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Surface evolution of thermoelectric material KCu_(4)Se_(3) explored by scanning tunneling microscopy
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作者 夏玉敏 马妮 +7 位作者 蔡德胜 刘宇舟 谷易通 于淦 霍思宇 庞文慧 肖翀 秦胜勇 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第8期422-427,共6页
Novel two-dimensional thermoelectric materials have attracted significant attention in the field of thermoelectric due to their low lattice thermal conductivity.A comprehensive understanding of their microscopic struc... Novel two-dimensional thermoelectric materials have attracted significant attention in the field of thermoelectric due to their low lattice thermal conductivity.A comprehensive understanding of their microscopic structures is crucial for driving further the optimization of materials properties and developing novel functional materials.Here,by using in situ scanning tunneling microscopy,we report the atomic layer evolution and surface reconstruction on the cleaved thermoelectric material KCu_(4)Se_(3) for the first time.We clearly revealed each atomic layer,including the naturally cleaved K atomic layer,the intermediate Se^(2-)atomic layer,and the Se^(-)atomic layer that emerges in the thermodynamic-stable state.Departing from the maj ority of studies that predominantly concentrate on macroscopic measurements of the charge transport,our results reveal the coexistence of potassium disorder and complex reconstructed patterns of selenium,which potentially influences charge carrier and lattice dynamics.These results provide direct insight into the surface microstructures and evolution of KCu_(4)Se_(3),and shed useful light on designing functional materials with superior performance. 展开更多
关键词 THERMOELECTRIC KCu_(4)Se_(3) scanning tunneling microscopy(stm) EVOLUTION
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Assessing the dynamics of O_(2) desorption from cobalt phthalocyanine by in situ electrochemical scanning tunneling microscopy
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作者 Yu-Qi Wang Yue Feng +1 位作者 Xiang Wang Dong Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第11期144-148,共5页
We report here the in situ electrochemical scanning tunneling microscopy(ECSTM) study of cobalt phthalocyanine(CoPc)-catalyzed O_(2) evolution reaction(OER) and the dynamics of CoPc-O_(2) dissociation.The self-assembl... We report here the in situ electrochemical scanning tunneling microscopy(ECSTM) study of cobalt phthalocyanine(CoPc)-catalyzed O_(2) evolution reaction(OER) and the dynamics of CoPc-O_(2) dissociation.The self-assembled CoPc monolayer is fabricated on Au(111) substrate and resolved by ECSTM in 0.1 M KOH electrolyte.The OH^(-)adsorption on CoPc prior to OER is observed in ECSTM images.During OER,the generated O_(2) adsorbed on Co Pc is observed in the CoPc monolayer.Potential step experiment is employed to monitor the desorption of OER-generated O_(2) from CoPc,which results in the decreasing surface coverage of CoPc-O_(2) with time.The rate constant of O_(2) desorption is evaluated through data fitting.The insights into the dynamics of Co-O_(2) dissociation at the molecular level via in situ imaging help understand the role of Co-O_(2) in oxygen reduction reaction(ORR) and OER. 展开更多
关键词 Electrochemical scanning tunneling microscopy Oxygen evolution reaction Cobalt phthalocyanine
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Scanning tunneling microscopic investigation on morphology of magnetic Weyl semimetal YbMnBi2 被引量:1
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作者 Zhen Zhu Dong Yan +10 位作者 Xiao-Ang Nie Hao-Ke Xu Xu Yang Dan-Dan Guan Shiyong Wang Yao-Yi Li Canhua Liu Jun-Wei Liu Hui-Xia Luo Hao Zheng Jin-Feng Jia 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第7期87-90,共4页
YbMnBi2 is a recently discovered time-reversal-symmetry breaking type-Ⅱ Weyl semimetal.However, as a representation of the new category of topological matters, the scanning tunneling microcopy(STM) results on such im... YbMnBi2 is a recently discovered time-reversal-symmetry breaking type-Ⅱ Weyl semimetal.However, as a representation of the new category of topological matters, the scanning tunneling microcopy(STM) results on such important material are still absent.Here, we report the STM investigations on the morphology of vacuum cleaved single crystalline YbMnBi2 samples.A hill and valley type of topography is observed on the YbMnBi2 surface, which is consistent with the non-layer nature of its crystal structure.Analysis of STM images yields the information of the index of the vicinal surface.Our results here lay a playground of future atomic scale research on YbMnBi2. 展开更多
关键词 WEYL SEMIMETAL topological INSULATOR scanning tunneling microscopy
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Adsorption behavior of triphenylene on Ru(0001) investigated by scanning tunneling microscopy
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作者 Li-Wei Jing Jun-Jie Song +4 位作者 Yu-Xi Zhang Qiao-Yue Chen Kai-Kai Huang Han-Jie Zhang Pi-Mo He 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第7期407-412,共6页
As a representative of small aromatic molecules, triphenylene(TP) has markedly high carrier mobility and is an ideal precursor for building graphene nanostructures. We mainly investigated the adsorption behavior of TP... As a representative of small aromatic molecules, triphenylene(TP) has markedly high carrier mobility and is an ideal precursor for building graphene nanostructures. We mainly investigated the adsorption behavior of TP molecules on Ru(0001) by using scanning tunneling microscopy(STM). In submonolayer regime, TP molecules are randomly dispersed on Ru(0001) and the TP overlayer can be thoroughly dehydrogenated and converted into graphene islands at 700 K. Due to weak interaction between TP molecules and graphene, the grooves formed among graphene islands have confinement effect on TP molecules. TP adopts a flat-lying adsorption mode and has two adsorption configurations with the 3-fold molecular axis aligned almost parallel or antiparallel to the ■ direction of the substrate. At TP coverages of 0.6 monolayer(ML)and 0.8 ML, the orientational distributions of the two adsorption configurations are equal. At about 1.0 ML, we find the coexistence of locally ordered and disordered phases. The ordered phase includes two sets of different superstructures with the symmetries of ■R23.41° and p(4 × 4), respectively. The adsorption behavior of TP on Ru(0001) can be attributed to the delicate balance between molecule–substrate and molecule–molecule interactions. 展开更多
关键词 SELF-ASSEMBLY ORDERED SUPERSTRUCTURE scanning tunneling microscopy
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Scanning tunneling microscopy study of molecular growth structures of Gd@C_(82) on Cu(111)
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作者 陈建 秦志辉 +4 位作者 潘金波 卢双赞 杜世萱 高鸿钧 曹更玉 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第7期32-36,共5页
The coverage and temperature-dependent nucleation behaviors of the Gd@C82 metallofullerenes on Cu(111) have been studied by low-temperature scanning tunneling microscopy (LT-STM) in detail. Upon molecular depositi... The coverage and temperature-dependent nucleation behaviors of the Gd@C82 metallofullerenes on Cu(111) have been studied by low-temperature scanning tunneling microscopy (LT-STM) in detail. Upon molecular deposition at low temperature, Gd@C82 molecules preferentially decorate the steps and nucleate into single layer islands with increasing coverage. Further annealing treatment leads some of the Gd@C82 molecules to assemble into bright and dim patches, which are correlated to the adsorption induced substrate reconstruction. Upon sufficient thermal activation, Gd@C82 molecules sink into the Cu(111) surface one-copper-layer-deep, forming hexagonal close-packed molecular islands with intra-molecular details observed as striped patterns. By considering the commensurability between the Gd@C82 nearest-neighbor distance and the lattice of the underlying Cu(111), we clearly identified two kinds of in-plane molecular arrangements as (19(1/2)×19(1/2))R23.4°and (19(1/2)×19(1/2))R36.6°with respect to Cu(111). Within the assembled Gd@C82 molecular, island molecules with dim–bright contrast are spatially distributed, which may be modulated by the preexisted species on Cu(111). 展开更多
关键词 METALLOFULLERENE SELF-ASSEMBLY nucleation behaviors scanning tunneling microscopy
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Electronic phase diagram of NaFe_(1-x)Co_xAs investigated by scanning tunneling microscopy
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作者 周晓东 蔡鹏 王亚愚 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第8期171-180,共10页
Our recent scanning tunneling microscopy (STM) studies of the NaFelxCoxAs phase diagram over a wide range of dopings and temperatures are reviewed. Similar to the high-Tc cuprates, the iron-based superconductors lie... Our recent scanning tunneling microscopy (STM) studies of the NaFelxCoxAs phase diagram over a wide range of dopings and temperatures are reviewed. Similar to the high-Tc cuprates, the iron-based superconductors lie in close proximity to a magnetically ordered phase. Therefore, it is widely believed that magnetic interactions or fluctuations play an important role in triggering their Cooper pairings. Among the key issues regarding the electronic phase diagram are the properties of the parent spin density wave (SDW) phase and the superconducting (SC) phase, as well as the interplay between them. The NaFe l-xCoxAs is an ideal system for resolving these issues due to its rich electronic phases and the charge-neutral cleaved surface. In our recent work, we directly observed the SDW gap in the parent state, and it exhibits unconventional features that are incompatible with the simple Fermi surface nesting picture. The optimally doped sample has a single SC gap, but in the underdoped regime we directly viewed the microscopic coexistence of the SDW and SC orders, which compete with each other. In the overdoped regime we observed a novel pseudogap-like feature that coexists with supercon- ductivity in the ground state, persists well into the normal state, and shows great spatial variations. The rich electronic structures across the phase diagram of NaFel_xCoxAs revealed here shed important new light for defining microscopic models of the iron-based superconductors. In particular, we argue that both the itinerant electrons and local moments should be considered on an equal footing in a realistic model. 展开更多
关键词 iron-based superconductor scanning tunneling microscopy spin-density wave SUPERCONDUCTIVITY
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Graphene/Rh(111) Structure Studied Using In-Situ Scanning Tunneling Microscopy
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作者 董国材 D.V.Baarle +1 位作者 J.Frenken 唐琪雯 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第11期71-73,共3页
Scanning tunnel microscopy (STM) is performed to verify if an Rh 'nails' structure is formed accompanying the graphene growing during chemical vapor deposition. A structure of a graphene island in an Rh vacancy is... Scanning tunnel microscopy (STM) is performed to verify if an Rh 'nails' structure is formed accompanying the graphene growing during chemical vapor deposition. A structure of a graphene island in an Rh vacancy island is used as the start. While the graphene island is removed by oxygenation, the variations of the Rh vacancy island are imaged with an in-situ high-temperature STM. By fitting with our model and calculations, we conclude that the best fit is obtained for 0% Rh, i.e., for the complete absence of nails below graphene on Rh(111). That is, when graphene is formed on Rh(111), the substrate remains fiat and does not develop a SUPPorting nail structure. 展开更多
关键词 Graphene/Rh in is on for of Structure Studied Using In-Situ scanning tunneling microscopy
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Probing the Majorana bound states in a hybrid nanowire double-quantum-dot system by scanning tunneling microscopy
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作者 Jia Liu Ke-Man Li +4 位作者 Feng Chi Zhen-Guo Fu Yue-Fei Hou Zhigang Wang Ping Zhang 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第7期474-480,共7页
We propose an interferometer composing of a scanning tunneling microscope(STM),double quantum dots(DQDs),and a semiconductor nanowire carrying Majorana bound states(MBSs)at its ends induced by the proximity effect of ... We propose an interferometer composing of a scanning tunneling microscope(STM),double quantum dots(DQDs),and a semiconductor nanowire carrying Majorana bound states(MBSs)at its ends induced by the proximity effect of an s-wave superconductor,to probe the existence of the MBSs in the dots.Our results show that when the energy levels of DQDs are aligned to the energy of MBSs,the zero-energy spectral functions of DQDs are always equal to 1/2,which indicates the formation of the MBSs in the DQDs and is also responsible for the zero-bias conductance peak.Our findings suggest that the spectral functions of the DQDs may be an excellent and convenient quantity for detecting the formation and stability of the spatially separated MBSs in quantum dots. 展开更多
关键词 quantum dot scanning tunneling microscopy Majorana bound states
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Molecular Beam Epitaxy Growth and Scanning Tunneling Microscopy Study of Pyrite CuSe2 Films on SrTiO3
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作者 彭俊平 张慧敏 +5 位作者 宋灿立 蒋烨平 王立莉 何珂 薛其坤 马旭村 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第6期180-183,共4页
We perform molecular beam epitaxy growth and scanning tunneling microscopy study of copper diselenide (CuSe2 ) films on SrTiO3 (001). Using a Se-rich condition, the single-phase pyrite CuSe2 grows in the Stranski-... We perform molecular beam epitaxy growth and scanning tunneling microscopy study of copper diselenide (CuSe2 ) films on SrTiO3 (001). Using a Se-rich condition, the single-phase pyrite CuSe2 grows in the Stranski-Krastanov (layer-plus-island) mode with a preferential orientation of (111). Our careful inspection of both the as-grown and post-annealed CuSe2 films at various temperatures invariably shows a Cu-terminated surface, which, depending on the annealing temperature, reconstructs into two distinct structures 2 ×√3 and √x ×√3-R30°. The Cu termi- nation is supported by the depressed density of states near the Fermi level, measured by in-situ low temperature scanning tunneling spectroscopy. Our study helps understand the preparation and surface chemistry of transition metal pyrite dichalcogenides thin films. 展开更多
关键词 Molecular Beam Epitaxy Growth and scanning tunneling microscopy Study of Pyrite CuSe2 Films on SrTiO3 MBE Cu
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Image charge effect on the light emission of rutile TiO2(110) induced by a scanning tunneling microscope
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作者 Chaoyu Guo Xiangzhi Meng +1 位作者 Qin Wang Ying Jiang 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第7期158-162,共5页
The plasmon-enhanced light emission of rutile TiO2(110) surface has been investigated by a low-temperature scanning tunneling microscope (STM). We found that the photon emission arises from the inelastic electron ... The plasmon-enhanced light emission of rutile TiO2(110) surface has been investigated by a low-temperature scanning tunneling microscope (STM). We found that the photon emission arises from the inelastic electron tunneling between the STM tip and the conduction band or defect states of TiO2(110). In contrast to the Au(111) surface, the maximum photon energy as a function of the bias voltage clearly deviates from the linear scaling behavior, suggesting the non-negligible effect of the STM tip on the band structure of TiO2. By performing differential conductance (dl/dV) measurements, it was revealed that such a deviation is not related to the tip-induced band bending, but is attributed to the image charge effect of the metal tip, which significantly shifts the band edges of the TiO2(110) towards the Femi level (EF) during the tunneling process. This work not only sheds new lights onto the understanding of plasmon-enhanced light emission of semiconductor surfaces, but also opens up a new avenue for engineering the plasmon-mediated interfacial charge transfer in molecular and semiconducting materials. 展开更多
关键词 scanning tunneling microscopy light emission TIO2 PLASMON
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Surface solitonic charge distribution on 2D materials investigated using Kelvin probe force microscopy technique based on qplus atomic force microscopy
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作者 Rui Song Feng Hao +2 位作者 Jie Yang Lifeng Yin Jian Shen 《Chinese Physics B》 2025年第5期517-522,共6页
Recently,charged solitons have been found in a two-dimensional CoCl_(2)/HOPG system,whose microscopic nature remains to be elusive.In this work,we investigate the charged solitons in monolayer CoCl_(2) using scanning ... Recently,charged solitons have been found in a two-dimensional CoCl_(2)/HOPG system,whose microscopic nature remains to be elusive.In this work,we investigate the charged solitons in monolayer CoCl_(2) using scanning tunneling microscopy(STM)and atomic force microscopy(AFM).Moreover,we study the electrical properties of the charged solitons at zero electric field by measuring local contact potential difference(LCPD)via Kelvin probe force microscopy(KPFM)using the Δf(V)method.The compensation voltage corresponding to the vertex of the parabola is obtained by fitting the quadratic relationship between Δf and sample bias.The results show that,without an external electric field,the solitons behave as negatively charged entities.Meanwhile,the LCPD mapping characterizes the spatial distribution of the potential at the charged solitons,which agrees well with those obtained from STM band bending measurements. 展开更多
关键词 scanning tunneling microscopy(stm) atomic force microscopy(AFM) Kelvin probe force microscopy(KPFM) cobalt dichloride
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常温大气环境下利用STM研究材料的表面态密度
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作者 华骏杰 张竞予 +4 位作者 李烨 王宇昊 吴明昊 王晓峰 王克东 《物理实验》 2025年第2期57-63,共7页
为使学生直观地理解态密度的物理意义并掌握研究态密度的实验方法,设计适合学生参与的常温大气下测量材料的表面态密度实验.制备具有代表性的样品石墨和金,并用STM分别扫描样品的形貌图和扫描隧道谱.分析石墨和金样品的扫描隧道谱,得到... 为使学生直观地理解态密度的物理意义并掌握研究态密度的实验方法,设计适合学生参与的常温大气下测量材料的表面态密度实验.制备具有代表性的样品石墨和金,并用STM分别扫描样品的形貌图和扫描隧道谱.分析石墨和金样品的扫描隧道谱,得到了半金属和金属的态密度特征;分析在超高真空STM中测试SnSe的扫描隧道谱,得到了典型半导体的态密度特征. 展开更多
关键词 态密度 扫描隧道显微镜 扫描隧道谱
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Observation of mode-like features in tunneling spectra of iron-based superconductors
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作者 巩靖 侯兴元 +6 位作者 朱军 揭云印 谷亚东 沈冰 任聪 李春红 单磊 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第7期28-33,共6页
We report scanning tunneling microscopy/spectroscopy(STM/STS) studies on iron-based superconductors of Ba1-xKxFe2As2 and nearly optimally doped Fe(Te,Se). Mode-like features were observed universally outside the s... We report scanning tunneling microscopy/spectroscopy(STM/STS) studies on iron-based superconductors of Ba1-xKxFe2As2 and nearly optimally doped Fe(Te,Se). Mode-like features were observed universally outside the superconducting gaps in the tunneling spectra, which are similar to our previous observations in other samples and can be ascribed to the interaction between electrons and spin excitations. Furthermore, an almost linear relationship between the superconducting gaps and the superconducting transition temperatures was noted and should also be taken into account in understanding the mechanism of iron-based superconductors. 展开更多
关键词 SUPERCONDUCTOR scanning tunneling microscopy paring mechanism spin excitations
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Enhanced photon emission by field emission resonances and local surface plasmon in tunneling junction
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作者 Jian-Mei Li Dong Hao +4 位作者 Li-Huan Sun Xiang-Qian Tang Yang An Xin-Yan Shan Xing-Hua Lu 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第11期455-459,共5页
We investigated the photon emission spectra on Ag(111)surface excited by tunneling electrons using a low temperature scanning tunneling microscope in ultrahigh vacuum.Characteristic plasmon modes were illustrated as a... We investigated the photon emission spectra on Ag(111)surface excited by tunneling electrons using a low temperature scanning tunneling microscope in ultrahigh vacuum.Characteristic plasmon modes were illustrated as a function of the bias voltage.The one electron excitation process was revealed by the linear relationship between the luminescence intensity and the tunneling current.Luminescence enhancement is observed in the tunneling regime for the relatively high bias voltages,as well as at the field emission resonance with bias voltage increased up to 9 V.Presence of a silver(Ag)nanoparticle in the tunneling junction results in an abnormally strong photon emission at the high field emission resonances,which is explained by the further enhancement due to coupling between the localized surface plasmon and the vacuum.The results are of potential value for applications where ultimate enhancement of photon emission is desired. 展开更多
关键词 scanning tunneling microscopy LUMINESCENCE surface plasmon field emission resonance
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Microscopic growth mechanism and edge states of monolayer 1T'-MoTe_(2)
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作者 赵海鹏 刘隐 +7 位作者 杨胜国 林陈昉 陈明星 Kai Braun 罗心仪 李思宇 潘安练 王笑 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第4期605-611,共7页
Transition metal ditellurides(TMTDs)have versatile physical properties,including non-trivial topology,Weyl semimetal states and unique spin texture.Controlled growth of high-quality and large-scale monolayer TMTDs wit... Transition metal ditellurides(TMTDs)have versatile physical properties,including non-trivial topology,Weyl semimetal states and unique spin texture.Controlled growth of high-quality and large-scale monolayer TMTDs with preferred crystal phases is crucial for their applications.Here,we demonstrate the epitaxial growth of 1T'-MoTe_(2) on Au(111)and graphitized silicon carbide(Gr/SiC)by molecular beam epitaxy(MBE).We investigate the morphology of the grown1T'-MoTe_(2) at the atomic level by scanning tunnelling microscopy(STM)and reveal the corresponding microscopic growth mechanism.It is found that the unique ordered Te structures preferentially deposited on Au(111)regulate the growth of monolayer single crystal 1T'-MoTe_(2),while the Mo clusters were preferentially deposited on the Gr/SiC substrate,which impedes the ordered growth of monolayer MoTe_(2).We confirm that the size of single crystal 1T'-MoTe_(2) grown on Au(111)is nearly two orders of magnitude larger than that on Gr/SiC.By scanning tunnelling spectroscopy(STS),we observe that the STS spectrum of the monolayer 1T'-MoTe_(2) nano-island at the edge is different from that at the interior,which exhibits enhanced conductivity. 展开更多
关键词 transition metal ditellurides 1T'-MoTe_(2) microscopic growth mechanism scanning tunneling microscopy/spectroscopy(stm/S)
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Raman-STM联用系统及其初步实验 被引量:6
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作者 田中群 李五湖 +6 位作者 穆纪千 毛秉伟 卓向东 王铎 颜恩柔 郑炜 陈捷光 《物理化学学报》 SCIE CAS CSCD 北大核心 1994年第12期1062-1065,共4页
A combined system of Raman spectroscopy and STM has been set up, which enables the two techniques to in-situ study electrochemical interfaces simultaneously, An optical fiber head carrying one excitation fiber and fiv... A combined system of Raman spectroscopy and STM has been set up, which enables the two techniques to in-situ study electrochemical interfaces simultaneously, An optical fiber head carrying one excitation fiber and five collection fibers can be adjusted to approach to an advanced originally designed STM unit so that the STM tip above the sample electrode are surrounded by the sir fibers. The strong thermal interface by the laser illumination was avoided with the short acquisition time for SERS measurements by using optical multichannel analyzer. In-situ SERS spectrum of SCN- adsorbed on Ag electrode surface has been simultaneously recorded during STM imaging. The STM imaging taken before, during and after the SERS measurements have drifted from each other within 5%, which shows that the combined system is of satisfied over all stability. 展开更多
关键词 R-S联用系统 散射谱 固液界面 电化学
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铂电极在氯化钾溶液中电化学行为的STM和EMUV/VRS方法研究 被引量:3
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作者 罗瑾 林仲华 田昭武 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 1992年第5期662-665,共4页
用电化学现场扫描遂道显微镜(in situ STM)和电化学调制紫外可见反射光谱(EMUV/VRS)技术研究了铂电极在KCl溶液中的电化学行为, 结果表明,在KCl溶液中,Pt电极阳极氧化/阴极还原过程为阳极溶解/阴极沉积过程,阳极溶解可能经历吸附的Cl^-... 用电化学现场扫描遂道显微镜(in situ STM)和电化学调制紫外可见反射光谱(EMUV/VRS)技术研究了铂电极在KCl溶液中的电化学行为, 结果表明,在KCl溶液中,Pt电极阳极氧化/阴极还原过程为阳极溶解/阴极沉积过程,阳极溶解可能经历吸附的Cl^-离子与Pt表面原子生成表面铂氯化物步骤,实验表明STM比EMUV/VRS具有更高的空间分辨率。 展开更多
关键词 氯化钾 电反射谱 stm EMUV/VRS
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粘胶基碳纤维表面结构的STM研究 被引量:2
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作者 吴琪琳 胡杨 潘鼎 《化学研究与应用》 CAS CSCD 北大核心 2002年第2期171-173,共3页
本文建立了用具有原子级分辨能力的扫描隧道显微镜 (STM)研究粘胶基碳纤维 (RCF)表面结构的方法。在较大尺度的STM图像上 ,RCF表面显得很粗糙 ,“峰”和“谷”的特征非常明显。增大放大率时 ,发现了约10nm宽的条状结构 ,其排列与纤维轴... 本文建立了用具有原子级分辨能力的扫描隧道显微镜 (STM)研究粘胶基碳纤维 (RCF)表面结构的方法。在较大尺度的STM图像上 ,RCF表面显得很粗糙 ,“峰”和“谷”的特征非常明显。增大放大率时 ,发现了约10nm宽的条状结构 ,其排列与纤维轴成一定角度 (45°~ 90°)。首次获得了RCF原子级的STM图像 ,在原子级尺度上 ,其原子排列并不规则 ,相邻原子间距为 0 .14 2nm ,最近六元环中心的距离是 0 .2 5 3nm。与高定向降解石墨 (HOPG) 展开更多
关键词 扫描隧道显微镜 粘胶基碳纤维 表面结构 stm
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四氮杂杯[2]芳烃[2]三嗪衍生物在Au(111)表面的自组装结构的电化学STM研究 被引量:4
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作者 陈婷 严会娟 +3 位作者 潘革波 万立骏 王其强 王梅祥 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2008年第1期113-116,共4页
利用电化学扫描隧道显微镜和循环伏安法研究了一种新型的杂杯杂芳烃四氮杂杯[2]芳烃[2]三嗪衍生物在Au(111)表面的自组装结构.高分辨的STM图像表明,该杂杯杂芳烃可以在Au(111)表面形成长程有序的单层膜.此外,分子以1,3-交替构象吸附,两... 利用电化学扫描隧道显微镜和循环伏安法研究了一种新型的杂杯杂芳烃四氮杂杯[2]芳烃[2]三嗪衍生物在Au(111)表面的自组装结构.高分辨的STM图像表明,该杂杯杂芳烃可以在Au(111)表面形成长程有序的单层膜.此外,分子以1,3-交替构象吸附,两个三嗪环平躺在表面,而苯环倾斜吸附在基底上,这是分子间与分子-基底间相互作用平衡的结果. 展开更多
关键词 扫描隧道显微术 循环伏安法 杂杯杂芳烃 自组装
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异代酯基枝状分子表面组装及结构转化机理的STM研究 被引量:1
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作者 张旭 冯宇 +1 位作者 范青华 万立骏 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2009年第12期2424-2428,共5页
利用扫描隧道显微技术(STM)研究了3种异代酯基Janus枝状分子(G1G2COOCH3,G0G3COOCH3,G1G3COOCH3)在高定向裂解石墨(HOPG)表面的组装结构.室温下,G1G2COOCH3,G0G3COOCH3和G1G3COOCH3分别在表面形成有序、局部有序及无序结构.将样品加热... 利用扫描隧道显微技术(STM)研究了3种异代酯基Janus枝状分子(G1G2COOCH3,G0G3COOCH3,G1G3COOCH3)在高定向裂解石墨(HOPG)表面的组装结构.室温下,G1G2COOCH3,G0G3COOCH3和G1G3COOCH3分别在表面形成有序、局部有序及无序结构.将样品加热至60~80℃后,表面无序结构可以转化为有序的二聚体密堆积结构.实验结果表明,随着枝状分子代数的增加,分子之间及分子与基底之间作用力增强,室温下分子组装行为更依赖于分子吸附动力学过程,组装结构趋于无序化,而加热可以增强枝状分子在表面的活动性,调整分子的位置关系,使表面无序结构转化为热力学稳定的有序二聚体密堆积组装结构. 展开更多
关键词 Janus枝状分子 自组装 结构转化 扫描隧道显微术
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