Close Menu
  • News
  • Medical
  • Technology
  • Nanomaterials
  • Research
  • Blog
    • Nasiol.com
  • Contact
    • Tech7685@gmail.com
What's Hot

Dual-stage monitoring technique for nanocomposites can streamline manufacturing and property tracking

May 11, 2025

Probing the molecular mechanisms of metastasis

May 10, 2025

AI-powered electronic nose detects diverse scents for health care and environmental applications

May 10, 2025
Facebook X (Twitter) Instagram
Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily
  • News
  • Medical
  • Technology
  • Nanomaterials
  • Research
  • Blog
    • Nasiol.com
  • Contact
    • Tech7685@gmail.com
Facebook X (Twitter) Instagram
Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily
Home»News»Study unveils shape-configurable MXene-based thermoacoustic loudspeakers with tunable sound directivity
News

Study unveils shape-configurable MXene-based thermoacoustic loudspeakers with tunable sound directivity

December 13, 2023No Comments3 Mins Read
Facebook Twitter Pinterest Telegram LinkedIn Tumblr WhatsApp Email
Study unveils shape-configurable MXene-based thermoacoustic loudspeakers with tunable sound directivity
Share
Facebook Twitter LinkedIn Pinterest Telegram Email
A shape-configurable MXene-based TA loudspeaker with directivity-tunable sound generation. a) Schematic illustrating the working mechanism of the flexible MXene-based TA loudspeaker. b) Conceptual sound-pressure/distance plots and sound directivities of unidirectional thick (top) and bidirectional ultrathin substrates (middle), and schematics depicting 3D sound distributions of differently configured ultrathin TA loudspeakers (cylindrical, uniaxial kirigami, parabolic, and spherical) (bottom). c) Conceptual plots of intrinsic variables (HCPUA and thermal effusivity [top]) and extrinsic variables (input power and distance [bottom]). d) Photographs showing an MXene-based TA loudspeaker with an ultrathin (0.8-µm-thick) parylene substrate (left; scale bar, 2 cm); deformable and conformal contact with a fabric electrode having a line width of 150 µm (middle; scale bar, 500 µm); and a large-area (20 cm × 20 cm) specimen (right; scale bar, 5 cm). Credit: Advanced Materials (2023). DOI: 10.1002/adma.202306637

Recent research has led to the development of film-type shape-configurable speakers. These speakers, based on the unique properties of MXene, offer tunable sound directivity and hold immense promise for the rapidly growing field of wearable electronics. The study is published in Advanced Materials.

Traditional loudspeakers with bulky vibrating diaphragms face limitations in integrating with wearable devices due to their bulky vibrating diaphragms. However, the team’s ultra-thin thermoacoustic (TA) loudspeakers, which are free from such limitations, demonstrate remarkable potential in this domain. The challenge lies in configuring these speakers into arbitrary shapes due to their low sound pressure level (SPL) under mechanical deformations and limited conformability.

To overcome these challenges, the research team focused on controlling the heat capacity per unit area of the MXene conductor and the thermal effusivity of the substrates. Through this approach, they successfully developed an ultrathin MXene-based TA loudspeaker that exhibited a high SPL output of 74.5 dB at 15 kHz and maintained stable sound performance over a duration of 14 days.

A key breakthrough of this research is the ability to generate bidirectional and deformation-independent sound in various bent, twisted, cylindrical, and stretched-kirigami configurations using the parylene substrate. The parylene substrate, with a thickness smaller than the thermal penetration depth, enabled the production of speakers capable of sound output in multiple directions, regardless of their shape.

  • New study unveils shape-configurable MXene-based thermoacoustic loudspeakers with tunable sound directivity
    Effects of substrate thickness on the performance of the MXene-based TA loudspeaker. Credit: Advanced Materials (2023). DOI: 10.1002/adma.202306637
  • New study unveils shape-configurable MXene-based thermoacoustic loudspeakers with tunable sound directivity
    Sound-focusing and omnidirectional-sound-generating capabilities of the 3D MXene-based TA loudspeakers. Credit: Advanced Materials (2023). DOI: 10.1002/adma.202306637

In addition, the researchers extended their innovation to the creation of parabolic and spherical versions of ultrathin, large-area (20 cm × 20 cm) MXene-based TA loudspeakers. These speakers demonstrated sound-focusing and 3D omnidirectional-sound-generating attributes, respectively, opening up new possibilities for immersive audio experiences.

See also  Ion irradiation offers promise for 2D material probing

The research effort was led by Professor Hyunhyub Ko and his research team in the School of Energy and Chemical Engineering at UNIST, in collaboration with Dr. Ki-Seok An’s team at the Korea Research Institute of Chemical Technology (KRICT).

Dr. Jinyoung Kim, co-first author of the study who is currently affiliated with the prestigious Georgia Institute of Technology, highlighted the exceptional performance of the MXene-based speakers. The combination of MXene’s two-dimensional conductive nature and parylene’s controllable thickness enables the production of thermophonic speakers with superior performance.

The ultra-thin speaker production technique developed in this study has the potential to become a key technology for various wearable devices and shape-deformation-induced sound control.

Professor Ko emphasized the wide-ranging applications of this thermal sound speaker technology. He noted, “The ability to customize device structure design and achieve shape-shifting and directional-adjustable speakers opens up possibilities for portable and home audio systems, active noise control, flexible active displays, and immersive entertainment systems.”

Provided by
Ulsan National Institute of Science and Technology



Source link

directivity loudspeakers MXenebased shapeconfigurable Sound study thermoacoustic Tunable Unveils
Share. Facebook Twitter Pinterest LinkedIn Tumblr Email

Related Posts

Dual-stage monitoring technique for nanocomposites can streamline manufacturing and property tracking

May 11, 2025

Probing the molecular mechanisms of metastasis

May 10, 2025

AI-powered electronic nose detects diverse scents for health care and environmental applications

May 10, 2025

Microbubble dynamics in boiling water enable precision fluid manipulation

May 9, 2025

Unique molecule may lead to smaller, more efficient computers

May 9, 2025

Depositing quantum dots on corrugated chips improves photodetector capabilities

May 8, 2025

Comments are closed.

Top Articles
News

Chemists create world’s thinnest spaghetti

New Technology Identifies Individual Full-Length Human Proteins

News

Nano-optical sensors enable structural safety monitoring of buildings with color variations

Editors Picks

Dual-stage monitoring technique for nanocomposites can streamline manufacturing and property tracking

May 11, 2025

Probing the molecular mechanisms of metastasis

May 10, 2025

AI-powered electronic nose detects diverse scents for health care and environmental applications

May 10, 2025

Microbubble dynamics in boiling water enable precision fluid manipulation

May 9, 2025
About Us
About Us

Your go-to source for the latest nanotechnology breakthroughs. Explore innovations, applications, and implications shaping the future at the molecular level. Stay informed, embrace the nano-revolution.

We're accepting new partnerships right now.

Facebook X (Twitter) Instagram Pinterest
Our Picks

Pioneering Cuprotosis: Unveiling Copper’s Crucial Role in Regulating Cell Death and Its Potential for Revolutionary Healthcare Breakthroughs

August 9, 2023

Nanowires produce localized highly alkaline microenvironments to kill bacteria

March 23, 2025

Thiol ligands modify metal nanocluster structures and optical properties

October 3, 2023

Subscribe to Updates

Get the latest creative Nano Tech news from Elnano.com

© 2025 Elnano.com - All rights reserved.
  • Contact
  • Privacy Policy
  • Terms & Conditions

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

Cleantalk Pixel