢呋喃作为电解液,组装镁离子电池进行测试比较。结果表明,与Ti_(3)C_(2)的复合能够明显缩短电池的活化时间,并且显著提高其电化学性能,Co_(9)S_(8)@Ti_(3)C_(2)-2在100 mA/g的电流密度下循环100次后,放电比容量上升到233 mAh/g。此外,在1 000 mA/g的电流密度下,仍然能够实现69 mAh/g的放电比容量。 展开更多
关键词 镁离子电池 正极材料 转化型正极 复合材料 八硫化九钴 碳化钛
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Manganese doping to boost the capacitance performance of hierarchical Co_(9)S_(8)@Co(OH)_(2) nanosheet arrays
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作者 Lingxia Zheng Weiqing Ye +3 位作者 Pengju Yang Jianlan Song Xiaowei Shi Huajun Zheng 《Green Energy & Environment》 SCIE EI CSCD 2022年第6期1289-1297,共9页
Transition metal sulfides(TMSs)have been regarded as greatly promising electrode materials for supercapacitors because of abundant redox electroactive sites and outstanding conductivity.Herein,we report a self-support... Transition metal sulfides(TMSs)have been regarded as greatly promising electrode materials for supercapacitors because of abundant redox electroactive sites and outstanding conductivity.Herein,we report a self-supported hierarchical Mn doped Co_(9)S_(8)@Co(OH)_(2) nanosheet arrays on nickel foam(NF)substrate by a one-step metal–organic-framework(MOF)engaged approach and a subsequent sulfurization process.Experimental results reveal that the introduction of manganese endows improved electric conductivity,enlarged electrochemical specific surface area,adjusted electronic structure of Co_(9)S_(8)@Co(OH)_(2) and enhanced interfacial activities as well as facilitated reaction kinetics of electrodes.The optimal Mn doped Co_(9)S_(8)@Co(OH)_(2) electrode exhibits an ultrahigh specific capacitance of 3745 F g^(-1) at 1 A g^(-1)(5.618 F cm^(-2) at 1.5 mA cm^(-2))and sustains 1710 F g^(-1) at 30 A g^(-1)(2.565 F cm^(-2) at 45 mA cm^(-2)),surpassing most reported values on TMSs.Moreover,a battery-type asymmetric supercapacitor(ASC)device is constructed,which delivers high energy density of 50.2 Wh kg^(-1) at power density of 800 W kg^(-1),and outstanding long-term cycling stability(94%capacitance retention after 8000 cycles).The encouraging results might offer an effective strategy to optimize the TMSs for energy-storage devices. 展开更多
关键词 Mn doped co_(9)s_(8)@co(OH)_(2) MOF High capacitance Asymmetric supercapacitor
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Hollow Co_(9)S_(8) cores encapsulated in hierarchical MXene@Bi_(2)O_(3) multiple shells for constructing binder-free electrodes of foldable supercapacitors 被引量:2
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作者 Jiaming Wang Ying Huang +3 位作者 Shuai Zhang Xianping Du Zhiliang Duan Xu Sun 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第16期112-123,共12页
Rational structure design and regulation are of paramount importance for obtaining electrode materials with desirable electrochemical performance.Here,a novel binder-free electrode with the hollow Co_(9)S_(8) core@mul... Rational structure design and regulation are of paramount importance for obtaining electrode materials with desirable electrochemical performance.Here,a novel binder-free electrode with the hollow Co_(9)S_(8) core@multi-shell structure(CS-x@MXene@Bi_(2)O_(3))derived from metal-organic frameworks(MOFs)precursor is well designed by the electrospinning,sulfuration,carbonization,and hydrothermal processes.In this architecture,the concentration of Co_(9)S_(8)(CS-x)is optimized for an ideal flexible substrate,which alleviates the dimensional variation for long cycle life.The unique cores and the MXene flakes engineered by Bi_(2)O_(3) multiple shells can be responsible for the superior characteristics,including a fast electronic pathway,large specific surface area,enhanced electrical conductivity,and improved electrochemical performance.As expected,the obtained CS-2@MXene@Bi_(2)O_(3) binder-free electrode exhibits a high discharge capacitance of 646.1 F g^(–1)(1 A g^(–1)).Two binder-free electrodes can be assembled into a solid-state supercapacitor with desirable energy and power density,and long-term cyclic stability is demonstrated through 5000 cycles.Given these advantages,the CS-2@MXene@Bi_(2)O_(3) is selected as the electrode in a foldable supercapacitor.More importantly,the specific capacitance is reserved after various deformations.Therefore,it is expected that binder-free electrode materials with the unique core@shell structure design could be applied in wearable and portable energy conversion devices. 展开更多
关键词 Hollow co_(9)s_(8) MXene flakes Bi_(2)O_(3)nanosheets Foldable supercapacitors Electrospinning
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Engineering Cu_(1.96)S/Co_(9)S_(8) with sulfur vacancy and heterostructure as an efficient bifunctional electrocatalyst for water splitting 被引量:1
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作者 Yuanhua Xiao Ya Shen +5 位作者 Dangcheng Su Shiwei Zhang Jinlin Yang Dafeng Yan Shaoming Fang Xuezhao Wang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第23期1-8,共8页
Defect and interface engineering have been recognized as efficient strategies for developing high-performance electrocatalysts.However,it is still challenging to couple defect and interface engineering in transition m... Defect and interface engineering have been recognized as efficient strategies for developing high-performance electrocatalysts.However,it is still challenging to couple defect and interface engineering in transition metal sulfides and understand their dynamic evolution process during electrocatalysis.Herein,we developed one-step pyrolysis of bimetallic sulfide to construct S vacancy-rich Cu_(1.96)S/Co_(9)S_(8) heterostructure by controlling the critical decomposition temperature.The as-synthesized Cu_(1.96)S/Co_(9)S_(8) exhibits excellent bifunctional electrocatalytic performance,with a low overpotential of 99 and 200 mV at 10 mA cm−2 towards hydrogen evolution reaction(HER)and oxygen evolution reaction(OER)in 1.0 mol/L KOH electrolyte,respectively.A symmetric two-electrode cell with Cu_(1.96)S/Co_(9)S_(8) delivered a current density of 10 mA cm^(−2) at a low voltage of 1.43 V and showed long-term stability for 200 h.A series of in/ex-situ techniques revealed that the electrochemical reconfiguration only appeared in the OER process,resulting in the CoOOH/CuO and SO42−species promoting OER performance.Meanwhile,the S vacancy and heterostructure interface in Cu_(1.96)S/Co_(9)S_(8) were proved to optimize the electronic structure and the adsorption of intermediates for HER by density function theory(DFT)simulations.This work provides a promising strategy to construct metal sulfides with rich defects and heterogeneous interfaces and understand their dynamic evolution process for electrochemical storage and conversion devices. 展开更多
关键词 cu_(1.96)s/co_(9)s_(8) s vacancy HETEROsTRUCTURE Overall water-splitting
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Micro-flower-like MoS_(2)-modified Co_(9)S_(8)heterostructure as anode material for sodium-ion batteries with superior reversibility and rate capacity
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作者 Yang He Changlin Liu +6 位作者 Shang Peng Juan Zhang Gang Chen Zhongbao Feng Qiang Zhao Abuliti Abudula Guoqing Guan 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第14期210-220,共11页
Designing and fabricating of heterostructured materials with long-term cycling stability and high-rate capacity for the anode of sodium-ion batteries(SIBs)still remain a great challenge.Herein,micro-flower-like MoS_(2... Designing and fabricating of heterostructured materials with long-term cycling stability and high-rate capacity for the anode of sodium-ion batteries(SIBs)still remain a great challenge.Herein,micro-flower-like MoS_(2)-modified Co_(9)S_(8)(Co_(9)S_(8)/MoS_(2))with a three-dimensional(3D)heterostructure was first obtained via a simple solvothermal synthesis followed by a solid sulfidation treatment process.As a material for the anode of SIBs,the Co_(9)S_(8)/MoS_(2)-based electrode with an initial Co/Mo molar ratio of 1/1(denoted as CM55-S)exhibits the best sodium storage performance with a boosted capacity,superior reversibility(424.5 mAh g^(-1)@2 A g^(-1)at the 1600th cycle,401.1 mAh g^(-1)@5 A g^(-1)at the 800th cycle),and an excellent rate capacity(210.1 mAh g^(-1)@20 A g^(-1)).Density functional theory(DFT)calculations confirm that the Co_(9)S_(8)/MoS_(2)heterostructure has a lower energy barrier(0.30 eV)than the pure Co_(9)S_(8)(0.53 eV).It is expected that such a heterostructured material could be an attractive candidate as the material of the anode for SIBs. 展开更多
关键词 sodium-ion batteries Anode materials co_(9)s_(8) Mos_(2) Heterostructure Reversibility Rate capacity
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Co9S8/MoS2异质结构的构筑及电催化析氢性能研究 被引量:10
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作者 张宇 王世兴 +4 位作者 杨蕊 戴腾远 张楠 席聘贤 严纯华 《化学学报》 SCIE CAS CSCD 北大核心 2020年第12期1455-1460,共6页
利用前驱物形貌导向法,成功制备了Co_(9)S_(8)/MoS_(2)异质结构催化剂,该催化剂在碱性析氢反应(HER)中表现出优异的催化活性及稳定性,其在10 mA·cm^(-2)处的过电势仅为84 mV.通过X射线粉末衍射(XRD)、透射电子显微镜(TEM)、电子自... 利用前驱物形貌导向法,成功制备了Co_(9)S_(8)/MoS_(2)异质结构催化剂,该催化剂在碱性析氢反应(HER)中表现出优异的催化活性及稳定性,其在10 mA·cm^(-2)处的过电势仅为84 mV.通过X射线粉末衍射(XRD)、透射电子显微镜(TEM)、电子自旋共振(ESR)、拉曼光谱(Raman)、X射线光电子能谱(XPS)和同步辐射(XAFS)等表征,证明了CoS_(2)/MoS_(2)在H2氛围下煅烧形成Co_(9)S_(8)/MoS_(2)的过程中,CoS_(2)中Co的配位模式从部分八面体向Co9S8中的四面体转变,这种转变可活化MoS_(2)的惰性平面,从而使其更有利于吸附H^(*).除此之外,接触角数据表明:该催化剂具有良好的亲水性,有利于电解液渗透及气体分子的迅速扩散,从而促进HER反应速率.由于异质结构间具有强烈的相互作用,该催化剂可表现出良好的结构稳定性.本工作基于Co_(9)S_(8)/MoS_(2)异质结构的成功构筑及对其HER催化机理的充分探讨,为后续硫化物异质结及其在电催化中的应用提供了良好的思路和研究基础. 展开更多
关键词 形貌导向法 co_(9)s_(8)/Mos_(2) 异质结构 亲水性 析氢反应
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Efficient photocatalytic hydrogen evolution over graphdiyne boosted with a cobalt sulfide formed S-scheme heterojunction 被引量:5
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作者 Zhiliang Jin Hongying Li Junke Li 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第2期303-315,共13页
Graphdiyne(GDY,g-C_(n)H_(2n-2)),a novel two-dimensional carbon hybrid material,has attracted significant attention owing to its unique and excellent properties.As a new type of carbon material,GDY has a layered struct... Graphdiyne(GDY,g-C_(n)H_(2n-2)),a novel two-dimensional carbon hybrid material,has attracted significant attention owing to its unique and excellent properties.As a new type of carbon material,GDY has a layered structure and can be used in the field of photocatalytic water splitting.Therefore,herein,new progress in the preparation of graphene using Cu I powder as a catalytic material and the combination of a facile hydrothermal method to prepare a new composite material,Co_(9)S_(8)-GDY-Cu I,is reported.The hydrogen production activity of Co9S8-GDY-Cu I in the sensitization system reached 1411.82μmol g^(-1) h^(-1),which is 10.29 times that of pure GDY.A series of characterization techniques were used to provide evidence for the successful preparation of the material and its superior photocatalytic activity.Raman spectroscopy showed that the material contains acetylenic bonds,and the X-ray photoelectron spectroscopy carbon fitting peaks indicated the presence of C-C(sp^(2))and C-C(sp),further demonstrating that GDY was successfully prepared.A possible reaction mechanism was proposed by making use of UV-visible diffuse reflectance and Mott-Schottky analyses.The results showed that a double S-scheme heterojunction was constructed between the samples,which effectively accelerated the separation and transfer of electrons.In addition,the introduction of Co9S8 nanoparticles greatly improved the visible light absorption capacity of Co_(9)S_(8)-GDY-Cu I.Photoluminescence spectroscopy and related electrochemical characterization further proved that recombination of the electron-hole pairs in the composite material was effectively suppressed. 展开更多
关键词 Graphdiyne co_(9)s_(8) s-scheme heterojunctions Photocatalytic hydrogen evolution
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