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Construction of strong built-in electric field in binary metal sulfide heterojunction to propel high-loading lithium-sulfur batteries 被引量:1
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作者 Weiming Xiong Jiande Lin +6 位作者 Huiqun Wang Sha Li Junhao Wang Yuxiang Mao Xiao Zhan de-yin wu Li Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第6期492-501,I0011,共11页
The practical application of lithium-sulfur(Li-S)batteries is greatly hindered by soluble polysulfides shuttling and sluggish sulfur redox kinetics.Rational design of multifunctional hybrid materials with superior ele... The practical application of lithium-sulfur(Li-S)batteries is greatly hindered by soluble polysulfides shuttling and sluggish sulfur redox kinetics.Rational design of multifunctional hybrid materials with superior electronic conductivity and high electrocatalytic activity,e.g.,heterostructures,is a promising strategy to solve the above obstacles.Herein,a binary metal sulfide MnS-MoS_(2) heterojunction electrocatalyst is first designed for the construction of high-sulfur-loaded and durable Li-S batteries.The MnS-MoS_(2) p-n heterojunction shows a unique structure of MoS_(2) nanosheets decorated with ample MnS nanodots,which contributes to the formation of a strong built-in electric field at the two-phase interface.The MnS-MoS_(2) hybrid host shows strong soluble polysulfide affinity,enhanced electronic conductivity,and exceptional catalytic effect on sulfur reduction.Benefiting from the synergistic effect,the as-derived S/MnS-MoS_(2) cathode delivers a superb rate capability(643 m A h g^(-1)at 6 C)and a durable cyclability(0.048%decay per cycle over 1000 cycles).More impressively,an areal capacity of 9.9 m A h cm^(-2)can be achieved even under an extremely high sulfur loading of 14.7 mg cm^(-2)and a low electrolyte to sulfur ratio of 2.9μL mg^(-1).This work provides an in-depth understanding of the interfacial catalytic effect of binary metal compound heterojunctions on sulfur reaction kinetics. 展开更多
关键词 Lithium-sulfur battery MnS-MoS_(2)heterojunction Built-in electric field Sulfur reaction kinetics High sulfur loading
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纳米结构金电极上对氨基苯硫酚的电化学反应过程研究 被引量:1
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作者 彭辉远 王家正 +4 位作者 刘佳 于欢欢 林建德 吴德印 田中群 《电化学》 CAS CSCD 北大核心 2022年第4期1-8,共8页
本文研究了金电极上吸附对氨基苯硫酚(PATP)的电化学行为。在0.05 mol·L^(-1)的硫酸溶液(pH=1)中,从循环伏安图中可观察到PATP的不可逆电氧化峰。基于吸附PATP电化学氧化为4′-巯基-N-苯基醌二亚胺(NPQD)的反应机理,计算了电极表面... 本文研究了金电极上吸附对氨基苯硫酚(PATP)的电化学行为。在0.05 mol·L^(-1)的硫酸溶液(pH=1)中,从循环伏安图中可观察到PATP的不可逆电氧化峰。基于吸附PATP电化学氧化为4′-巯基-N-苯基醌二亚胺(NPQD)的反应机理,计算了电极表面PATP的覆盖度,并在低激光功率下通过电化学表面增强拉曼光谱进行了氧化产物表征。通过电化学线性扫描伏安法及理论模拟计算,确定了PATP电化学氧化的动力学参数,即表观反应速率常数k及传递系数α,确定了生成阳离子自由基的步骤为速率控制步骤。 展开更多
关键词 对氨基苯硫酚 覆盖度 电化学表面增强拉曼光谱 线性扫描伏安法 理论模拟
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紫罗碱衍生物分子结的电学性质理论研究
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作者 蔡转运 刘佳 +2 位作者 关思远 吴德印 田中群 《电化学》 CAS CSCD 北大核心 2021年第1期92-99,共8页
本文基于密度泛函(DFT)结合非平衡格林函数(NEGF)的方法,以具有氧化还原中心的紫罗碱衍生物(N,N′-bis(4-thioalkyl)-4,4′-bipyridinium, HS-4V4-SH)功能分子构造Au(111)/S-4V4-S/Au(111)分子结,详细分析了分子在三种价态V、V+和V2+下... 本文基于密度泛函(DFT)结合非平衡格林函数(NEGF)的方法,以具有氧化还原中心的紫罗碱衍生物(N,N′-bis(4-thioalkyl)-4,4′-bipyridinium, HS-4V4-SH)功能分子构造Au(111)/S-4V4-S/Au(111)分子结,详细分析了分子在三种价态V、V+和V2+下的电学性质与分子的几何结构和电子结构的关系。基于对三种价态透射系数分析结果表明,在零偏压下,V与V+的电导值比V2+高了两个数量级,4V4分子结的电导随两个吡啶环之间夹角的增大呈线性减小。同时,理论计算结果也表明,增加烷基链(HS-n Vn-SH, n=2~7)的数目,发现分子结电导值呈指数形式衰减,其每个亚甲基的衰减因子约为1,与烷基二硫醇分子的接近。 展开更多
关键词 紫罗碱 氧化还原活性中心 分子电导 密度泛函理论方法 非平衡格林函数
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Surface plasmon-enhanced photochemical reactions on noble metal nanostructures 被引量:3
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作者 de-yin wu Meng Zhang +3 位作者 Liu-Bin Zhao Yi-Fan Huang Bin Ren Zhong-Qun Tian 《Science China Chemistry》 SCIE EI CAS CSCD 2015年第4期574-585,共12页
Nanoscale noble metals can exhibit excellent photochemical and photophysical properties, due to surface plasmon resonance(SPR) from specifically collective electronic excitations on these metal surfaces. The SPR effec... Nanoscale noble metals can exhibit excellent photochemical and photophysical properties, due to surface plasmon resonance(SPR) from specifically collective electronic excitations on these metal surfaces. The SPR effect triggers many new surface processes, including radiation and radiationless relaxations. As for the radiation process, the SPR effect causes the significant focus of light and enormous enhancement of the local surface optical electric field, as observed in surface-enhanced Raman spectroscopy(SERS) with very high detection sensitivity(to the single-molecule level). SERS is used to identify surface species and characterize molecular structures and chemical reactions. For the radiationless process, the SPR effect can generate hot carriers, such as hot electrons and hot holes, which can induce and enhance surface chemical reactions. Here, we review our recent work and related literature on surface catalytic-coupling reactions of aromatic amines and aromatic nitro compounds on nanostructured noble metal surfaces. Such reactions are a type of novel surface plasmon-enhanced chemical reaction. They could be simultaneously characterized by SERS when the SERS signals are assigned. By combining the density functional theory(DFT) calculations and SERS experimental spectra, our results indicate the possible pathways of the surface plasmonenhanced photochemical reactions on nanostructures of noble metals. To construct a stable and sustainable system in the conversion process of the light energy to the chemical energy on nanoscale metal surfaces, it is necessary to simultaneously consider the hot electrons and the hot holes as a whole chemical reaction system. 展开更多
关键词 surface plasmon resonance plasmon-enhanced chemical reaction p-aminothiophenol density functional theory noble metal nanostructures
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