Abstract
In recent years,flexible electronic devices such as radio frequency identification (RFID ) tags and flexible sensors have been applied in the field of intelligent food packaging.The research progress of the application of flexible electronic devices in food quality inspection and food packaging in China and abroad was clarified,such as drug residue detection,microbiological detection,freshness detection,storage environment monitoring,tamper -evident packaging design,and logistics tracking.The development of flexible electronic devices in the field of intelligent packaging was also prospected.
Publication Date
2-18-2025
First Page
197
Last Page
203
DOI
10.13652/j.spjx.1003.5788.2024.60074
Recommended Citation
Kaiyu, MO and Jing, DING
(2025)
"Application of flexible electronic devices in intelligent food packaging,"
Food and Machinery: Vol. 40:
Iss.
12, Article 26.
DOI: 10.13652/j.spjx.1003.5788.2024.60074
Available at:
https://www.ifoodmm.cn/journal/vol40/iss12/26
References
[1] 中国包装联合会.中国包装工业发展规划 (2016—2020年)[EB/OL ].(2017 -03-14) [2024 -02-16].https://d.wanfangdata.com.cn/periodical/ChpNaW 5lclBlcmlvZGljYWxDSEkyMDIz MDMyMRINbHNiejIwMTcwMTA 0NhoIOGMzOXo 3Ym8%3D.China Packaging Federation.China packaging industry development plan (2016—2020 ) [EB/OL ].(2017 -03-14) [2024 -02-16].https://d.wanfangdata.com.cn/periodical/ChpNaW 5lclBlcmlvZGljYWxDSEkyMDIzMDMyMRINbHNiejIwMTcwMTA 0NhoIOGMzOXo 3Ym8%3D.
[2] 工业和信息化部,商务部.关于加快我国包装产业转型发展的 指 导 意 见 [EB/OL ].(2016 -12-19) [2024 -03-06].https://m.mofcom.gov.cn/article/h/redht/ 201612 /20161202273150.shtml.Ministry of Industry and Information Technology,Ministry of Commerce.Guidance on accelerating the transformation and development of packaging industry in China [EB/OL ].(2016 -12-19) [2024 -03-06].https://m.mofcom.gov.cn/article/h/redht/201612 /20161202273150.shtml.
[3] 付秋莹.智能包装技术在食品行业的应用概述 [J].印刷杂志,2019 (1):49-53.FU Q Y.Intelligence packaging technologies in food industry[J].Printing Field,2019 (1):49-53.
[4] GHAANI M,COZZOLINO C A,CASTELLI G,et al.An overview of the intelligent packaging technologies in the food sector [J].Trends in Food Science & Technology,2016,51:1-11.
[5] MÜLLER P,SCHMID M.Intelligent packaging in the food sector:a brief overview [J].Foods,2019,8:16.
[6] KALPANA S,PRIYADARSHINI S R,LEENA M M,et al.Intelligent packaging:trends and applications in food systems[J].Trends in Food Science & Technology,2019,93:145-157.
[7] SOHAIL M,SUN D W,ZHU Z W.Recent developments in intelligent packaging for enhancing food quality and safety [J].Critical Reviews in Food Science and Nutrition,2018,58:2 650-2 662.
[8] VANDERROOST M,RAGAERT P,DEVLIEGHERE F,et al.Intelligent food packaging:the next generation [J].Trends in Food Science & Technology,2014,39(1):47-62.
[9] MOONEN P F,YAKIMETS I,HUSKENS J.Fabrication of transistors on flexible substrates:from mass-printing to high-resolution alternative lithography strategies [J].Advanced Materials,2012,24(41):5 526-5 541.
[10] PREETHICHANDRA D M G,GHOLAMI M D,IZAKE E L,et al.Conducting polymer based ammonia and hydrogen sulfide chemical sensors and their suitability for detecting food spoilage [J].Advanced Materials Technologies,2023,8(4):2200841.
[11] FATHI P,KARMAKAR N C,BHATTACHARYA M,et al.Potential chipless RFID sensors for food packaging applications:a review [J].IEEE Sensors Journal,2020,20(17):9 618-9 636.
[12] RIM Y S,BAE S H,CHEN H J,et al.Recent progress in materials and devices toward printable and flexible sensors [J].Advanced Materials,2016,28(22):4 415-4 440.[13] POTYRAILO R A,NAGRAJ N,TANG Z X,et al.Battery-free radio frequency identification (RFID ) sensors for food quality and safety [J].Journal of Agricultural and Food Chemistry,2012,60(35):8 535-8 543.
[14] YUE C Z,WANG J Y,WANG Z Q,et al.Flexible printed electronics and their applications in food quality monitoring and intelligent food packaging:recent advances [J].Food Control,2023,154:109983.
[15] JUNG M,KIM J,NOH J,et al.All-printed and roll-to-roll-printable 13.56-MHz-operated 1-bit RF tag on plastic foils [J].IEEE Transactions on Electron Devices,2010,57(3):571-580.
[16] BEHERA S K,KARMAKAR N C.Chipless RFID printing technologies:a state of the art [J].IEEE Microwave Magazine,2021,22(6):64-81.
[17] SHI Q F,HE T,LEE C K.More than energy harvesting-combining triboelectric nanogenerator and flexible electronics technology for enabling novel micro-/nano-systems [J].Nano Energy,2019,57:851-871.
[18] BAO Z N,CHEN X D.Flexible and stretchable devices [J].Advanced Materials,2016,28(22):4 177-4 179.
[19] 马艺宁,李洁.柔性传感器技术及其在智能包装中的应用[J].包装工程,2022,43(7):225-232.MA Y N,LI J.Flexible sensor technology and its application in intelligent packaging [J].Packaging Engineering,2022,43(7):225-232.
[20] VERMA N,BHARDWAJ A.Biosensor technology for pesticides:a review [J].Applied Biochemistry and Biotechnology,2015,175:3 093-3 119.
[21] YANG Y K,SHI Z,WANG X M,et al.Portable and on-site electrochemical sensor based on surface molecularly imprinted magnetic covalent organic framework for the rapid detection of tetracycline in food [J].Food Chemistry,2022,395:133532.
[22] TIMSORN K,WONGCHOOSUK C.Inkjet printing of room-temperature gas sensors for identification of formalin contamination in squids [J].Journal of Materials Science:Materials in Electronics,2019,30:4 782-4 791.
[23] LACZKA O,BALDRICH E,MUÑOZ F X,et al.Detection of Escherichia coli and Salmonella typhimurium using interdigitated microelectrode capacitive immunosensors:the importance of transducer geometry [J].Analytical Chemistry,2008,80(19):7 239-7 247.
[24] ARREGUIN-CAMPOS R,FRIGOLI M,CALDARA M,et al.Functionalized screen-printed electrodes for the thermal detection of Escherichia coli in dairy products [J].Food Chemistry,2023,404:134653.
[25] WANG X,NIESSNER R,TANG D P,et al.Nanoparticle-based immunosensors and immunoassays for aflatoxins [J].Analytica Chimica Acta,2016,912:10-23.
[26] TANG X Q,CATANANTE G,HUANG X R,et al.Screen-printed electrochemical immunosensor based on a novel |nanobody for analyzing aflatoxin M1 in milk [J].Food Chemistry,2022,383:132598.
[27] MUNIR M A,BADRI K H,HENG L Y,et al.The application of polyurethane-LiClO4 to modify screen-printed electrodes analyzing histamine in mackerel using a voltammetric approach [J].ACS Omega,2022,7(7):5 982-5 991.
[28] KIM Y H,YANG Y J,KIM J S,et al.Non-destructive monitoring of apple ripeness using an aldehyde sensitive colorimetric sensor [J].Food Chemistry,2018,267:149-156.
[29] BOOPATHY G,KEERTHI M,CHEN S M,et al.Molybdenum trioxide embedded graphitic carbon nitride sheets modified electrode for caffeine sensing in green tea and coffee powder[J].Materials Chemistry and Physics,2021,269:124735.
[30] BAGAL-KESTWAL D R,CHIANG B H.Platinum nanoparticle-carbon nanotubes dispersed in gum Arabic-corn flour composite-enzymes for an electrochemical sucrose sensing in commercial juice [J].Ionics,2019,25:5 551-5 564.
[31] DENG Y F,LI Q Z,ZHOU Y H,et al.Fully inkjet printing preparation of a carbon dots multichannel microfluidic paper-based sensor and its application in food additive detection [J].ACS Applied Materials & Interfaces,2021,13(48):57 084-57 091.
[32] NUMPHUD W,CHIENTHA VORN O,SIRIWATCHARAPIBOON W.Cyclic voltammetric determination of capsaicin by using electrochemically deposited tin and reduced graphene oxide on screen-printed carbon electrodes [J].ScienceAsia,2020,46(5):586-594.
[33] MARTIN C S,MAXIMINO M D,PEREIRA M S,et al.Polyphenol detection in mate tea samples using iron tetrasulfonated phthalocyanine modified screen-printed electrode [J].IEEE Sensors Journal,2019,19(22):10 686-10 692.
[34] TANG S K,WANG C,LIU K,et al.In vivo detection of glutamate in tomatoes by an enzyme-based electrochemical biosensor [J].ACS Omega,2022,7(34):30 535-30 542.
[35] PIERINI G D,MACCIO S A,ROBLEDO S N,et al.Screen-printed electrochemical-based sensor for taxifolin determination in edible peanut oils [J].Microchemical Journal,2020,159:105442.
[36] CINTI S,BASSO M,MOSCONE D,et al.A paper-based nanomodified electrochemical biosensor for ethanol detection in beers [J].Analytica Chimica Acta,2017,960:123-130.
[37] MAHAPATRA P L,DAS S,MONDAL P P,et al.Microporous copper chromite thick film based novel and ultrasensitive capacitive humidity sensor [J].Journal of Alloys and Compounds,2021,859:157778.
[38] WAN H,LIU X,WANG X Y,et al.Facile screen-printed carbon nanotube electrode on porous substrate with gold nanoparticle modification for rapid electrochemical gas sensing[J].Journal of the Electrochemical Society,2021,168(6):067514.
[39] KE S H,GUO P W,PANG C Y,et al.Screen - printed flexible strain sensors with Ag nanowires for intelligent and tamper -evident packaging applications [J].Advanced Materials Technologies,2020,5(5):1901097.
[40] WANG W,SADEQI A,NEJAD H R,et al.Cost-effective wireless sensors for detection of package opening and tampering [J].IEEE Access,2020,8:117 122-117 132.
[41] 章登科,韩国程,俞朝晖,等.RFID技术及其在智能包装中的应用 [J].包装工程,2018,39(1):6-11.ZHANG D K,HAN G C,YU Z H,et al.RFID technology and its application in intelligent packaging [J].Packaging Engineering,2018,39(1):6-11.
[42] 姚金玲,刘婕,闫雪锋.食品质量追溯中 RFID多标签识别防碰撞算法 [J].食品与机械,2021,37(6):97-101.YAO J L,LIU J,YAN X F.Anti collision algorithm of RFID multi-tags identification in food quality traceability [J].Food & Machinery,2021,37(6):97-101.
[43] 刘宗妹.“区块链 +射频识别技术 ”赋能食品溯源平台研究 [J].食品与机械,2020,36(9):102-107.LIU Z M.Research on "blockchain + RFID" enabling food traceability platform [J].Food & Machinery,2020,36(9):102-107.
[44] 赵冬艳,孙金才,陈纪算.新鲜度指示型包装技术在生鲜食品的应用进展 [J].食品与生物技术学报,2022,41(1):1-9.ZHAO D Y,SUN J C,CHEN J S.Progress of freshness indicator used in fresh food packaging [J].Journal of Food Science and Biotechnology,2022,41(1):1-9.
[45] ESCOBEDO P,BHATTACHARJEE M,NIKBAKHTNASRABADI F,et al.Flexible strain and temperature sensing NFC tag for smart food packaging applications [J].IEEE Sensors Journal,2021,21(23):26 406-26 414.