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NiS_(2)/多孔碳纤维复合电极的制备及其储锂性能
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作者 王金凯 王征宇 +4 位作者 张佳乐 刘智 孟晓曼 王争东 王红康 《功能材料》 CAS CSCD 北大核心 2024年第2期2168-2173,共6页
制备长循环稳定、高容量的负极材料是锂离子电池实现大规模储能应用的前提之一。利用静电纺丝技术和水热硫化的方法制备了均匀分布的NiS_(2)/碳纳米纤维(NiS_(2)/C)复合材料。作为锂离子电池负极材料,NiS_(2)/C电极的首次放电比容量为86... 制备长循环稳定、高容量的负极材料是锂离子电池实现大规模储能应用的前提之一。利用静电纺丝技术和水热硫化的方法制备了均匀分布的NiS_(2)/碳纳米纤维(NiS_(2)/C)复合材料。作为锂离子电池负极材料,NiS_(2)/C电极的首次放电比容量为864.6 mAh/g,首次库仑效率为62.7%。其中不可逆容量为322.9 mAh/g,不可逆容量主要由转换反应的部分不可逆及固态电解质(SEI)膜的形成造成的。NiS_(2)/C复合电极表现出优异的循环稳定性,200 mA/g下150次循环后容量仍然维持在519 mAh/g,容量保持率高达90.4%。此外,在2 A/g大电流密度下,NiS_(2)/C电极的容量仍高于310 mAh/g表现出出色的倍率性能。借助XRD、SEM及TEM表征,分析发现包裹着NiS_(2)纳米颗粒的碳纤维,作为良好的导电介质,既可以提高NiS_(2)的导电性,也可缓解NiS_(2)脱嵌过程中的体积膨胀,使得NiS_(2)/C电极仍能保持自身的空间结构,有助于提高电池循环性能;另一方面,碳纤维的多孔结构为锂离子提供了通道,缩短了锂离子的传输路径,提高了锂离子输运速率,有利于电池倍率性能。 展开更多
关键词 碳纳米纤维 nis_(2) 静电纺丝 锂离子电池负极 电化学性能
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Ultrasmall NiS_(2)Nanocrystals Embedded in Ordered Macroporous Graphenic Carbon Matrix for Efficiently Pseudocapacitive Sodium Storage
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作者 Zhaozhao Liu Jiang Wang +7 位作者 Ran Bi Pinyi Zhao Mengqian Wu Xinyu Liu Likun Yin Chengyang Wang Mingming Chen Kemeng Ji 《Transactions of Tianjin University》 EI CAS 2023年第2期89-100,共12页
Sodium-ion hybrid capacitor(SIHC)is one of the most promising alternatives for large-scale energy storage due to its high energy and power densities,natural abundance,and low cost.However,overcoming the imbalance betw... Sodium-ion hybrid capacitor(SIHC)is one of the most promising alternatives for large-scale energy storage due to its high energy and power densities,natural abundance,and low cost.However,overcoming the imbalance between slow Na^(+)reaction kinetics of battery-type anodes and rapid ion adsorption/desorption of capacitive cathodes is a significant challenge.Here,we propose the high-rate-performance NiS_(2)@OMGC anode material composed of monodispersed NiS_(2) nanocrystals(8.8±1.7 nm in size)and N,S-co-doped graphenic carbon(GC).The NiS_(2)@OMGC material has a three-dimensionally ordered macroporous(3DOM)morphology,and numerous NiS_(2) nanocrystals are uniformly embedded in GC,forming a core-shell structure in the local area.Ultrafine NiS_(2) nanocrystals and their nano-microstructure demonstrate high pseudocapacitive Na-storage capability and thus excellent rate performance(355.7 mAh/g at 20.0 A/g).A SIHC device fabricated using NiS_(2)@OMGC and commercial activated carbon(AC)cathode exhibits ultrahigh energy densities(197.4 Wh/kg at 398.8 W/kg)and power densities(43.9 kW/kg at 41.3 Wh/kg),together with a long life span.This outcome exemplifies the rational architecture and composition design of this type of anode material.This strategy can be extended to the design and synthesis of a wide range of high-performance electrode materials for energy storage applications. 展开更多
关键词 Sodium-ion battery Sodium-ion hybrid capacitor Three-dimensionally ordered macroporous structure Graphenic carbon nis_(2)nanocrystals
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Efficient CO_(2)Reduction to Formate on CsPbI_(3) Nanocrystals Wrapped with Reduced Graphene Oxide 被引量:1
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作者 Minh Tam Hoang Chen Han +13 位作者 Zhipeng Ma Xin Mao Yang Yang Sepideh Sadat Madani Paul Shaw Yongchao Yang Lingyi Peng Cui Ying Toe Jian Pan Rose Amal Aijun Du Tuquabo Tesfamichael Zhaojun Han Hongxia Wang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第10期1-14,共14页
Transformation of greenhouse gas(CO_(2))into valuable chemicals and fuels is a promising route to address the global issues of climate change and the energy crisis.Metal halide perovskite catalysts have shown their po... Transformation of greenhouse gas(CO_(2))into valuable chemicals and fuels is a promising route to address the global issues of climate change and the energy crisis.Metal halide perovskite catalysts have shown their potential in promoting CO_(2)reduction reaction(CO_(2)RR),however,their low phase stability has limited their application perspective.Herein,we present a reduced graphene oxide(rGO)wrapped CsPbI_3 perovskite nanocrystal(NC)CO_(2)RR catalyst(CsPbI_3/rGO),demonstrating enhanced stability in the aqueous electrolyte.The CsPbI_3/rGO catalyst exhibited>92%Faradaic efficiency toward formate production at a CO_(2)RR current density of~12.7 mA cm^(-2).Comprehensive characterizations revealed the superior performance of the CsPbI_3/rGO catalyst originated from the synergistic effects between the CsPbI_3 NCs and rGO,i.e.,rGO stabilized theα-CsPbI_3 phase and tuned the charge distribution,thus lowered the energy barrier for the protonation process and the formation of~*HCOO intermediate,which resulted in high CO_(2)RR selectivity toward formate.This work shows a promising strategy to rationally design robust metal halide perovskites for achieving efficient CO_(2)RR toward valuable fuels. 展开更多
关键词 Perovskite nanocrystal ELECTROCATALYST Inorganic perovskite CO_(2)reduction Formate production
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Development strategies and improved photocatalytic CO_(2) reduction performance of metal halide perovskite nanocrystals 被引量:1
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作者 Xianwei Fu Tingting Ren +3 位作者 Shilong Jiao Zhihong Tian Jianjun Yang Qiuye Li 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第8期397-422,I0011,共27页
In recent years,photocatalytic CO_(2)reduction reaction(CRR) has attracted much scientific attention to overcome energy and environmental issues by converting CO_(2)into high-value-added chemicals utilizing solar ener... In recent years,photocatalytic CO_(2)reduction reaction(CRR) has attracted much scientific attention to overcome energy and environmental issues by converting CO_(2)into high-value-added chemicals utilizing solar energy.Metal halide perovskite(MHP) nanocrystals(NCs) are recognized as an ideal choice for CRR owing to their outstanding optoelectronic properties.Although great efforts have been devoted to designing more effective photocatalysts to optimize CRR performance,severe charge recombination,instability,and unsatisfactory activity have become major bottlenecks in developing perovskite-based photocatalysts.In this review,we mainly focus on the recent research progress in the areas of relevance.First,a brief insight into reaction mechanisms for CRR and structural features of MHPs are introduced.Second,efficient modification approaches for the improvement of the photocatalytic activity and stability of the perovskite-based catalysts are comprehensively reviewed.Third,the state-of-the-art achievements of perovskite-based photocatalysts for CRR are systematically summarized and discussed,which are focused on the modification approaches,structure design,and the mechanism of the CO_(2)reduction process.Lastly,the current challenges and future research perspectives in the design and application of perovskite materials are highlighted from our point of view to provide helpful insights for seeking breakthroughs in the field of CRR.This review may provide a guide for scientists interested in applying perovskite-based catalysts for solar-to-chemical energy conversion. 展开更多
关键词 Photocatalytic CO_(2)reduction MHP nanocrystals Structure design Properties Stability
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Enabling High-Performance Sodium Battery Anodes by Complete Reduction of Graphene Oxide and Cooperative In-Situ Crystallization of Ultrafine SnO_(2)Nanocrystals
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作者 Junwu Sang Kangli Liu +4 位作者 Xiangdan Zhang Shijie Zhang Guoqin Cao Yonglong Shen Guosheng Shao 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第3期356-365,共10页
The main bottleneck against industrial utilization of sodium ion batteries(SIBs)is the lack of high-capacity electrodes to rival those of the benchmark lithium ion batteries(LIBs).Here in this work,we have developed a... The main bottleneck against industrial utilization of sodium ion batteries(SIBs)is the lack of high-capacity electrodes to rival those of the benchmark lithium ion batteries(LIBs).Here in this work,we have developed an economical method for in situ fabrication of nanocomposites made of crystalline few-layer graphene sheets loaded with ultrafine SnO_(2)nanocrystals,using short exposure of microwave to xerogel of graphene oxide(GO)and tin tetrachloride containing minute catalyzing dispersoids of chemically reduced GO(RGO).The resultant nanocomposites(SnO_(2)@MWG)enabled significantly quickened redox processes as SIB anode,which led to remarkable full anode-specific capacity reaching 538 mAh g^(−1)at 0.05 A g^(−1)(about 1.45 times of the theoretical capacity of graphite for the LIB),in addition to outstanding rate performance over prolonged charge–discharge cycling.Anodes based on the optimized SnO_(2)@MWG delivered stable performance over 2000 cycles even at a high current density of 5 A g^(−1),and capacity retention of over 70.4%was maintained at a high areal loading of 3.4 mg cm^(−2),highly desirable for high energy density SIBs to rival the current benchmark LIBs. 展开更多
关键词 in situ compositing microwave reduced graphene oxide sodium ion battery sodium ion battery anode ultrafine SnO_(2)nanocrystals
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C_(5)F_(10)O分解气体在Cu修饰NiS_(2)表面的吸附机理研究
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作者 陈学云 金广杰 +1 位作者 许正举 崔豪 《四川电力技术》 2023年第4期17-24,共8页
文中利用第一性原理研究了Cu修饰单层NiS_(2)(Cu-NiS_(2))对5种C_(5)F_(10)O分解组分的吸附和传感性能,以探索其在C_(5)F_(10)O绝缘装置运行状态评估领域的应用潜力。通过对各吸附体系的吸附参数研究发现:Cu-NiS_(2)对C_(2)F_(6)O_(3)... 文中利用第一性原理研究了Cu修饰单层NiS_(2)(Cu-NiS_(2))对5种C_(5)F_(10)O分解组分的吸附和传感性能,以探索其在C_(5)F_(10)O绝缘装置运行状态评估领域的应用潜力。通过对各吸附体系的吸附参数研究发现:Cu-NiS_(2)对C_(2)F_(6)O_(3)分子表现为化学吸附,吸附能为-1.05 eV,而对C_(3)F_(6)、CF_(2)O、C_(2)F_(6)和CF_(4)分子表现为物理吸附。通过对各吸附体系的电子性能以及气敏恢复特性分析发现:Cu-NiS_(2)对C_(3)F_(6)或CF_(2)O气体的传感性能较好,且在室温下恢复性能较佳,因此具备开发为C_(3)F_(6)或CF_(2)O气体传感器的巨大潜力;相反的,由于Cu-NiS_(2)对C_(2)F_(6)和CF_(4)的传感性能较差,因此无法实现这两种气体的高灵敏检测。此外,尽管Cu-NiS_(2)对C_(2)F_(6)O_(3)的传感性能极佳,但其较长的恢复特性决定了只能实现对该气体的单次检测,无法实现长期稳定使用。依据仿真研究结果提出了一种用于电力系统故障诊断的新型气敏传感材料,即Cu-NiS_(2),该传感材料对于评估C_(5)F_(10)O绝缘装置的运行状态具有重要意义。 展开更多
关键词 C_(5)F_(10)O 气体传感器 第一性原理 Cu修饰单层nis_(2)
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Boosting the catalytic activity toward oxygen reduction via a heterostructure of porous iron oxide-decorated 2D NiO/NG nanosheets
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作者 Kakali Maiti Matthew T.Curnan +2 位作者 Hyung Jun Kim Kyeounghak Kim Jeong Woo Han 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第6期669-681,I0016,共14页
As a noble metal substitute,two-dimensional(2D)hierarchical nano-frame structures have attracted great interest as candidate catalysts due to their remarkable advantages-high intrinsic activity,high electron mobility,... As a noble metal substitute,two-dimensional(2D)hierarchical nano-frame structures have attracted great interest as candidate catalysts due to their remarkable advantages-high intrinsic activity,high electron mobility,and straightforward surface functionalization.Therefore,they may replace Pt-based catalysts in oxygen reduction reaction(ORR)applications.Herein,a simple method is developed to design hierarchical nano-frame structures assembled via 2D NiO and N-doped graphene(NG)nanosheets.This procedure can yield nanostructures that satisfy the criteria correlated with improved electrocatalytic performance,such as large surface area,numerous undercoordinated atoms,and high defect densities.Further,porous NG nanosheet architectures,featuring NiO nanosheets densely coordinated with accessible holey Fe_(2)O_(3) moieties,can enhance mesoporosity and balance hydrophilicity.Such improvements can facilitate charge transport and expose formerly inaccessible reaction sites,maximizing active site density utilization.Density functional theory(DFT)calculations reveal favored O_(2) adsorption and dissociation on Fe_(2)O_(3) hybrid structures when supported by 2D NiO and NG nanomaterials,given 2D materials donated charge to Fe_(2)O_(3) active sites.Our systematic studies reveal that synergistic contributions are responsible for enriching the catalytic activity of Fe_(2)O_(3)@NiO/NG in alkaline media-encompassing internal voids and pores,unique hierarchical support structures,and concentrated N-dopant and bimetallic atomic interactions.Ultimately,this work expands the toolbox for designing and synthesizing highly efficient 2D/2D shelled functional nanomaterials with transition metals,endeavoring to benefit energy conversion and related ORR applications. 展开更多
关键词 N-doped graphene Holey Fe_(2)O_(3)nanocrystals NiO nanosheets High catalytic performance ORR
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构建NiS_(2)/MoSe_(2)S型异质结高效光催化产氢 被引量:11
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作者 刘阳 郝旭强 +1 位作者 胡海强 靳治良 《物理化学学报》 SCIE CAS CSCD 北大核心 2021年第6期107-118,共12页
S型异质结的提出是光催化领域发展的一个重要新理论。本研究通过典型的溶剂热法制备了NiS_(2)和MoSe_(2),并通过原位生长的方法将二者复合,构建了S型异质结。所得的复合材料在光催化析氢中显示了优异的性能,产氢速率达7mmol·h^(-1)... S型异质结的提出是光催化领域发展的一个重要新理论。本研究通过典型的溶剂热法制备了NiS_(2)和MoSe_(2),并通过原位生长的方法将二者复合,构建了S型异质结。所得的复合材料在光催化析氢中显示了优异的性能,产氢速率达7mmol·h^(-1)·g^(-1),是纯NiS_(2)和MoSe_(2)的2.05倍和2.44倍。进一步研究证实,NiS_(2)和MoSe_(2)耦合可以增强对光吸收强度。与纯NiS_(2)和MoSe_(2)相比,NiS_(2)/MoSe_(2)更高的光电流密度和更低的阴极电流及更低的电化学阻抗均证明了NiS_(2)/MoSe_(2)复合物可以有效促进光生电子的转移。同时,更低的荧光强度表明了NiS_(2)/MoSe_(2)复合物对电子-空穴再次复合的有效抑制,这为光催化析氢反应提供了有利的条件。另一方面,通过扫描电子显微镜和透射电子显微镜发现,MoSe_(2)作为一种无定型样品包围NiS_(2)纳米微球,这大大增加了两者之间的接触面积,从而增加了反应的活性位点。其次,在该光反应体系中,曙红(EY)作为一种光敏剂,有效地增强了催化剂对光的吸收。同时,在敏化过程中,曙红提供了电子给催化剂,这有效提高了光催化反应效率。S型异质结的建立有助于提高反应体系的氧化还原能力,是光催化还原水产氢反应析氢效果提高的主要原因。通过模特肖特基和光子能量曲线确定NiS_(2)和MoSe_(2)的导带、价带位置,进一步证明了S型异质结的建立。这项工作为研究S型异质结有效提高光催化制氢效率提供了新的参考。 展开更多
关键词 nis_(2) MoSe_(2) S型异质结 光催化产氢
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NiS_(2)@MoS_(2)/CC纳米复合材料的制备及其电催化析氢性能的研究 被引量:1
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作者 任宇曦 常春涛 +1 位作者 朱胜利 崔振铎 《功能材料》 CAS CSCD 北大核心 2021年第7期7018-7023,7040,共7页
电解水产氢是近来研究的热点,电极催化材料是影响析氢反应的重要因素。通过两步水热法,成功在碳布上合成了NiS_(2)@MoS_(2)三维异质结构复合催化剂(NiS_(2)@MoS_(2)/CC)。在碳布上垂直排列的NiS_(2)纳米片为MoS_(2)提供了良好的支撑,在... 电解水产氢是近来研究的热点,电极催化材料是影响析氢反应的重要因素。通过两步水热法,成功在碳布上合成了NiS_(2)@MoS_(2)三维异质结构复合催化剂(NiS_(2)@MoS_(2)/CC)。在碳布上垂直排列的NiS_(2)纳米片为MoS_(2)提供了良好的支撑,在暴露更多边缘活性位点的同时,也为析氢反应提供了快速的物质传输通道。合理的界面设计促使NiS_(2)和MoS_(2)发挥协同作用,改善催化剂表面电子状态,从而体现出更好的析氢催化活性。电化学测试表明,NiS_(2)@MoS_(2)/CC具有较大的电化学活性面积,在碱性条件下驱动10mA/cm^(2)析氢反应电流密度的过电位为106 mV,Tafel斜率为61.1 mV/dec,远优于单一的MoS_(2)/CC和NiS_(2)/CC催化材料。 展开更多
关键词 MoS_(2) nis_(2) 复合材料 碱性析氢
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Co基MOFs@NiS_(2)复合材料的制备及电化学性能研究 被引量:1
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作者 何凤元 张杰 +3 位作者 王梓铨 张士元 孙墨杰 鲁敏 《中国陶瓷》 CAS CSCD 北大核心 2022年第7期28-37,共10页
通过在NiS_(2)空心球上分别原位生长Co-MOF-74和ZIF-67两种金属有机骨架材料,制备了不同钴镍比的Co-MOF-74@NiS_(2)和ZIF-67@NiS_(2)复合材料并对其进行电化学性能测试。研究结果表明:两种复合材料均在钴镍比为2∶1时获得最佳的比电容,... 通过在NiS_(2)空心球上分别原位生长Co-MOF-74和ZIF-67两种金属有机骨架材料,制备了不同钴镍比的Co-MOF-74@NiS_(2)和ZIF-67@NiS_(2)复合材料并对其进行电化学性能测试。研究结果表明:两种复合材料均在钴镍比为2∶1时获得最佳的比电容,分别为360.32 F·g^(-1)和1020.95 F·g^(-1)。当电流密度为5 A·g^(-1)时,ZIF-67@NiS_(2)仍然能够保持39.64%的初始比电容,同时,3000次循环后电容保持率仍能保持53%,具有优秀的倍率性能和稳定性能。相比于ZIF-67(77.13 F·g^(-1),62.23%)和NiS_(2)(327.00 F·g^(-1),13.59%),二者的复合使材料的比电容、倍率性均得到了有效地提升,充分说明了ZIF-67@NiS_(2)复合材料在高性能超级电容器中的潜在应用。 展开更多
关键词 金属有机骨架材料 nis_(2) 超级电容器 电极材料
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自支撑CC/NiS_(2)纳米片中间层制备与锂硫电池性能研究 被引量:2
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作者 郝红 许俊 《电气工程学报》 CSCD 2022年第3期12-18,共7页
多硫离子的穿梭效应是限制锂硫电池发展的一个关键问题。通过水热法和进一步的硫化反应合成了自支撑的碳布/二硫化镍纳米片(CC/NiS_(2))复合材料,并将其用作锂硫电池中间层来有效抑制多硫离子的穿梭效应。NiS_(2)纳米片均匀生长在CC表面... 多硫离子的穿梭效应是限制锂硫电池发展的一个关键问题。通过水热法和进一步的硫化反应合成了自支撑的碳布/二硫化镍纳米片(CC/NiS_(2))复合材料,并将其用作锂硫电池中间层来有效抑制多硫离子的穿梭效应。NiS_(2)纳米片均匀生长在CC表面,具有较大的比表面积和优异的催化活性,能够显著增强对多硫离子的化学吸附能力并促进电化学反应动力学。相比于碳布(CC)中间层电池,CC/NiS_(2)中间层电池具有明显提高的倍率性能和良好的循环寿命,在0.5C下放电的初始比容量为1254 mA·h·g^(−1)(增加52%),在2C下循环300圈后的比容量仍高达928 mA·h·g^(−1),容量衰减率仅为每圈0.015%。 展开更多
关键词 锂硫电池 CC/nis_(2) 中间层 催化剂
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Polymer waveguide thermo-optical switch with loss compensation based on NaYF_4: 18% Yb^(3+), 2% Er^(3+) nanocrystals 被引量:1
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作者 邢桂超 张美玲 +6 位作者 孙潼鹤 符越吾 黄雅莉 邵健 刘静蓉 王菲 张大明 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第11期539-544,共6页
A polymer waveguide thermo-optical switch with loss compensation based on NaYF_4: 18% Yb^(3+), 2% Er^(3+)nanocrystals, fabricated by traditional semiconductor processes, has been investigated. NaYF4: 18% Yb^(... A polymer waveguide thermo-optical switch with loss compensation based on NaYF_4: 18% Yb^(3+), 2% Er^(3+)nanocrystals, fabricated by traditional semiconductor processes, has been investigated. NaYF4: 18% Yb^(3+), 2% Er^(3+)nanocrystals were prepared by a pyrolysis method. The morphology and luminescent properties of the nanocrystals were characterized.The nanocrystals were doped into SU-8 as the core material of an optical waveguide amplifier. The size of the device was optimized for its optical and thermal fields as well as its transmission characteristics. The device was fabricated on a silica substrate by spin coating, photolithography, and wet etching. The insertion loss of the switch device is~15 dB. The rise and fall times of the device are 240 μs and 380 μs, respectively, as measured by application of a 304 Hz square wave voltage. The extinction ratio of the device is about 14 dB at an electrode-driving power of 7 mW. When the pump light power is 230 mW and the signal light power is 0.1 mW, the loss compensation of the device is 3.8 dB at a wavelength of1530 nm. Optical devices with loss compensation have important research significance. 展开更多
关键词 NaYF4:18%Yb3+ 2% Er3+ nanocrystals loss COMPENSATION polymer
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(N,F)-codoped TiO_2 Nanocrystals as Visible Light-activated Photocatalyst 被引量:3
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作者 Yanling Meng Jiansong Chen Ying Wang Hanming Ding Yongkui Shan 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2009年第1期73-76,共4页
(N, F)-codoped anatase TiO2 nanocrystals with active visible light response were prepared by using a simple sol-gel approach. X-ray photoelectron spectroscopy measurements suggested that the substitutional N and F s... (N, F)-codoped anatase TiO2 nanocrystals with active visible light response were prepared by using a simple sol-gel approach. X-ray photoelectron spectroscopy measurements suggested that the substitutional N and F species replaced the lattice oxygen atoms in TiO2 nanocrystals. Such nanocrystals showed strong absorption from 400 to 550 nm, which was mainly induced by nitrogen doping. The phase transformation from anatase to rutile was hindered by fluorine doping at high calcination temperatures, which was verified by XRD patterns. The N2 adsorption-desorption isotherms revealed the absence of mesopores in these nanocrystals. The (N, F)- codoped TiO2 nanocrystals showed satisfying photocatalytic activity on the photo-degradation of methylene blue under visible light. 展开更多
关键词 TiO2 nanocrystal (N F)-codoping Sol-gel method Visible light photocatalyst
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High valence state of Ni and Mo synergism in NiS_(2);MoS_(2)hetero-nanorods catalyst with layered surface structure for urea electrocatalysis 被引量:1
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作者 Shuli Wang Linyu Zhao +3 位作者 Jiaxin Li Xinlong Tian Xiang Wu Ligang Feng 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第3期483-492,I0013,共11页
High valence state species are significant in the energy-relevant electrochemical oxidation reactions.Herein,the high active state of Ni^(3+)formation induced by Mo^(6+)and their efficient synergism in NiS_(2)-MoS_(2)... High valence state species are significant in the energy-relevant electrochemical oxidation reactions.Herein,the high active state of Ni^(3+)formation induced by Mo^(6+)and their efficient synergism in NiS_(2)-MoS_(2)hetero-nanorods powder catalyst with the rough layered structure are demonstrated,as proof of concept,for the urea-assisted water electrolysis.This catalyst can be derived from the sulfidation of NiMoO_(4) nanorods that can realize individual metal sulfides sufficiently mixing at a domain size in the nanoscale which creates lots of active sites and nanointerfaces.The high valence state of Mo^(6+)and Ni^(3+)formation and increased conductive phase of 1 T MoS_(2)in the hetero-nanorods compared to the counterpart pure phases are revealed by spectral study and microscopic analysis;high electrochemical surface area and active site exposure are found due to the nano-interface formation and layered rough nanosheets over the surface of nanorods.They show much higher catalytic performance than their pure phases for urea oxidation,including high catalytic activity,stability,charge transfer ability and catalytic kinetics resulting from more active Ni^(3+)species formation and electronic synergism of high valence metals.Transformation of 1 T MoS_(2)to Mo^(6+)and increased amount of Mo^(6+)and Ni^(3+)after stability test indicate their involvement and synergism for the catalysis reaction.The current work offers a novel understanding of the synergistic effect based on the high valence state synergism for heterogeneous catalysts in electrocatalysis. 展开更多
关键词 Hetero-nanorods High valence state Urea oxidation nis_(2) MoS_(2)
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Well-dispersed SnO2 nanocrystals on N-doped carbon nanowires as efficient electrocatalysts for carbon dioxide reduction 被引量:1
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作者 Baohua Zhang Lizhen Sun +2 位作者 Yueqing Wang Si Chen Jintao Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第2期7-14,共8页
The conversion of carbon dioxide into valuable organic compounds is a highly promising approach to address the energy issues and environmental problems(e.g., global warming). Herein, we presents a facile and efficient... The conversion of carbon dioxide into valuable organic compounds is a highly promising approach to address the energy issues and environmental problems(e.g., global warming). Herein, we presents a facile and efficient method to prepare highly dense and well-dispersed SnO2 nanocrystals on 1 D N-doped carbon nanowires as advanced catalysts for the efficient electroreduction of CO2 to formate. The ultrasmall SnO2 coated on the N-doped carbon nanowires(SnO2@N-CNW) has been synthesized via the simple hydrothermal treatment coupled with a pyrolysis process. The unique structure enables to expose the active tin oxide and also provides the facile pathways for rapid transfer of electron and electrolyte along with the highly porous carbon foam composed with interconnected carbon nanowires. Therefore, SnO2@NCNW electrocatalyst exhibits good durability and high selectivity for formate formation with a Faradaic efficiency of ca. 90%. This work demonstrates a simple method to rationally design high-dense tin oxide nanocrystals on the conductive carbon support as advanced catalysts for CO2 electroreduction. 展开更多
关键词 SNO2 nanocrystal N-DOPING ELECTROCATALYST CARBON dioxide reduction CARBON nanowire
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Preparation, characterization and photocatalytic activity of N-doped TiO_2 nanocrystals 被引量:1
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作者 Hong-tao Gao Jing Zhou +1 位作者 Dong-mei Dai Guang-jun Liu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2009年第6期701-706,共6页
关键词 pbotocatalyst DEGRADATION nitrogen doping TiO2 nanocrystals visible light crystal violet
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Confining MoS_(2) nanocrystals in MOF-derived carbon for high performance lithium and potassium storage 被引量:1
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作者 Chen Hu Kun Ma +4 位作者 Yanjie Hu Aiping Chen Petr Saha Hao Jiang Chunzhong Li 《Green Energy & Environment》 SCIE CSCD 2021年第1期75-82,共8页
Developing an efficient synthesis protocol to simultaneously control 2D nanomaterials’size and dispersion is the pivot to optimize their electrochemical performance.Herein,we report the synthesis of uniform MoS_(2) n... Developing an efficient synthesis protocol to simultaneously control 2D nanomaterials’size and dispersion is the pivot to optimize their electrochemical performance.Herein,we report the synthesis of uniform MoS_(2) nanocrystals well-anchored into the void space of porous carbon(donated as MoS_(2)3C hybrids)by a simple confined reaction in metal–organic framework(MOF)during carbonization process.The strong confinement effect refrain MoS2 growth and aggregation,generating abundant active centers and edges,which contribute fast lithium/potassium reaction kinetics.In addition to the hybridization with the derived carbon,the MoS_(2)3C hybrids exhibit rapid Liþtransfer rate(~109 cm^(2) s 1)and greatly improved electronic conductivity.Consequently,the MoS23C hybrids show ultrafast rate performances and satisfactory cycling stabilities as anode materials for both lithium and potassium ion batteries.This work demonstrates a universal tactic to achieve high dispersive 2D nanomaterials with tailorable particle size. 展开更多
关键词 Confined reaction MoS_(2) nanocrystals Metal–organic framework Energy storage
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Importance of ligands on TiO_2 nanocrystals for perovskite solar cells
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作者 赵耀 赵怡程 +4 位作者 周文可 伏睿 李琪 俞大鹏 赵清 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第1期92-97,共6页
The fabrication of high-quality electron-selective layers at low temperature is a prerequisite to realizing efficient flexible and tandem perovskite solar cells (PSCs). A colloidal-quantum-dot ink that contains TiO2... The fabrication of high-quality electron-selective layers at low temperature is a prerequisite to realizing efficient flexible and tandem perovskite solar cells (PSCs). A colloidal-quantum-dot ink that contains TiO2 nanocrystals enables the deposition of a flat film with matched energy level for PSCs; however, the selection of ligands on the TiO2 surface is still unexplored. Here, we systematically studied the effect of the titanium diisopropoxide bis(acetylacetonate) (TiAc2) ligand on the performance of PSCs with a planar n-i-p architecture. We prepared TiO2 nanocrystals from TiCI4 and ethyl alcohol with C1- ligands attached on its surface and we found that a tiny amount of TiAc2 treatment of as-prepared TiO2 nanocrystals in a mixed solution of chloroform and methyl alcohol can enhance PSC power conversion efficiency (PCE) from 14.7% to 18.3%. To investigate the effect of TiAc2 ligand on PSCs, TiO2 samples with different TiAc2 content were prepared by adding TiAc2 into the as-obtained TiO2 nanocrystal solution. We use x-ray photoelectron spectroscopy to identify the content of C1 so as to reveal that C1 ligands can be substituted by TiAc2. We speculate that the improvement in PCE originates from amorphous TiO2 formation on the TiO2 nanocrystal surface, whereby a single-molecule layer of amorphous TiO2 facilitates charge transfer between the perovskite film and the TiO2 electronic transport layer, but excessive TiAc2 lowers the PSC performance dramatically. We further prove our hypothesis by x-ray diffraction measurements. We believe the PCE of PSCs can be further improved by carefully choosing the type and changing the content of surface ligands on TiO2 nanocrystal. 展开更多
关键词 TiAc2 TiO2 nanocrystal surface ligand perovskite solar cells
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Upconversion Emission and Paramagnetism of Colloid Ba2 ErF7 and Ba2 ErF7 :Yb^(3+) Nanocrystals Synthesized with Solvothermal Method
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作者 GONG Lunjun MA Mo +2 位作者 XU Changfu LIN Jianguo YANG Qibin 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第6期1076-1081,共6页
Ultrasmall near-monodisperse Ba2ErF7 nanocrystals with average crystal size 9.6 nm were synthesized with solvothermal method. The X-ray diffraction (XRD) and transmission electron microscopy (TEM) assays reveal th... Ultrasmall near-monodisperse Ba2ErF7 nanocrystals with average crystal size 9.6 nm were synthesized with solvothermal method. The X-ray diffraction (XRD) and transmission electron microscopy (TEM) assays reveal that the as-synthesized Ba2ErF7 nanocrystals are of the cubic structure with the cell parameter of 5.943 A, instead of the reported orthorhombic and tetragonal structure. Two emission bands originated from 2Hwj4H3/2 → 4F5/2 and 4F9/2 ----+ 4115,2 of Er3+ can be observed under a 980 nm laser excitation. The magnetic mass susceptibility of the as-synthesized BazErF7 nanocrystals reaches 4.293 × 10-5 emu g-1 Oe-1. 展开更多
关键词 Ba2ErF7 nanocrystal UPCONVERSION PARAMAGNETISM
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2H-SiC Dendritic Nanocrystals In Situ Formation from Amorphous Silicon Carbide under Electron Beam Irradiation
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作者 Li Xianxiang Hu Xiaobo Jiang Shouzheng Dong Jie Xu Xiangang Jiang Minhua 《Journal of Rare Earths》 SCIE EI CAS CSCD 2006年第z1期54-55,共2页
Under electron beam irradiation, the in-situ formation of 2H-SiC dentritic nanocrystals from amorphous silicon carbide at room temperature was observed. The homogenous transition mainly occurs at the thin edge and on ... Under electron beam irradiation, the in-situ formation of 2H-SiC dentritic nanocrystals from amorphous silicon carbide at room temperature was observed. The homogenous transition mainly occurs at the thin edge and on the surface of specimen where the energy obtained from electron beam irradiation is high enough to cause the amorphous crystallizing into 2H-SiC. 展开更多
关键词 electron BEAM IRRADIATION 2H-SiC DENDRITIC nanocrystal AMORPHOUS silicon CARBIDE
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