Advances in Nanoparticles

Advances in Nanoparticles

ISSN Print: 2169-0510
ISSN Online: 2169-0529
www.scirp.org/journal/anp
E-mail: anp@scirp.org
"Synthesis of Ag/Ag2S Nanoclusters Resistive Switches for Memory Cells"
written by Aleksey Nikolaevich Belov, Olga Veniaminovna Pyatilova, Maksim Igorevich Vorobiev,
published by Advances in Nanoparticles, Vol.3 No.1, 2014
has been cited by the following article(s):
  • Google Scholar
  • CrossRef
[1] Polymorphic Phase Transformations in Nanocrystalline Ag2S Silver Sulfide in a Wide Temperature Interval and Influence of Nanostructured Ag2S on the Interface Formation in …
Nanomaterials, 2022
[2] Neuromorphic Computing with Self-Assembled Resistive Switching Nanocomposites.
2021
[3] Nonstoichiometry, structure and properties of nanocrystalline oxides, carbides and sulfides
2021
[4] Vibrational and conductive microscopic investigation of thermal dewetting in Ag-As-S chalcogenide thin films
2021
[5] Нестехиометрия, структура и свойства нанокристаллических оксидов, карбидов и сульфидов
2021
[6] Naturally occurring van der Waals heterostructure lengenbachite with strong in-plane structural and optical anisotropy
npj 2D Materials and Applications, 2021
[7] Isosymmetric phase transitions, ultrahigh ductility, and topological nodal lines in
2020
[8] Synthesis of Ag 2 S colloidal solutions in D 2 O heavy water
2020
[9] Thermal stability and recrystallization of semiconductor nanostructured sulfides and sulfide solid solutions
2019
[10] Advances in resistive switching based memory devices
2019
[11] Orientation Relationships upon the Structural Transformation of Monoclinic and Cubic Phases in Silver Sulfide
2019
[12] Ориентационные соотношения при структурном превращении моноклинной и кубической фаз в сульфиде серебра
2019
[13] АТОМНЫЕ СМЕЩЕНИЯ ПРИ ФАЗОВОМ α–β-ПЕРЕХОДЕ
ЖЭТФ, 2019
[14] Atomic Displacements in the α–β Phase Transition in Ag2S and in Ag2S/Ag Heterostructure
2019
[15] АТОМНЫЕ СМЕЩЕНИЯ ПРИ ФАЗОВОМ α-β-ПЕРЕХОДЕ В Ag2S И ГЕТЕРОСТРУКТУРЕ Ag2S/Ag
2019
[16] Определение области термической стабильности размера и фазового состава наночастиц полупроводникового сульфида серебра
2018
[17] Determination of the Region of Thermal Stability of the Size and Phase Composition of Silver-Sulfide Semiconductor Nanoparticles
2018
[18] Наноструктурированный сульфид серебра: синтез разных форм и применение
2018
[19] Micro-Raman Spectroscopy of Nanostructured Silver Sulfide
Doklady Physical Chemistry, 2018
[20] Thermal stability of nanoparticle size and phase composition of nanostructured Ag2S silver sulfide
Journal of Alloys and Compounds, 2018
[21] Nanostructured silver sulfide: synthesis of various forms and their application
Russian Chemical Reviews, 2018
[22] Effect of small size of particles on thermal expansion and heat capacity of Ag2S silver sulfide
Thermochimica Acta, 2018
[23] Nanostructured Silver Sulfide Ag2S
Nanostructured Lead, Cadmium, and Silver Sulfides, 2018
[24] МИКРОСПЕКТРОСКОПИЯ КОМБИНАЦИОННОГО РАССЕЯНИЯ СВЕТА НАНОСТРУКТУРИРОВАННЫМ СУЛЬФИДОМ СЕРЕБРА
2018
[25] AgS/Ag heteronanostructure.
2017
[26] Recent progress in nanostructured silver sulfide: from synthesis and nonstoichiometry to properties
Journal of Materials Chemistry A, 2017
[27] Nanostructured Lead, Cadmium, and Silver Sulfides
Springer Series in Materials Science book series, 2017
[28] Гетеронаноструктура AgS/Ag
2017
[29] Structure and properties of nanoscale Ag 2 S/Ag heterostructure
Materials Letters, 2017
[30] Ag2S/Ag heteronanostructure
JETP Letters, 2017
[31] Structure and properties of nanoscale Ag2S/Ag heterostructure
Materials Letters, 2017
[32] Optical Properties of Doped Silver Sulfide Nanoparticles
Thesis, 2017
[33] Facile synthesis, structure, and properties of Ag 2 S/Ag heteronanostructure
2016
[34] Acanthite–argentite transformation in nanocrystalline silver sulfide and the Ag 2 S/Ag nanoheterostructure
2016
[35] Structure and properties of Ag2S/Ag semiconductor/metal heteronanostructure.
2016
[36] Nano-Structures & Nano-Objects
2016
[37] Structure and properties of Ag 2 S/Ag semiconductor/metal heteronanostructure.
Biointerface Research in Applied Chemistry, 2016
[38] Electrical properties and transport mechanisms in Ge-Sb-Te thin films
2016
[39] Influence of indium doping on the electrical properties of Ge2Sb2Te5 thin films for nonvolatile phase change memory devices
Journal of Physics: Conference Series, 2016
[40] High-temperature X-ray diffraction and thermal expansion of nanocrystalline and coarse-crystalline acanthite α-Ag 2 S and argentite β-Ag 2 S
Physical Chemistry Chemical Physics, 2016
[41] Превращение акантит− аргентит в нанокристаллическом сульфиде серебра и наногетероструктура Ag2S/Ag
2016
[42] Acanthite–argentite transformation in nanocrystalline silver sulfide and the Ag2S/Ag nanoheterostructure
Semiconductors, 2016
[43] Ag 2 S silver sulfide nanoparticles and colloidal solutions: Synthesis and properties
Nano-Structures & Nano-Objects, 2016
[44] Universal Approach to the Synthesis of Silver Sulfide in the Forms of Nanopowders, Quantum Dots, Core‐Shell Nanoparticles, and Heteronanostructures
European Journal of Inorganic Chemistry, 2016
[45] Facile synthesis, structure, and properties of Ag2S/Ag heteronanostructure
Journal of Nanoparticle Research, 2016
[46] High-temperature X-ray diffraction and thermal expansion of nanocrystalline and coarse-crystalline acanthite α-Ag2S and argentite β-Ag2S
Physical Chemistry Chemical Physics, 2016
[47] Ag2S silver sulfide nanoparticles and colloidal solutions: Synthesis and properties
Nano-Structures & Nano-Objects, 2016
[48] Structure and properties of Ag2S/Ag semiconductor/metal heteronanostructure
2016
[49] Facile synthesis of Ag2S nanoparticles functionalized by carbon-containing citrate shell
Chemical Physics Letters, 2015
[50] Facile synthesis of Ag 2 S nanoparticles functionalized by carbon-containing citrate shell
Chemical Physics Letters, 2015
Free SCIRP Newsletters
Copyright © 2006-2024 Scientific Research Publishing Inc. All Rights Reserved.
Top