Literature DB >> 33499265

Bending Analysis of Polymer-Based Flexible Antennas for Wearable, General IoT Applications: A Review.

Muhammad Usman Ali Khan1, Raad Raad1, Faisel Tubbal1, Panagiotis Ioannis Theoharis1, Sining Liu1, Javad Foroughi1,2.   

Abstract

Flexible substrates have become essential in order to provide increased flexibility in wearable sensors, including polymers, plastic, paper, textiles and fabrics. This study is to comprehensively summarize the bending capabilities of flexible polymer substrate for general Internet of Things (IoTs) applications. The basic premise is to investigate the flexibility and bending ability of polymer materials as well as their tendency to withstand deformation. We start by providing a chronological order of flexible materials which have been used during the last few decades. In the future, the IoT is expected to support a diverse set of technologies to enable new applications through wireless connectivity. For wearable IoTs, flexibility and bending capabilities of materials are required. This paper provides an overview of some abundantly used polymer substrates and compares their physical, electrical and mechanical properties. It also studies the bending effects on the radiation performance of antenna designs that use polymer substrates. Moreover, we explore a selection of flexible materials for flexible antennas in IoT applications, namely Polyimides (PI), Polyethylene Terephthalate (PET), Polydimethylsiloxane (PDMS), Polytetrafluoroethylene (PTFE), Rogers RT/Duroid and Liquid Crystal Polymer (LCP). The study includes a complete analysis of bending and folding effects on the radiation characteristics such as S-parameters, resonant frequency deviation and the impedance mismatch with feedline of the flexible polymer substrate microstrip antennas. These flexible polymer substrates are useful for future wearable devices and general IoT applications.

Entities:  

Keywords:  flexible antennas; flexible electronics; internet of things (IoTs); polymers substrates; wearable applications

Year:  2021        PMID: 33499265      PMCID: PMC7865813          DOI: 10.3390/polym13030357

Source DB:  PubMed          Journal:  Polymers (Basel)        ISSN: 2073-4360            Impact factor:   4.329


  23 in total

1.  Paper-like electronic displays: large-area rubber-stamped plastic sheets of electronics and microencapsulated electrophoretic inks.

Authors:  J A Rogers; Z Bao; K Baldwin; A Dodabalapur; B Crone; V R Raju; V Kuck; H Katz; K Amundson; J Ewing; P Drzaic
Journal:  Proc Natl Acad Sci U S A       Date:  2001-04-24       Impact factor: 11.205

2.  Electrochemical sensing based on printable temporary transfer tattoos.

Authors:  Joshua Ray Windmiller; Amay Jairaj Bandodkar; Gabriela Valdés-Ramírez; Serguey Parkhomovsky; Alexandra Gabrielle Martinez; Joseph Wang
Journal:  Chem Commun (Camb)       Date:  2012-06-06       Impact factor: 6.222

Review 3.  Materials and mechanics for stretchable electronics.

Authors:  John A Rogers; Takao Someya; Yonggang Huang
Journal:  Science       Date:  2010-03-26       Impact factor: 47.728

4.  Curvilinear electronics formed using silicon membrane circuits and elastomeric transfer elements.

Authors:  Heung Cho Ko; Gunchul Shin; Shuodao Wang; Mark P Stoykovich; Jeong Won Lee; Dong-Hun Kim; Jeong Sook Ha; Yonggang Huang; Keh-Chih Hwang; John A Rogers
Journal:  Small       Date:  2009-12       Impact factor: 13.281

5.  Stretchable organic solar cells.

Authors:  Darren J Lipomi; Benjamin C-K Tee; Michael Vosgueritchian; Zhenan Bao
Journal:  Adv Mater       Date:  2011-02-25       Impact factor: 30.849

6.  Chemical amplification: continuous-flow PCR on a chip.

Authors:  M U Kopp; A J Mello; A Manz
Journal:  Science       Date:  1998-05-15       Impact factor: 47.728

7.  Flexible, Polarization-Diverse UWB Antennas for Implantable Neural Recording Systems.

Authors:  Hadi Bahrami; S Abdollah Mirbozorgi; Reza Ameli; Leslie A Rusch; Benoit Gosselin
Journal:  IEEE Trans Biomed Circuits Syst       Date:  2015-03-16       Impact factor: 3.833

8.  Self-Healing Electronic Materials for a Smart and Sustainable Future.

Authors:  Yu Jun Tan; Jiake Wu; Hanying Li; Benjamin C K Tee
Journal:  ACS Appl Mater Interfaces       Date:  2018-04-27       Impact factor: 9.229

9.  Flexible and Stretchable Physical Sensor Integrated Platforms for Wearable Human-Activity Monitoringand Personal Healthcare.

Authors:  Tran Quang Trung; Nae-Eung Lee
Journal:  Adv Mater       Date:  2016-02-03       Impact factor: 30.849

10.  Smart wearable body sensors for patient self-assessment and monitoring.

Authors:  Geoff Appelboom; Elvis Camacho; Mickey E Abraham; Samuel S Bruce; Emmanuel Lp Dumont; Brad E Zacharia; Randy D'Amico; Justin Slomian; Jean Yves Reginster; Olivier Bruyère; E Sander Connolly
Journal:  Arch Public Health       Date:  2014-08-22
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  4 in total

1.  Combined RIS and EBG Surfaces Inspired Meta-Wearable Textile MIMO Antenna Using Viscose-Wool Felt.

Authors:  Amira Nur Suraya Shamsuri Agus; Thennarasan Sabapathy; Muzammil Jusoh; Mahmoud A Abdelghany; Kabir Hossain; Surentiran Padmanathan; Samir Salem Al-Bawri; Ping Jack Soh
Journal:  Polymers (Basel)       Date:  2022-05-13       Impact factor: 4.967

Review 2.  Flexible Liquid Crystal Polymer Technologies from Microwave to Terahertz Frequencies.

Authors:  Zepeng Zhou; Wenqing Li; Jun Qian; Weihong Liu; Yiming Wang; Xijian Zhang; Qinglei Guo; Yevhen Yashchyshyn; Qingpu Wang; Yanpeng Shi; Yifei Zhang
Journal:  Molecules       Date:  2022-02-16       Impact factor: 4.411

3.  Influence of Various Technologies on the Quality of Ultra-Wideband Antenna on a Polymeric Substrate.

Authors:  Peter Lukacs; Alena Pietrikova; Igor Vehec; Peter Provazek
Journal:  Polymers (Basel)       Date:  2022-01-27       Impact factor: 4.329

Review 4.  Energy Storage Application of All-Organic Polymer Dielectrics: A Review.

Authors:  Zhijie Yang; Dong Yue; Yuanhang Yao; Jialong Li; Qingguo Chi; Qingguo Chen; Daomin Min; Yu Feng
Journal:  Polymers (Basel)       Date:  2022-03-14       Impact factor: 4.329

  4 in total

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