Close Menu
The LinkxThe Linkx
  • Home
  • Technology
    • Gadgets
    • IoT
    • Mobile
    • Nanotechnology
    • Green Technology
  • Trending
  • Advertising
  • Social Media
    • Branding
    • Email Marketing
    • Video Marketing
  • Shop

Subscribe to Updates

Get the latest tech news from thelinkx.com about tech, gadgets and trendings.

Please enable JavaScript in your browser to complete this form.
Loading
What's Hot

Big Gamer Energy, Small $40 Price: Corsair Understood the Assignment

April 9, 2026

How Mica Connects AI Workloads to Cleaner, Lower-Carbon Power

April 9, 2026

Building Smarter: The ERP Transformation in Construction

April 9, 2026
Facebook X (Twitter) Instagram
Facebook X (Twitter) Instagram Pinterest Vimeo
The LinkxThe Linkx
  • Home
  • Technology
    • Gadgets
    • IoT
    • Mobile
    • Nanotechnology
    • Green Technology
  • Trending
  • Advertising
  • Social Media
    • Branding
    • Email Marketing
    • Video Marketing
  • Shop
The LinkxThe Linkx
Home»Nanotechnology»Growing bright: ligand-controlled growth of aqueous colloidal Cu–In–Zn…
Nanotechnology

Growing bright: ligand-controlled growth of aqueous colloidal Cu–In–Zn…

Editor-In-ChiefBy Editor-In-ChiefFebruary 18, 2026No Comments1 Min Read
Share Facebook Twitter Pinterest LinkedIn Tumblr Reddit Telegram Email
Growing bright: ligand-controlled growth of aqueous colloidal Cu–In–Zn…
Share
Facebook Twitter LinkedIn Pinterest Email


To broaden the potential applications of colloidal quantum dots, sustainable synthetic protocols must be developed and optimised. In this report, we use a low-temperature water-based synthesis of Cu–In–Zn–S quantum dots (CIZS) and we analyse the effect of different ligands (citrate, ascorbate, glutathione, cysteine and mercapto-acetic acid) on crystal growth and composition. The ligands employed have a strong effect on the metal incorporation within the nanocrystal, leading to wide tunability of the photophysical behaviour of the resulting CIZS quantum dots.

Graphical abstract: Growing bright: ligand-controlled growth of aqueous colloidal Cu–In–Zn–S nanocrystals


This article is Open Access



Please wait while we load your content…


Something went wrong. Try again?



Source link

aqueous bright colloidal CuInZn.. growing Growth ligandcontrolled
Share. Facebook Twitter Pinterest LinkedIn Tumblr Email
Previous ArticleIEEE Course Improves Technical Writing Skills
Next Article Get ready for Google I/O May 19-20
Editor-In-Chief
  • Website

Related Posts

Nanotechnology

Have you published a disruptive paper? New machine-learning tool helps…

April 9, 2026
Nanotechnology

Graphene Boosts Magnetic Coupling in Molecular Qubit Monolayer

April 8, 2026
Nanotechnology

MXene breakthrough boosts conductivity 160x with perfect atomic order

April 7, 2026
Add A Comment
Leave A Reply Cancel Reply

Top Posts

New IPA president Karen Martin delivers rousing call to creative actio…

April 1, 2025154 Views

100+ TikTok Statistics Updated for December 2024

December 4, 2024130 Views

How to Fix Cant Sign in Apple Account, Verification Code Not Received …

February 11, 2025103 Views
Stay In Touch
  • Facebook
  • YouTube
  • TikTok
  • WhatsApp
  • Twitter
  • Instagram
Latest Reviews

Subscribe to Updates

Get the latest tech news from thelinkx.com about tech, gadgets and trendings.

Please enable JavaScript in your browser to complete this form.
Loading
About Us

Welcome to TheLinkX – your trusted source for everything tech and gadgets! We’re passionate about exploring the latest innovations, diving deep into emerging trends, and helping you find the best tech products to suit your needs. Our mission is simple: to make technology accessible, engaging, and inspiring for everyone, from tech enthusiasts to casual users.

Our Picks

Big Gamer Energy, Small $40 Price: Corsair Understood the Assignment

April 9, 2026

How Mica Connects AI Workloads to Cleaner, Lower-Carbon Power

April 9, 2026

Building Smarter: The ERP Transformation in Construction

April 9, 2026

Subscribe to Updates

Get the latest tech news from thelinkx.com about tech, gadgets and trendings.

Please enable JavaScript in your browser to complete this form.
Loading
  • About Us
  • Contact Us
  • Disclaimer
  • Privacy Policy
  • Terms and Conditions
© 2026 Thelinkx.All Rights Reserved Designed by Prince Ayaan

Type above and press Enter to search. Press Esc to cancel.