Application of metallic inks based on nickel-silver core–shell nanoparticles for fabrication of conductive films
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Summary
The oxidation resistance of the Ag layer and the conductive properties of the Ni core allowed the use of nickel-silver core-shell (Ni@Ag) NPs as the component of conductive ink.
- Type
- article
- Published
- 2019-03-18
- Cited by
- 23
- References
- 34
- Access
- Open access
- OpenAlex
- https://openalex.org/W30721883
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:73450132
Keywords
Medicine
References
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- Inkjet printing of conductive materials: a review
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- An ultra-lightweight design for imperceptible plastic electronics
- Preparation of nickel–silver core–shell nanoparticles by liquid-phase reduction for use in conductive paste
- Size effect on the melting temperature of gold particles
- Properties of Core−Shell Ni−Au Nanoparticles Synthesized through a Redox-Transmetalation Method in Reverse Microemulsion
- Formation of air-stable copper–silver core–shell nanoparticles for inkjet printing
- Conductive nanomaterials for printed electronics.
- Conductive patterns on plastic substrates by sequential inkjet printing of silver nanoparticles and electrolyte sintering solutions
- Ink‐Jet Printing of Metallic Nanoparticles and Microemulsions
- Metal-based Inkjet Inks for Printed Electronics
- Preparation of nascent molecular electronic devices from gold nanoparticles and terminal alkyne functionalised monolayer films
- Sintering of Advanced Materials
- Air stable copper-silver core-shell submicron particles: Synthesis and conductive ink formulation
- The optimization of methods of synthesis of nickel–silver core–shell nanoparticles for conductive materials
- Metallic Nanoinks for Inkjet Printing of Conductive 2D and 3D Structures
- Inkjet Printing of Interconnects and Contacts Based on Inorganic Nanoparticles for Printed Electronic Applications
Cited by
- Flexible and wearable healthcare sensors for visual reality health-monitoring
- The conductive properties of ink coating based on Ni–Ag core–shell nanoparticles with the bimodal size distribution
- Metal Nanoparticles Formation from Nickel Hydroxide
- Nanocomposite Inks Based on Nickel–Silver Core–Shell and Silver Nanoparticles for Fabrication Conductive Coatings at Low-Temperature Sintering
- Recent Advancement of Emerging Nano Copper-Based Printable Flexible Hybrid Electronics.
- Polydispersity vs. Monodispersity. How the Properties of Ni-Ag Core-Shell Nanoparticles Affect the Conductivity of Ink Coatings
- Preparation of paper-based conductive pattern for 3D printing
- Preparation and application of water-based nano-silver conductive ink in paper-based 3D printing
- Metallic core-shell nanoparticles for conductive coatings and printing.
- Effect of Oxalic Acid Treatment on Conductive Coatings Formed by Ni@Ag Core–Shell Nanoparticles
- A nickel metal-organic-decomposition ink of nickel-ethanolamine complex leading to highly conductive nickel patterns for printed electronic applications
- Sintering mechanism of size-controllable Cu-Ag core-shell nanoparticles for flexible conductive film with high conductivity, antioxidation, and electrochemical migration resistance
- On the lifetimes of two-dimensional droplets on smooth wetting patterns
- Exploration of Novel Nickel Metal Organic Decomposition Inks
- “Assessing exposure of printing factory workers in thailand to selected heavy metals using urine and hair as non-invasive matrices”
- Study the Growth Mechanism of AgNi Nanoparticles by Surface Diffusion
- Formulating nickel metal organic decomposition ink with low sintering temperature and high conductivity for ink jet printing applications
- One Pot Synthesis, Surface, and Magnetic Properties of Ni–NiO@C Nanocomposites
- Atomistic investigation of pressure effects on sintering of bimetallic core–shell nanoparticles
- Printing of passive RFID tag antennas on flexible substrates for long read distance applications: Materials and techniques
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