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Insights into the global market for electronic fabrics, skin patches and wearable electronics, batteries and sensors through 2032

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Dublin, April 20, 2022 (GLOBE NEWSWIRE) – The report “The Global Market for Electronic Textiles, Skin Patches and Wearable Electronics, Batteries & Sensors 2022-2032” has been added to by ResearchAndMarkets.com offering.

This report presents the latest developments in electronic tissues, wearable electronics, batteries and sensors, as well as skin patches, including remote sensing technologies for continuous measurement and modulation of body parameters including glucose, heart rate, blood pressure. , sweat, etc.

The contents of the report include:

  • Market analysis of smart skin patches, electronic fabrics, wearable batteries and sensors, printed electronics, flexible and extensible. Including invasive and non-invasive technologies, electronics on leather and textiles and use for apparel, communication, information, health monitoring, detection etc.

  • In-depth commercial evaluation including products, manufacturers, features and pricing

  • Historical and projected global market revenues up to 2032 for e-textiles, leather patches and wearable electronics, batteries and sensors

  • 336 company profiles. Profiled companies include Almawave, Ava AG, Azalea Vision, BioIntelliSense, Cefaly Technology, Cogwear, GE Heatlthcare, InnovationLab, Jabil, Liquid Metal, Medtronic, Myant, Nanoleq AG, Organic Robotics Corporation, Wise SRL etc.

Key topics covered:

1 EXECUTIVE SUMMARY
1.1 The evolution of electronics
1.2 The wearables revolution
1.3 Wearables market leader
1.4 From rigid to flexible and stretchable
1.5 Flexible and Extensible Electronics in Wearable Devices
1.6 Stretch artificial leather
1.7 Organic and printed electronics
1.8 Wearable electronics in the textile industry
1.9 New conductive materials
1.10 Foldable smartphones and tablets
1.11 Entertainment
1.12 Growth in the flexible and extensible electronics market
1.13 Innovations at CES 2021
1.14 Innovations at CES 2022
1.15 Loans for investments 2019-2022

2 WEARABLE ELECTRONICS
2.1 Drivers and market trends
2.2 Recent developments
2.3 Smartwatch
2.3.1 Recent innovations
2.3.2 Health monitoring
2.3.3 Collection of energy to power smartwatches
2.3.4 Major manufacturers and products of smartwatches
2.4 Sports and Fitness Trackers
2.4.1 Wearable Devices
2.4.2 Skin spots
2.4.3 Products
2.5 Sleep tracker and wearable monitors
2.5.1 Integrated function in smartwatches and fitness trackers
2.5.2 Smart rings
2.5.3 Headbands
2.5.4 Patch
2.5.5 Masks
2.6 Smart glasses and head-mounted displays (VR, AR, MR, vision loss and eye tracker)
2.6.1 Products
2.6.2 Virtual reality (VR) devices.
2.6.3 Enhanced Headphones (AR) and smart glasses
2.6.4 Mixed Reality (MR) Smart Glasses.
2.7 Military wearables
2.8 Industrial and work monitoring
2.8.1 Products
2.9 Size of the global market
2.9.1 By Product Type, 2015-2032, USD Billion
2.9.2 Market share by type of product
2.10 Market challenges

3 PATCHES FOR THE SKIN
3.1 Market Driver
3.2 The current state of the art
3.2.1 Wearable medical devices
3.2.2 Monitoring of temperature and respiratory rate
3.3 Wearable health monitoring and rehabilitation
3.3.1 Companies and products
3.4 Electronic skin patches
3.4.1 Applications
3.4.2 Materials
3.4.2.1 Devices based on nanomaterials
3.4.3 Continuous Blood Glucose Monitoring (CGM)
3.4.3.1 Minimally invasive CGM sensors
3.4.3.2 Non-invasive CGM sensors
3.4.3.3 Companies and products for minimally invasive and non-invasive glucose monitoring
3.4.4 Cardiovascular
3.4.4.1 ECG sensors
3.4.4.1.1 Companies and products
3.4.4.2 PPG sensors
3.4.4.2.1 Companies and products
3.4.5 Pregnancy and neonatal monitoring
3.4.5.1 Companies and products
3.4.6 Wearable Temperature Monitoring
3.4.6.1 Companies and products
3.4.7 Hydration sensors
3.4.7.1 Companies and products
3.4.8 Wearable sweat sensors (medical and sports)
3.4.8.1 Companies and products
3.5 Administration of wearable drugs
3.5.1 Companies and products
3.6 Cosmetic patches
3.6.1 Companies and products
3.7 Smart footwear for health monitoring
3.7.1 Companies and products
3.8 Smart contact lenses
3.8.1 Companies and products
3.9 Intelligent wound care
3.9.1 Companies and products
3.10 Wearable exoskeletons
3.10.1 Companies and products
3.11 Medical hearing aids
3.11.1 Companies and products
3.12 Size of the global market
3.12.1 By Product Type, 2015-2032, USD Billion
3.12.2 Market share, by product type
3.13 Challenges of the market

4 ELECTRONIC FABRICS (E-TEXTILES)
4.1 Market Driver
4.2 Performance Requirements for Electronic Fabrics
4.3 Growth prospects for electronic textiles
4.4 Materials and components
4.4.1 Conductive and stretchable yarns
4.4.2 Conductive polymers
4.4.2.1 PDMS
4.4.2.2 PEDOT: PSS
4.4.3 Conductive coatings
4.4.4 Conductive inks
4.4.5 Nanomaterials
4.4.5.1 Nanocoating in smart fabrics
4.4.5.2 Graphene
4.4.5.3 Nanofibers
4.4.5.4 Carbon nanotubes
4.5 Phase change materials
4.5.1 Temperature-controlled fabrics
4.6 Smart clothing products
4.7 Electronic Textile Products
4.8 Temperature monitoring and regulation
4.8.1 Heated clothing
4.8.2 Heated gloves
4.8.3 Heated insoles
4.8.4 Heated jacket and apparel products
4.8.5 Materials used in flexible heaters and applications
4.9 Extensible Electronic Fabrics
4.10 Wearable Therapeutic Products
4.11 Sport and fitness
4.12 Smart footwear
4.12.1 Companies and products
4.13 Military
4.14 Flexible and Wearable Display Advertising
4.15 Textile-based lighting
4.15.1 OLED
4.16 Smart diapers
4.16.1 Companies and products
4.17 Automotive
4.18 Size of the global market
4.18.1 Investments and financing in e-textile 2020-2021
4.18.2 By Product Type, 2015-2032, USD Billion
4.18.3 Market share, by type of product
4.19 Market challenges

5 E-TEXILES BATTERIES, LEATHER PATCH AND WEARABLE ELECTRONICS
5.1 Wearable Batteries
5.2 Flexible batteries
5.2.1 Technical specifications
5.2.1.1 Approaches to flexibility
5.2.2 Flexible and wearable metal-sulfur batteries
5.2.3 Flexible and wearable metal-air batteries
5.2.4 Flexible lithium-ion batteries
5.2.4.1 Electrode drawings
5.2.4.2 Fiber-shaped lithium ion batteries
5.2.4.3 Extendable lithium-ion batteries
5.2.4.4 Lithium-ion batteries for origami and kirigami
5.2.5 Flexible Li / S batteries
5.2.5.1 Components
5.2.5.2 Carbon nanomaterials
5.2.6 Flexible lithium-manganese dioxide (Li-MnO2) batteries.
5.2.7 Zinc-based flexible batteries
5.2.7.1 Components
5.2.7.1.1 Anodes
5.2.7.1.2 Cathode
5.2.7.2 Challenges
5.2.7.3 Flexible zinc-manganese dioxide (Zn-Mn) batteries.
5.2.7.4 Flexible silver-zinc batteries (Ag-Zn).
5.2.7.5 Flexible Zn-Air batteries
5.2.7.6 Flexible zinc-vanadium batteries
5.2.8 Fiber-shaped batteries
5.2.8.1 Carbon nanotubes
5.2.8.2 Types
5.2.8.3 Applications
5.2.8.4 Challenges
5.2.9 Transparent batteries
5.2.9.1 Components
5.2.10 Degradable batteries
5.2.10.1 Components
5.2.11 Flexible and extensible supercapacitors
5.2.11.1 Nanomaterials for electrodes
5.3 Printed batteries
5.3.1 Technical specifications
5.3.1.1 Components
5.3.1.2 Design
5.3.1.3 Main features
5.3.1.4 Materials
5.3.1.5 Printing techniques
5.3.1.6 Applications
5.3.2 Printed Lithium Ion Batteries (LIB).
5.3.3 Zinc-based molded batteries
5.3.4 3D printed batteries
5.3.4.1 3D printing techniques for battery manufacturing
5.3.4.2 3D printed battery materials
5.3.4.2.1 Electrode materials
5.3.4.2.2 Electrolytic materials
5.3.5 Printed supercapacitors
5.3.5.1 Electrode materials
5.3.5.2 Electrolytes
5.4 Power sources for wearable sensors
5.5 Textile-based batteries
5.6 Energy collection
5.7 Power supply of electronic tissues
5.8 Advantages and disadvantages of the main types of batteries for E-textiles
5.9 Biobatteries
5.10 Challenges for integrating the battery into smart textiles
5.11 Global market up to 2032, by type and market (revenues)

6 COMPANY PROFILES (336 COMPANY PROFILES)

7 RESEARCH METHODOLOGY

8 REFERENCES

For more information on this report, please visit https://www.researchandmarkets.com/r/i4gt0l

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