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Sb_(2)S_(3)/石墨烯负极材料的制备及其储钠性能研究
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作者 王旭 杨观华 +2 位作者 李翼宏 张志国 张杰 《广西科技大学学报》 CAS 2024年第1期106-112,共7页
钠离子电池(sodium-ion batteries,SIBs)具有成本低的潜在优势,有望成为替代锂离子电池(lithium ion batteries,LIBs)的储能设备。为提升钠离子电池的性能,开发出适应钠离子脱嵌的负极材料尤为重要。硫化锑(Sb_(2)S_(3))因其理论比容量... 钠离子电池(sodium-ion batteries,SIBs)具有成本低的潜在优势,有望成为替代锂离子电池(lithium ion batteries,LIBs)的储能设备。为提升钠离子电池的性能,开发出适应钠离子脱嵌的负极材料尤为重要。硫化锑(Sb_(2)S_(3))因其理论比容量高被认为是较好的钠离子电池负极材料。本文使用简单水热法将Sb_(2)S_(3)与石墨烯复合,制备Sb_(2)S_(3)/石墨烯复合材料(Sb_(2)S_(3)/Gr)。结果表明:Sb_(2)S_(3)/Gr作为钠离子电池负极时,不仅表现出良好的电导率(3.5×10~(-3)S/cm)和钠离子扩散速率(4.853×10~(-13)cm~2/s),而且在0.5 A/g的电流密度下,首圈库伦效率为76.27%,经150次循环后的比容量稳定在488 m A·h/g,表现出较高的比容量。Sb_(2)S_(3)/Gr复合材料表现出了极大的应用潜力,为高性能钠离子电池负极材料的研发提供了一定的参考价值。 展开更多
关键词 钠离子电池 硫化锑(sb_(2)s_(3)) 石墨烯 负极材料
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Sb_(2)S_(3)前驱体的结晶调控及储锂性能研究
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作者 袁正巧 陈星齐 +3 位作者 曾子豪 孙伟 杨越 葛鹏 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第11期4196-4203,共8页
在Sb_(2)S_(3)制备过程中,通过调节不同的反应温度获得晶型和粒度各异的前驱体颗粒。研究结果表明:在60℃合成的Sb_(2)S_(3)前驱体颗粒粒径适中,循环后的容量最高;针对Sb_(2)S_(3)-60℃前驱体进行进一步烧结处理后,所合成的棒状结构表... 在Sb_(2)S_(3)制备过程中,通过调节不同的反应温度获得晶型和粒度各异的前驱体颗粒。研究结果表明:在60℃合成的Sb_(2)S_(3)前驱体颗粒粒径适中,循环后的容量最高;针对Sb_(2)S_(3)-60℃前驱体进行进一步烧结处理后,所合成的棒状结构表面光滑,缺陷较少,并且分布均匀;Sb_(2)S_(3)-60℃-H@C在0.1 A/g的电流密度下首圈放电容量达916 mA·h·g^(-1),50圈循环后的容量保持率仍然接近90%,且Sb_(2)S_(3)-60℃-H@C在5 A/g下的容量为496 mA·h·g^(-1),表明其具有很强的电化学可逆性。显然,在60℃合成的材料结构稳定,离子扩散能力强,能够有效减小体积膨胀和多硫化物的穿梭,从而获得优异的锂离子存储性能,因此,通过优化Sb_(2)S_(3)前驱体的合成条件,对其形貌、粒径以及其他内部特性进行调控是制备高性能锂离子电池阳极的关键环节。 展开更多
关键词 锂离子电池 负极材料 sb_(2)s_(3)前驱体 晶型调控 电化学性能
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N-掺杂碳纤维复合Sb_(2)S_(3)柔性电极材料的制备及其性能研究 被引量:2
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作者 张利锋 李帅 +3 位作者 宋一飞 朱清 陆帮美 郭守武 《陕西科技大学学报》 北大核心 2023年第6期103-110,共8页
通过探索一系列静电纺丝-硫化-煅烧等工艺参数,制备了N-掺杂碳纤维复合Sb_(2)S_(3)柔性电极材料(Sb_(2)S_(3)/NC),并采用X射线衍射仪(XRD)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X-射线光电子能谱(XPS)等对样品的晶体结构、微观... 通过探索一系列静电纺丝-硫化-煅烧等工艺参数,制备了N-掺杂碳纤维复合Sb_(2)S_(3)柔性电极材料(Sb_(2)S_(3)/NC),并采用X射线衍射仪(XRD)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X-射线光电子能谱(XPS)等对样品的晶体结构、微观形貌及化学组成等进行了表征.制备的Sb_(2)S_(3)/NC纳米纤维具有优异的机械柔性和独特的复合结构.30 nm大小的Sb_(2)S_(3)纳米粒子相互连接成串珠状形貌,均匀地分散在N-掺杂碳纳米纤维中,有利于提高电子/离子的传输速率和电极材料的循环稳定性.Sb_(2)S_(3)/NC作为负极材料直接组装成的钠离子电池显示出优异的电化学性能,电流密度0.1和2.0 A g^(-1)下,比容量分别达到476.5和266.2 mAh g^(-1),0.1 A g^(-1)下循环280次后比容量保持为466.3 mAh g^(-1). 展开更多
关键词 钠离子电池 sb_(2)s_(3)/NC 柔性 电极材料
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Sb_(2)S_(3):P3HT共混物改善TiO_(2)纳米棒阵列钙钛矿太阳电池的性能
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作者 郭丽峰 郝彦忠 +1 位作者 任英科 裴娟 《河北科技大学学报》 CAS 北大核心 2022年第2期204-210,共7页
为解决钙钛矿太阳电池中MAPbI_(3)的不稳定性问题,提高电池性能,对以TiO_(2)纳米棒阵列作为电子传输层、Sb_(2)S_(3):P3HT共混物作为钙钛矿MAPbI_(3)修饰层的太阳电池进行了研究。首先,以SbCl_(3)作为锑源,Na_(2)S_(2)O_(3)作为硫源,采... 为解决钙钛矿太阳电池中MAPbI_(3)的不稳定性问题,提高电池性能,对以TiO_(2)纳米棒阵列作为电子传输层、Sb_(2)S_(3):P3HT共混物作为钙钛矿MAPbI_(3)修饰层的太阳电池进行了研究。首先,以SbCl_(3)作为锑源,Na_(2)S_(2)O_(3)作为硫源,采用溶剂热法制备合适尺寸的Sb_(2)S_(3)纳米球;其次,通过超声分散法将Sb_(2)S_(3)与P3HT在氯苯溶液中共混得到Sb_(2)S_(3):P3HT共混物,将其旋涂于沉积了MAPbI_(3)薄膜的TiO_(2)纳米棒阵列上,形成FTO/TiO_(2)NR/MAPbI_(3)/Sb_(2)S_(3):P3HT复合膜,制备成TiO_(2)纳米棒阵列MAPbI_(3)/Sb_(2)S_(3):P3HT太阳电池;最后,采用SEM,XRD,J-V曲线和紫外可见吸收光谱等方法进行表征和测试。结果表明,制备的结构为FTO/TiO_(2)NR/MAPbI_(3)/Sb_(2)S_(3):P3HT/Spiro-OMeTAD/Ag的太阳电池,能量转换效率(PCE)最高达到了14.73%,与未采用Sb_(2)S_(3):P3HT共混物修饰的TiO_(2)纳米棒阵列MAPbI_(3)太阳电池相比,能量转换效率得到了明显提升。因此,Sb_(2)S_(3):P3HT共混物能避免出现钙钛矿MAPbI_(3)被氧化的不稳定性问题,可有效提高TiO_(2)纳米棒阵列MAPbI_(3)太阳电池的性能。 展开更多
关键词 光电化学 钙钛矿太阳电池 TiO_(2)纳米棒阵列 sb_(2)s_(3):P3HT共混物 MAPbI_(3)
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Glass formation and physical properties of Sb_(2)S_(3)–CuI chalcogenide system
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作者 Qilin Ye Dan Chen Changgui Lin 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第1期412-416,共5页
Novel chalcogenide glasses of pseudo-binary(100-x)Sb_(2)S_(3-x)CuI systems were synthesized by traditional meltquenching method.The glass-forming region of Sb_(2)S_(3)-CuI system was determined ranging from x=30 mol% ... Novel chalcogenide glasses of pseudo-binary(100-x)Sb_(2)S_(3-x)CuI systems were synthesized by traditional meltquenching method.The glass-forming region of Sb_(2)S_(3)-CuI system was determined ranging from x=30 mol% to 40 mol%.CuI acts as a non-bridging modifier to form appropriate amount of [SbSI] structural units for improving the glass-forming ability of Sb_(2)S_(3).Particularly,as-prepared glassy sample is able to transmit light beyond 14 μm,which is the wider transparency region than most sulfide glasses.Their physical properties,including Vickers hardness(Hv),density(ρ),and ionic conductivity(σ) were characterized and analyzed with the compositional-dependent Raman spectra.These experimental results would provide useful knowledge for the development of novel multi-spectral optical materials and glassy electrolytes. 展开更多
关键词 chalcogenide glass infrared(IR)transparency sb_(2)s_(3) sbsI Raman spectra
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Manipulating the morphology of CdS/Sb_(2)S_(3) heterojunction using a Mg-doped tin oxide buffer layer for highly efficient solar cells
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作者 Jiashuai Li Liangbin Xiong +9 位作者 Xuzhi Hu Jiwei Liang Cong Chen Feihong Ye Jing Li Yongjie Liu Wenlong Shao Ti Wanga Chen Tao Guojia Fang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第3期374-381,I0010,共9页
Antimony sulfide(Sb_(2)S_(3))is an appealing semiconductor as light absorber for solar cells due to its high absorption coefficient,appropriate band gap(~1.7 e V)and abundance of constituent elements.However,power con... Antimony sulfide(Sb_(2)S_(3))is an appealing semiconductor as light absorber for solar cells due to its high absorption coefficient,appropriate band gap(~1.7 e V)and abundance of constituent elements.However,power conversion efficiency(PCE)of Sb_(2)S_(3)-based solar cells still lags much behind the theoretically predicted due to the imperfect energy level alignment at the charge transporting layer/Sb_(2)S_(3)interfaces and hence severe charge recombination.Herein,we insert a high-temperature sintered magnesium(Mg)-doped tin oxide(SnO_(2))layer between cadmium sulfide(Cd S)and fuorine doped tin oxide to form a cascaded energy level alignment and thus mitigate interfacial charge recombination.Simultaneously,the inserted Mg-doped Sn O_(2)buffer layer facilitates the growth of the neibouring Cd S film with orientation followed by Sb_(2)S_(3)film with larger grains and fewer pinholes.Consequently,the resultant Sb_(2)S_(3)solar cells with Mg-doped SnO_(2)deliver a champion PCE of 6.31%,22.8%higher than those without a buffer layer.Our work demonstrates that deliberate absorber growth as well as efficient hole blocking upon an appropriate buffer layer is viable in obtaining solution-processed Sb_(2)S_(3)solar cells with high performance. 展开更多
关键词 MORPHOLOGY sb_(2)s_(3)solar cells Mg-doped tin oxide Orientation
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P3HT和Spiro-OMeTAD共混物为光活性层和空穴传输层的杂化太阳电池 被引量:2
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作者 郝彦忠 栗靖琦 +2 位作者 钱近 裴娟 李英品 《太阳能学报》 EI CAS CSCD 北大核心 2021年第12期459-464,共6页
将P3HT与Spiro-OMeTAD共混后的混合物作为光活性层和空穴传输层,将其旋涂在由不同锑源和硫源比例(Sb/S)制备的Sb_(2)S_(3)纳米粒子敏化的TiO_(2)纳米棒(TiO_(2)(NR)/Sb_(2)S_(3))复合膜上,制备成杂化太阳电池。对所得杂化太阳电池的微... 将P3HT与Spiro-OMeTAD共混后的混合物作为光活性层和空穴传输层,将其旋涂在由不同锑源和硫源比例(Sb/S)制备的Sb_(2)S_(3)纳米粒子敏化的TiO_(2)纳米棒(TiO_(2)(NR)/Sb_(2)S_(3))复合膜上,制备成杂化太阳电池。对所得杂化太阳电池的微观结构和光电转换特性进行研究,在锑源和硫源比例(Sb/S)为1/1,P3HT与Spiro-OMeTAD共混物比例为15 mg∶1 mL时得到的结构为FTO/TiO_(2)(NR)/Sb_(2)S_(3)(1∶1)/P3HT:Spiro-OMeTAD(15 mg∶1 mL)/Ag的杂化太阳电池的能量转换效率达到4.57%。 展开更多
关键词 杂化太阳电池 能量转换效率 空穴传输材料 TiO_(2)纳米棒 sb_(2)s_(3)纳米粒子
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Natural Stibnite for Lithium‑/Sodium‑Ion Batteries:Carbon Dots Evoked High Initial Coulombic Efficiency 被引量:6
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作者 Yinger Xiang Laiqiang Xu +7 位作者 Li Yang Yu Ye Zhaofei Ge Jiae Wu Wentao Deng Guoqiang Zou Hongshuai Hou Xiaobo Ji 《Nano-Micro Letters》 SCIE EI CAS CSCD 2022年第8期208-228,共21页
The application of Sb_(2)S_(3)with marvelous theoretical capacity for alkali metal-ion batteries is seriously limited by its poor electrical conductivity and low initial coulombic efficiency(ICE).In this work,natural ... The application of Sb_(2)S_(3)with marvelous theoretical capacity for alkali metal-ion batteries is seriously limited by its poor electrical conductivity and low initial coulombic efficiency(ICE).In this work,natural stibnite modified by carbon dots(Sb_(2)S_(3)@xCDs)is elaborately designed with high ICE.Greatly,chemical processes of local oxidation–partial reduction–deep coupling for stibnite reduction of CDs are clearly demonstrated,confirmed with in situ high-temperature X-ray diffraction.More impressively,the ICE for lithium-ion batteries(LIBs)is enhanced to 85%,through the effect of oxygen-rich carbon matrix on C–S bonds which inhibit the conversion of sulfur to sulfite,well supported by X-ray photoelectron spectroscopy characterization of solid electrolyte interphase layers helped with density functional theory calculations.Not than less,it is found that Sb–O–C bonds existed in the interface effectively promote the electronic conductivity and expedite ion transmission by reducing the bandgap and restraining the slip of the dislocation.As a result,the optimal sample delivers a tremendous reversible capacity of 660 mAh g^(−1)in LIBs at a high current rate of 5 A g^(−1).This work provides a new methodology for enhancing the electrochemical energy storage performance of metal sulfides,especially for improving the ICE. 展开更多
关键词 Carbon dots sb_(2)s_(3) Initial Coulombic efficiency Interfacial bond ANODE
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