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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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A Highly Stable Electrochemical Scanning Tunneling Microscope 被引量:1
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作者 夏志刚 王纪浩 +1 位作者 侯玉斌 陆轻铀 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2015年第1期70-72,I0002,共4页
We demonstrate a home-built electrochemical scanning tunneling microscope (ECSTM). The ECSTM exhibits highly stable performance. The drifting rates in XY and Z directions of the ECSTM are about 67 and 55.6 pm/min, r... We demonstrate a home-built electrochemical scanning tunneling microscope (ECSTM). The ECSTM exhibits highly stable performance. The drifting rates in XY and Z directions of the ECSTM are about 67 and 55.6 pm/min, respectively. Moreover, a specially designed scanner unit successfully solves the well-known problem of large leakage current in high humidity atmosphere. The mechanical structure of the ECSTM is described in detail. The excellent performances of the system are demonstrated by the measured STM images (in copper sulfate solution), including clean and well-ordered large area morphology of Au(111) and the atomically resolved image of highly oriented pyrolytic graphite. 展开更多
关键词 scanning tunneling microscope ELECTROCHEMISTRY Highly stable
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Compact Scanning Tunneling Microscope with Large Scale Searching Capability for Mmultidisciplinary Applications
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作者 孟文杰 王琦 +2 位作者 张晶 侯玉斌 陆轻铀 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2016年第5期523-526,I0001,共5页
We present the design and performance of a home-built scanning tunneling microscope (STM), which is compact (66 mm tall and 25 mm in diameter), yet equipped with a 3D atomic precision piezoelectric motor in which ... We present the design and performance of a home-built scanning tunneling microscope (STM), which is compact (66 mm tall and 25 mm in diameter), yet equipped with a 3D atomic precision piezoelectric motor in which the Z coarse approach relies on a high simplic-ity friction-type walker (of our own invention) driven by an axially cut piezoelectric tube. The walker is vertically inserted in a piezoelectric scanner tube (PST) with its brim laying at on the PST end as the inertial slider (driven by the PST) for the XZ (sample plane) motion. The STM is designed to be capable of searching rare microscopic targets (defects, dopants, boundaries, nano-devices, etc.) in a macroscopic sample area (square millimeters) under extreme conditions (low temperatures, strong magnetic elds, etc.) in which it ts. It gives good atomic resolution images after scanning a highly oriented pyrolytic graphite sample in air at room temperature. 展开更多
关键词 scanning tunneling microscope Large scale searching Air stm Electrochemical stm
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A Simple,Compact and Rigid Scanning Tunneling Microscope 被引量:1
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作者 Wei-feng Ge Ji-hao Wang +1 位作者 Yu-bin Hou Qing-you Lu 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2018年第5期731-734,736,共5页
We present a homebuilt scanning tunneling microscope(STM)which employs an inner-wall polished sapphire guiding tube as a rail for the scanner to form a short tip-sample mechanical loop.The scanner is mounted on a squa... We present a homebuilt scanning tunneling microscope(STM)which employs an inner-wall polished sapphire guiding tube as a rail for the scanner to form a short tip-sample mechanical loop.The scanner is mounted on a square rod which is housed in the guiding tube and held by a spring strip.The stiff sapphire guiding tube allows the STM body to be made in a simple,compact and rigid form.Also the material of sapphire improves the thermal stability of the STM for its good thermal conductivity.To demonstrate the performance of the STM,high quality atomic-resolution STM images of high oriented pyrolytic graphite were given. 展开更多
关键词 scanning tunneling microscope Sapphire guiding tube Finite element analyses Atomic-resolution image
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Vibration Compensation for Scanning Tunneling Microscope 被引量:1
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作者 LI Meng chao, FU Xing, WEI Xiao lei, HU Xiao tang (State Key Lab.of Precision Measurement Technology and Instrument, Tianjin University,Tianjin 300072, CHN) 《Semiconductor Photonics and Technology》 CAS 2003年第4期230-233,共4页
The influence of vibration is already one of main obstacles for improving the nano measuring accuracy.The techniques of anti-vibration,vibration isolation and vibration compensation become an important branch in nano ... The influence of vibration is already one of main obstacles for improving the nano measuring accuracy.The techniques of anti-vibration,vibration isolation and vibration compensation become an important branch in nano measuring field.Starting with the research of sensitivity to vibration of scanning tunneling microscope(STM),the theory,techniques and realization methods of nano vibration sensor based on tunnel effect are initially investigated,followed by developing the experimental devices.The experiments of the vibration detection and vibration compensation are carried out.The experimental results show that vibration sensor based on tunnel effect is characterized by high sensitivity,good frequency characteristic and the same vibratory response characteristic consistent with STM. 展开更多
关键词 Nano vibration sensor scanning tunneling microscope(stm) tunnel effect Vibration compensation
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Full Quantum Theory of Molecular Hot-Electroluminescence in Scanning Tunneling Microscope Tunnel Junctions
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作者 Gong Chen Xiao-guang Li Zhen-chao Dong 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2015年第5期-,共5页
关键词 scanning tunneling microscope induced luminescence Master equation Surface plasmon Hot-electroluminescence
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BAINITE STRUCTURE IN Cu-Zn-Al ALLOY OBSERVED BY SCANNING TUNNELING MICROSCOPE
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作者 Li Chunming Fang Hongsheng +1 位作者 Feng Qingling Zheng Yankang(Department of Material Science and Engineering, Tsinghua Universitg,Beijing 100084)Yan, Junjue(Beijing universitg,Beijing,100871)Abstact:The bainite structurc in a Cu-25.9Zn-4.0Al-0.1Re (wt.-%) allo 《中国有色金属学会会刊:英文版》 CSCD 1994年第4期87-90,共4页
BAINITESTRUCTUREINCu-Zn-AlALLOYOBSERVEDBYSCANNINGTUNNELINGMICROSCOPE¥LiChunming;FangHongsheng;FengQingling;Z... BAINITESTRUCTUREINCu-Zn-AlALLOYOBSERVEDBYSCANNINGTUNNELINGMICROSCOPE¥LiChunming;FangHongsheng;FengQingling;ZhengYankang(Depar... 展开更多
关键词 CU-ZN-AL ALLOY scanning tunneling microscope BAINITE subunit
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Scanning Tunneling Microscopic and Scanning Tunneling Spectroscopic Studies of Nanocrystalline CdSe Thin Film 被引量:1
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作者 Yuan LIN Rui Feng LIN +2 位作者 Xiao Wen Zhou Jing Bo Zhang Xu Rui Xiao(Institute of Photographic Chemistry, The Chinese Academy of Sciences, Bejing,100101) 《Chinese Chemical Letters》 SCIE CAS CSCD 1997年第9期831-832,共2页
Nanocrystalline CdSe thin film prepared by chemical solution deposition was imaged in air with a scanning tunnelling microscope(STM). Scanning tunnelling current spectroscopy(STS) was taken at a fixed tip - sample sep... Nanocrystalline CdSe thin film prepared by chemical solution deposition was imaged in air with a scanning tunnelling microscope(STM). Scanning tunnelling current spectroscopy(STS) was taken at a fixed tip - sample separation. Tunnelling current(i) - voltage(v) curve and differential conductance spectrum show an n-type schottky rectifying behaviour and yield a direct measure of band gap energy. An increase of bandgap energy (1.8 - 2.1eV) was measured indicating energy quantization of this particular thin film., 展开更多
关键词 Thin CDSE scanning tunneling microscopic and scanning tunneling Spectroscopic Studies of Nanocrystalline CdSe Thin Film
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Scanning tunnelling microscope studies of growth of RuO2(110) thin layer on Ru(0001)
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作者 张寒洁 吕斌 +4 位作者 陆赟豪 黄寒 李海洋 鲍世宁 何丕模 《Chinese Physics B》 SCIE EI CAS CSCD 2006年第8期1892-1895,共4页
This paper reports that the growth of RuO2(110) thin layer growth on Ru(0001) has been investigated by means of scanning tunnelling microscope (STM). The STM images showed a domain structure with three rotationa... This paper reports that the growth of RuO2(110) thin layer growth on Ru(0001) has been investigated by means of scanning tunnelling microscope (STM). The STM images showed a domain structure with three rotational domains of RuO2(110) rotated by an angle of 120°. The as-grown RuO2(110) thin layer is expanded from the bulk-truncated RuO2(110) due to the large mismatch between RuO2(110) and the Ru(0001) substrate. The results also indicate that growth of RuO2(110) thin layer on the Ru(0001) substrate by oxidation tends first to formation of the Ru-O (oxygen) chains in the [001] direction of RuO2 (110). 展开更多
关键词 ruthenium oxide GROWTH scanning tunnelling microscope
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FABRICATION OF THE TIP FOR ELECTROCHEMICAL SCANNING TUNNELING MICROSCOPY
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作者 Zhen Fang CHEN Er Kang WANG +2 位作者 Jun En YAO Jun WEI Song GAO 《Chinese Chemical Letters》 SCIE CAS CSCD 1992年第10期845-848,共4页
A nover technique for the fabrication of the tip for e tectrochemical scanning tunneting microscopy(ECSTM)is presented. The curvature radius of the fabricated tip is smatter than 1 μM. Faradaic leakage current is tes... A nover technique for the fabrication of the tip for e tectrochemical scanning tunneting microscopy(ECSTM)is presented. The curvature radius of the fabricated tip is smatter than 1 μM. Faradaic leakage current is tess than 0.1nA in the sotution of 1 mol/L NaCl. The atomic image of highty oriented pyrotytic graphite (HOPG)has been taken using the prepared tip. 展开更多
关键词 stm FABRICATION OF THE TIP FOR ELECTROCHEMICAL scanning tunneling microscopY HOPG PT
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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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Combining scanning tunneling microscope (STM) imaging and local manipulation to probe the high dose oxidation structure of the Si(111)-7×7 surface
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作者 Dogan Kaya Richard J.Cobley Richard E.Palmer 《Nano Research》 SCIE EI CAS CSCD 2020年第1期145-150,共6页
Understanding the atomistic formation of oxide layers on semiconductors is important for thin film fabrication,scaling down conventional devices and for the integration of emerging research materials.Here,the initial ... Understanding the atomistic formation of oxide layers on semiconductors is important for thin film fabrication,scaling down conventional devices and for the integration of emerging research materials.Here,the initial oxidation of Si(111)is studied using the scanning tunneling microscope.Prior to the complete saturation of the silicon surface with oxygen,we are able to probe the atomic nature of the oxide layer formation.We establish the threshold for local manipulation of inserted oxygen sites to be+3.8 V.Only by combining imaging with local atomic manipulation are we able to determine whether inserted oxygen exists beneath surface-bonded oxygen sites and differentiate between sites that have one and more than one oxygen atom inserted beneath the surface.Prior to the creation of the thin oxide film we observe a flip in the manipulation rates of inserted oxygen sites consistent with more oxygen inserting beneath the silicon surface. 展开更多
关键词 scanning tunneling microscopy(stm) local manipulation SI(111) oxidation
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Tunneling Electron Induced Fluorescence from Single Porphyrin Molecules Decoupled by Striped-Phase Octanethiol Self-assembled Monolayer
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作者 邝艳敏 郁杰 +4 位作者 骆阳 朱嘉哲 廖源 张杨 董振超 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2016年第2期157-160,I0001,共5页
We investigate tunneling electron induced luminescence from isolated single porphyrin molecules that are decoupled by striped-phase self-assembled monolayer of octanethiol from the underneath Au(111) substrate. Intr... We investigate tunneling electron induced luminescence from isolated single porphyrin molecules that are decoupled by striped-phase self-assembled monolayer of octanethiol from the underneath Au(111) substrate. Intrinsic single-molecule electroluminescence has been realized by such decoupling at both bias polarities. The photon emission intensity acquired from the molecular lobe is found stronger than that from the molecular center. These re- sults provide useful information on the understanding of electroluminescent behavior and mechanism in molecular tunnel junctions. 展开更多
关键词 scanning tunneling microscope induced luminescence PLASMONICS PORPHYRIN Octanethiol Self-assembled monolayer Striped-phase
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Direct Imaging of Molecular Orbitals of Metal Phthalocyanines on Metal Surfaces with an O2-Functionalized Tip of a Scanning Tunneling Microscope 被引量:1
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作者 Zhihai Cheng Shixuan Du +6 位作者 Wei Guo Li Gao Zhitao Deng Nan Jiang Haiming Guo Hao Tang H. J. Gao 《Nano Research》 SCIE EI CAS CSCD 2011年第6期523-530,共8页
High-resolution scanning tunneling microscope images of iron phthalocyanine and zinc phthalocyanine molecules on Au(111) have been obtained using a functionalized tip of a scanning tunneling microscope (STM), and ... High-resolution scanning tunneling microscope images of iron phthalocyanine and zinc phthalocyanine molecules on Au(111) have been obtained using a functionalized tip of a scanning tunneling microscope (STM), and show rich intramolecular features that are not observed using clean tips. Ab initio density functional theory calculations and extended Huckel theory calculations revealed that the imaging of detailed electronic states is due specifically to the decoration of the STM tip with O2. The detailed structures are differentiated only when interacting with the highly directional orbitals of the oxygen molecules adsorbed on a truncated, [111]-oriented tungsten tip. Our results indicate a method for increasing the resolution in generic scans and thus, have potential applications in fundamental research based on high-resolution electronic states of molecules on metals, concerning, for example, chemical reactions, and catalysis mechanisms. 展开更多
关键词 High-resolution scanning tunneling microscope (stm imaging functionalized stm tip metal phthalocyanines molecular orbital density functional theory calculation
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Heisenberg, uncertainty, and the scanning tunneling microscope 被引量:2
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作者 Werner A. Hofer (1) 《Frontiers of physics》 SCIE CSCD 2012年第2期218-222,共5页
We show by a statistical analysis of high-resolution scanning tunneling microscopy (STM) exper- iments, that the interpretation of the density of electron charge as a statistical quantity leads to a conflict with th... We show by a statistical analysis of high-resolution scanning tunneling microscopy (STM) exper- iments, that the interpretation of the density of electron charge as a statistical quantity leads to a conflict with the Heisenberg uncertainty principle. Given the precision in these experiments we find that the uncertainty principle would be violated by close to two orders of magnitude, if this interpretation were correct. We are thus forced to conclude that the density of electron charge is a physically real, i.e., in principle precisely measurable quantity. 展开更多
关键词 scanning tunneling microscope electron charge density functional theory uncertaintyrelations
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Role of Nanocavity Plasmons in Tunneling Electron Induced Light Emission on and near a Molecule 被引量:1
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作者 Hui-fang Wang Gong Chen +1 位作者 Xiao-guang Li Zhen-chao Dong 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2018年第3期263-268,367,共7页
By using a microscopic quantum model, we study theoretically different roles of nanocavity plasmons in scanning tunneling microscope(STM) induced light emission upon selective initial excitation of molecules or plasmo... By using a microscopic quantum model, we study theoretically different roles of nanocavity plasmons in scanning tunneling microscope(STM) induced light emission upon selective initial excitation of molecules or plasmons. The time evolution and spectroscopic properties of the emission from the coupled plasmon-molecule system in each case are studied using time-dependent quantum mater equations. When the STM tip is placed on the molecule to ensure direct carrier injection induced molecular excitation, the major role of the plasmons is to enhance the molecular emission via increasing its radiative decay rate, resulting in sharp molecule-specific emission peaks. On the other hand, when the STM tip is located in close proximity to the edge of the molecule but without direct carrier injection into the molecule, the role of the plasmon-molecule coupling is to cause destructive interferences between the two quantum objects, leading to the occurrence of Fano dips around the energy of the molecular exciton in the plasmonic emission spectra. 展开更多
关键词 scanning tunneling microscope INDUCED luminescence PLASMON enhanced spec-troscopy Fano resonance Quantum master equation
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Scanning Tunneling Microscope Observations of Non-AB Stacking of Graphene on Ni Films 被引量:1
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作者 Ruiqi Zhao Yanfeng Zhang +4 位作者 Teng Gao Yabo Gao Nan Liu Lei Fu Zhongfan Liu 《Nano Research》 SCIE EI CAS CSCD 2011年第7期712-721,共10页
Microscopic features of graphene segregated on Ni films prior to chemical transfer--including atomic structures of monolayers and bilayers, Moire patterns due to non-AB stacking, as well as wrinkles and ripples caused... Microscopic features of graphene segregated on Ni films prior to chemical transfer--including atomic structures of monolayers and bilayers, Moire patterns due to non-AB stacking, as well as wrinkles and ripples caused by strain effects-have been characterized in detail by high-resolution scanning tunneling microscopy (STM). We found that the stacking geometry of the bilayer graphene usually deviates from the traditional Bernal stacking (or so-called AB stacking), resulting in the formation of a variety of Moir6 patterns. The relative rotations inside the bilayer were then qualitatively deduced from the relationship between Moir6 patterns and carbon lattices. Moreover, we found that typical defects such as wrinkles and ripples tend to evolve around multi-step boundaries of Ni, thus reflecting strong perturbations from substrate corrugations. These investigations of the morphology and the mechanism of formation of wrinkles and ripples are fundamental topics in graphene research. This work is expected to contribute to the exploration of electronic and transport properties of wrinkles and ripples. 展开更多
关键词 GRAPHENE scanning tunneling microscopy (stm SEGREGATION Moire pattern growth
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VARIANT STRUCTURES OF DNA OBSERVED BY SCANNING TUNNELING MICROSCOPE
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作者 白春礼 叶坚 +4 位作者 龚立三 戴长春 王大文 高凡 顾建国 《Chinese Science Bulletin》 SCIE EI CAS 1991年第4期345-347,共3页
Deoxyribonucleic acid (DNA), as the essential genetic substance in life process, may undergo structural changes in various environments. For instance, the unwinding of the original double helix of DNA could occur afte... Deoxyribonucleic acid (DNA), as the essential genetic substance in life process, may undergo structural changes in various environments. For instance, the unwinding of the original double helix of DNA could occur after being heated. 展开更多
关键词 DNA structure triple-stranded DNA scanning tunneling microscope.
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Isolated supramolecules on surfaces studied with scanning tunneling microscopy 被引量:1
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作者 Chao Xie Qi-Meng Wu +8 位作者 Ruo-Ning Li Gao-Chen Gu Xue Zhang Na Li Richard Berndt Jorg Kroger Zi-Yong Shen Shi-Min Hou Yong-Feng Wang 《Chinese Chemical Letters》 SCIE CAS CSCD 2016年第6期807-812,共6页
To date, supramolecular chemistry is an ever growing research field owing to its crucial role in molecular catalysis, recognition, medicine, data storage and processing as well as artificial photosynthetic devices.Dif... To date, supramolecular chemistry is an ever growing research field owing to its crucial role in molecular catalysis, recognition, medicine, data storage and processing as well as artificial photosynthetic devices.Different isolated supramolecules were prepared by molecular self-assembly on surfaces. This review mainly focuses on supramolecular aggregations on noble metal surfaces studied by scanning tunneling microscopy, including dimers, trimers, tetramers, pentamers, wire-like assemblies and Sierpin′ ski triangular fractals. The variety of self-assembled structures reflects the subtle balance between intermolecular and molecule–substrate interactions, which to some extent may be controlled by molecules, substrates and the molecular coverage. The comparative study of different architectures helps identifying the operative mechanisms that lead to the structural motifs. The application of these mechanisms may lead to novel assemblies with tailored physicochemical properties. 展开更多
关键词 Supramolecular aggregations scanning tunneling microscope(stm) Weak interactions SELF-ASSEMBLY FRACTAL Sierpinski triangle
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Measuring fine molecular structures with luminescence signal from an alternating current scanning tunneling microscope
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作者 Fei Wen Guohui Dong Hui Dong 《Communications in Theoretical Physics》 SCIE CAS CSCD 2022年第12期52-61,共10页
In scanning tunneling microscopy-induced luminescence(STML),the photon count is measured to reflect single-molecule properties,e.g.,the first molecular excited state.The energy of the first excited state is typically ... In scanning tunneling microscopy-induced luminescence(STML),the photon count is measured to reflect single-molecule properties,e.g.,the first molecular excited state.The energy of the first excited state is typically shown by a rise of the photon count as a function of the bias voltage between the tip and the substrate.It remains a challenge to determine the precise rise position of the current due to possible experimental noise.In this work,we propose an alternating current version of STML to resolve the fine structures in the photon count measurement.The measured photon count and the current at the long-time limit show a sinusoidal oscillation.The zero-frequency component of the current shows knee points at the precise voltage as the fraction of the detuning between the molecular gap and the DC component of the bias voltage.We propose to measure the energy level with discontinuity of the first derivative of such a zero-frequency component.The current method will extend the application of STML in terms of measuring molecular properties. 展开更多
关键词 alternating current scanning tunneling microscope inelastic electron scattering single-molecule electroluminescence molecular energy levels
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