Study Results could Lead to a New Class of Materials for Making LEDs

Xianfeng Duan

 

The California NanoSystems Institute’s Xiangfeng Duan A new study by researchers from the California NanoSystems Institute at UCLA is the first demonstration of electroluminescence from multilayer molybdenum disulfide, or MoS2, a discovery that could lead to a new class of materials for making LEDs. The study, led by Xianfeng Duan, professor of chemistry and biochemistry, was published in the journal Nature Communications on July 1, 2015.

Over the last decade, advances in LED have helped to improve the performance of devices ranging from television and computer screens to flashlights. As the uses for LEDs expand, scientists continue to look for ways to increase their efficiency while simplifying how they are manufactured. In the new study, Duan and first author Dehui Li, a postdoctoral scholar in Duan’s lab, created the first multilayer molybdenum disulfide device that shows strong luminescence when electrical current is passed through it.

In its single-layer form, molybdenum disulfide is optically active, meaning that it emits light when electric current is run through it or when it is shot with a nondestructive laser. Multilayer molybdenum disulfide, by contrast, is easier and less expensive to produce, but it is not normally luminescent.

“We were trying to make a vertically stacked light-emitting device based on monolayer MoS2, but it was difficult to get the efficiency as high as we wanted,” says Duan. “On the other hand, it was rather surprising for us to discover that similar vertical devices made of multilayer MoS2 somehow showed very strong electroluminescence, which was completely unexpected since the multilayer MoS2 is generally believed to be optically inactive. So we followed this new lead to investigate the underlying mechanism and the potential of multilayer MoS2 in light-emitting devices.”

Duan and his team used a technique called electric field-induced enhancement, which relocates the electrons from a dark state to a luminescent state, thereby increasing the material’s ability to convert electrons into light particles, or photons. With this technique, the multilayer MoS2 semiconductors are at least as efficient as monolayer ones.

Duan’s team is currently moving forward to apply this approach to similar materials, including tungsten diselenide, molybdenum diselenide and tungsten disulphide, with the goal of helping to create a new generation of light-emitting devices from two-dimensional layered materials, which are less expensive and easier to use in manufacturing.

Read the article in Nature Communications www.nature.com/ncomms/2015/150701/ncomms8509/full/ncomms8509.html

 

Related Articles


Changing Scene

  • Jan 29, 2026 - SATCO Announces Debby Hite as New Brand Loyalty Marketing Manager

    SATCO Announces Debby Hite as New Brand Loyalty Marketing Manager

    SATCO is pleased to announce the appointment of Debby Hite as their new Brand Loyalty Marketing Manager. Debby is an industry veteran with more than a decade of experience helping manufacturers and distributors strengthen channel relationships through strategic engagement and program development. Hite brings extensive experience connecting business strategy with execution, creating initiatives that support… Read More…

  • Jan 29, 2026 - Leviton - Certolux Visioneering (Viscor) Announces Zain Ul Abdin as a New Quotation Specialist

    Leviton – Certolux Visioneering (Viscor) Announces Zain Ul Abdin as a New Quotation Specialist

    Leviton – Certolux Visioneering (Viscor) is excited to announce Zain Ul Abdin as a new Quotation Specialist team member! With over a decade of experience in customer service, quotations, and production coordination in Lighting and Electrical industry, Zain brings a wealth of operational expertise, a dynamic skill set and a customer-centric approach to his role.… Read More…


Design

  • Solar-Integrated Lighting: The Next Big Shift for Outdoor & Public Spaces

    Solar-Integrated Lighting: The Next Big Shift for Outdoor & Public Spaces

    For years, solar lighting was treated as a niche – useful, but not quite ready for large-scale outdoor applications. That perception has officially changed. Today, advancements in LED efficiency, battery performance, and smart control technologies are pushing solar-integrated lighting into mainstream adoption. And for manufacturers, system integrators, and solution providers, this shift is opening one… Read More…

  • Stanpro: Why & How to Adjust Lighting with Seasonal Changes

    Stanpro: Why & How to Adjust Lighting with Seasonal Changes

    Natural light varies from one season to the next, whether referring to brightness, slant or radiant periods. For instance, does your staff add more luminaires or extra light sources to work well in their environment during shorter days of the year? At home, do you close your curtains against the onset of intense radiance at… Read More…


New Products

  • Magic Lite: New 4 Zone RGB+CCT Remote

    Magic Lite: New 4 Zone RGB+CCT Remote

    Magic Lite’s new 4-Zone RGB+CCT Remote is a professional-grade lighting control solution that enables precise management of multi-zone RGB+CCT LED systems. Built with 2.4GHz RF wireless technology, it offers seamless control with a range of up to 30 meters. Designed for both commercial and residential applications, it supports brightness, colour temperature, saturation, and speed adjustments,… Read More…

  • RENO Lighting Introduces STRATOS — Tri-Illumination Translucent Vertical Pendant

    RENO Lighting Introduces STRATOS — Tri-Illumination Translucent Vertical Pendant

    STRATOS redefines vertical lighting with a clean, architectural presence and a uniquely balanced approach to illumination. Designed to deliver glare-free task lighting, its translucent dot-matrix light-guide plate distributes light evenly, creating a soft, ambient glow. The result is illumination that feels natural and comfortable—echoing the brightness and atmosphere of daylight—while adding modern elegance to any… Read More…