Journal of Sensors

Advanced Sensing Materials for Internet of Things Sensors


Publishing date
01 Oct 2022
Status
Published
Submission deadline
10 Jun 2022

Lead Editor

1Chongqing University, Chongqing, China

2International Iberian Nanotechnology Laboratory, Braga, Portugal

3Chongqing University of Arts and Sciences, Chongqing, China


Advanced Sensing Materials for Internet of Things Sensors

Description

Advanced sensing materials are key to the development of various sensors in the Internet of Things (IoT) era. IoT sensors require lower power consumption, higher sensitivity, better selectivity, lower complexity, higher throughput, and higher cost-effectiveness, which represents a new challenge in the development of sensing materials.

Developments in both sensing materials (to sense defects, porosity, channel traffics, and hybrids) and data processing (such as pattern recognition), together with newly emerging in-situ measurements and theoretical calculations (such as binding energy, charge transfer, or bandgaps) have all contributed to the continued development of high performances sensors. Notably, sensors based on novel nanomaterials exhibit ultrahigh detectivity, specificity, low-power consumption, multifunctionality, and miniaturized size.

This Special Issue is aimed at publishing research and development in the field of advanced sensing materials, including the design and synthesis of materials, novel processing strategies, key performance studies, and the fundamental sensing mechanisms of advanced sensing materials, as well as simulation research. Papers devoted to applications of novel IoT sensors involving advanced sensing materials are also welcome. We welcome both original research and review articles.

Potential topics include but are not limited to the following:

  • Low dimensional nanomaterials with novel sensing properties
  • Nanomaterial hybrids/heterostructures with enhanced sensing properties, such as selectivity, operating temperature, sensitivity, frequency response, linearity range, stability, or accuracy
  • Porous coordination polymers (PCPs) / metal-organic frameworks (MOFs)
  • Covalent organic frameworks (COFs) and other porous crystalline nanomaterials, such as metal-organic polyhedrons (MOPs) or conjugated microporous polymers (CMPs), and their hybrid-based chemical sensors
  • Synthesis and characterization of nanomaterials
  • Fabrication and processing of nanosensors
  • Economic and ecological production processes for the fabrication and processing of nanosensors

Articles

  • Special Issue
  • - Volume 2022
  • - Article ID 8294416
  • - Research Article

Research on Garden Ecosystem Based on Monitoring Sensing Technology

Lixia Qiang | Jie Wang
  • Special Issue
  • - Volume 2022
  • - Article ID 3438943
  • - Research Article

Analysis of Water Supply-Demand Based on Socioeconomic Efficiency

Wenying Ren | Xue Bai | ... | Liu Yang
  • Special Issue
  • - Volume 2022
  • - Article ID 8240900
  • - Research Article

Application Research of Deep Learning Technology in Natural Landscape Animation Design

Lili Xu | Lilei Wen
  • Special Issue
  • - Volume 2022
  • - Article ID 5123530
  • - Research Article

Clothing Modular Design Based on Virtual 3D Technology

Jiao Wang | Yijun Zhong
  • Special Issue
  • - Volume 2022
  • - Article ID 9446175
  • - Research Article

Construction of Evaluation Model of Tennis Skills and Tactic Level and Application of Grey Relational Algorithm

Ling Wang
  • Special Issue
  • - Volume 2022
  • - Article ID 2251046
  • - Research Article

Indoor Smart Design Algorithm Based on Smart Home Sensor

Ruili Zheng
  • Special Issue
  • - Volume 2022
  • - Article ID 1713039
  • - Research Article

Application of Adaptive PID Temperature Control Algorithm under Spatial Thermal Model of ALD Reaction Chamber

Zhenqiang Liu | Jinhui Lei | ... | Wa Mao
  • Special Issue
  • - Volume 2022
  • - Article ID 5851114
  • - Research Article

Big Data Analysis of Water Saving Standard Based on Bibliometrics

Xue Bai | Meng Hao | ... | Liu Yang
  • Special Issue
  • - Volume 2022
  • - Article ID 4203768
  • - Research Article

Analysis of an Enterprise Human Resource Management Performance Evaluation Model Based on the DEA Method

Bing Gao | XiMeng Zhang
  • Special Issue
  • - Volume 2022
  • - Article ID 5306491
  • - Research Article

Research on Furniture Design Integrating Ming-Style Furniture Modeling Elements and Image Sensor Data: Taking Suitable Old Furniture as an Example

Wei Chen
Journal of Sensors
 Journal metrics
See full report
Acceptance rate12%
Submission to final decision140 days
Acceptance to publication27 days
CiteScore2.600
Journal Citation Indicator0.440
Impact Factor1.9
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