A review of 3D-printed sensors

被引:113
作者
Ni, Yujie [1 ]
Ji, Ru [1 ]
Long, Kaiwen [1 ]
Bu, Ting [1 ]
Chen, Kejian [1 ]
Zhuang, Songlin [1 ]
机构
[1] Univ Shanghai Sci & Technol, Sch Opt Elect & Comp Engn, Shanghai Key Lab Modern Opt Syst,Inst Opt Elect I, Engn Res Ctr Opt Instrument & Syst,Minist Educ, Shanghai 200093, Peoples R China
基金
中国国家自然科学基金;
关键词
Biosensors; chemical sensors; functional material; physical sensors; 3D printing technology; 3D PRINTING TECHNOLOGY; LOW-COST; HIGH-THROUGHPUT; STRAIN SENSORS; GAS SENSOR; MICROFLUIDIC DEVICE; CHEMICAL-SYNTHESIS; MODIFIED GRAPHENE; FLUIDIC DEVICES; QUANTUM DOTS;
D O I
10.1080/05704928.2017.1287082
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Nowadays, sensors play an important role in human life. Among the many manufacturing methods used in the fabrication of sensors, three-dimensional (3D) printing has gradually shown its advantages, particularly with commercial products. Physical sensors, biosensors, and chemical sensors can all be fabricated via 3D printing technology, through either directly printing sensing components, printing molds for casting sensors, or printing platforms to be integrated with commercial sensors. In this article, the varieties of features and applications of 3D printing technologies used in the fabrication of sensors are reviewed. Several types of 3D printing technologies are compared for better understanding of the tools. With the development of new or hybrid manufacturing methods and materials used in the 3D printing technology, this technology will show its great advantages and potential in the fabrication of highly sensitive nanosensors or compound sensors with 3D intricate structures.
引用
收藏
页码:623 / 652
页数:30
相关论文
共 146 条
[11]   Discrete elements for 3D microfluidics [J].
Bhargava, Krisna C. ;
Thompson, Bryant ;
Malmstadt, Noah .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2014, 111 (42) :15013-15018
[12]   Electrochemiluminescence at Bare and DNA-Coated Graphite Electrodes in 3D-Printed Fluidic Devices [J].
Bishop, Gregory W. ;
Satterwhite-Warden, Jennifer E. ;
Bist, Itti ;
Chen, Eric ;
Rusling, James F. .
ACS SENSORS, 2016, 1 (02) :197-202
[13]   3D-Printed Fluidic Devices for Nanoparticle Preparation and Flow-Injection Amperometry Using Integrated Prussian Blue Nanoparticle-Modified Electrodes [J].
Bishop, Gregory W. ;
Satterwhite, Jennifer E. ;
Bhakta, Snehasis ;
Kadimisetty, Karteek ;
Gillette, Kelsey M. ;
Chen, Eric ;
Rusling, James F. .
ANALYTICAL CHEMISTRY, 2015, 87 (10) :5437-5443
[14]   Recent trends of ceramic humidity sensors development: A review [J].
Blank, T. A. ;
Eksperiandova, L. P. ;
Belikov, K. N. .
SENSORS AND ACTUATORS B-CHEMICAL, 2016, 228 :416-442
[15]   3D Rapid Prototyping Technology (RPT) as a powerful tool in microfluidic development [J].
Bonyar, Attila ;
Santha, Hunor ;
Ring, Balazs ;
Varga, Mate ;
Kovacs, Jozsef Gabor ;
Harsanyi, Gabor .
EUROSENSORS XXIV CONFERENCE, 2010, 5 :291-294
[16]   Mechanical behavior of strain sensors based on PEDOT:PSS and silver nanoparticles inks deposited on polymer substrate by inkjet printing [J].
Borghetti, Michela ;
Serpelloni, Mauro ;
Sardini, Emilio ;
Pandini, Stefano .
SENSORS AND ACTUATORS A-PHYSICAL, 2016, 243 :71-80
[17]   Photoluminescent carbon dot sensor for carboxylated multiwalled carbon nanotube detection in river water [J].
Cayuela, Angelina ;
Laura Soriano, M. ;
Valcarcel, Miguel .
SENSORS AND ACTUATORS B-CHEMICAL, 2015, 207 :596-601
[18]   Smartphone-interfaced 3D printed toxicity biosensor integrating bioluminescent "sentinel cells" [J].
Cevenini, Luca ;
Calabretta, Maria Maddalena ;
Tarantino, Giuseppe ;
Michelini, Elisa ;
Roda, Aldo .
SENSORS AND ACTUATORS B-CHEMICAL, 2016, 225 :249-257
[19]   Microwave/microfluidic sensor fabricated on a flexible kapton substrate for complex permittivity characterization of liquids [J].
Chahadih, Abdallah ;
Cresson, Pierre Yves ;
Hamouda, Zahir ;
Gu, Sijia ;
Mismer, Colin ;
Lasri, Tuami .
SENSORS AND ACTUATORS A-PHYSICAL, 2015, 229 :128-135
[20]   Simple, Cost-Effective 3D Printed Microfluidic Components for Disposable, Point-of-Care Colorimetric Analysis [J].
Chan, Ho Nam ;
Shu, Yiwei ;
Xiong, Bin ;
Chen, Yangfan ;
Chen, Yin ;
Tian, Qian ;
Michael, Sean A. ;
Shen, Bo ;
Wu, Hongkai .
ACS SENSORS, 2016, 1 (03) :227-234