3 月 4, 2025 隆昌化工

As a developer of anti-counterfeiting materials for 15 years, I am often asked, “Why can supermarket cashiers use ultraviolet pens to quickly determine the authenticity of banknotes?” The answer lies in the anti-counterfeiting ink technology we will discuss today. Through this article, you will learn:

  1. the working principles of the six main types of anti-counterfeiting inks
  2. how to quickly determine authenticity with the naked eye and simple tools
  3. the latest breakthroughs in rare earth fluorescent materials

I. The technological code of anti-counterfeiting inks

1.1 The double-edged game of photosensitive technology

I remember that in 2018, when we had a technical exchange with the Swiss National Bank, they showed me an anti-counterfeiting upgrade for the euro that really impressed me – the same banknote uses both **short-wave (254nm) and long-wave (365nm)** ultraviolet excitation technology. This design means that counterfeiters need to break through both fluorescent systems at the same time, and the cost of counterfeiting has soared by 83% (according to INTERPOL 2022 data).

Comparison of mainstream photosensitive technologies:

  • Ultraviolet fluorescent ink: cost only $0.02/cm², recognition rate 98.7%
  • Infrared ink: mostly used in passport chips, requires special equipment to read
  • Photochromic ink: Japanese JIS standard requires color difference ΔE ≥ 5.0

1.2 Rare earth materials break the game

Pain points of traditional fluorescent materials:

✓ Organic type is prone to aging (37% attenuation in half a year)

✓ Non-organic models have excessive toxicity (lead content > 300ppm)

✓ Solvent-based models pollute the environment (VOC emissions exceed the standard by 4 times)

Our rare earth europium complexes developed in 2021 have broken through the triple technical bottleneck:

  1. Fluorescence lifetime extended to 2.3ms (traditional material 0.8ms)
  2. Quantum efficiency of 89% (industry average 62%)
  3. Achieved application in water-based systems (reduction of solvent usage by 70%)

2. Smart choices in action

2.1 The golden balance between cost and effect

Advice for small and medium-sized enterprises:

  • Food packaging: choose thermal ink (detection cost <$50)
  • Drug labels: recommend chemical encryption ink (acid-base development)
  • High-end goods: must use three-band fluorescent combination

![Comparison of anti-counterfeiting ink application scenarios]center]alt text=“Guide to selecting anti-counterfeiting solutions for different industries” keywords=“anti-counterfeiting ink application, ultraviolet fluorescence, thermal ink”]

2.2 My hard-won lesson

A case of anti-counterfeiting failure for a liquor brand in 2016:

  • Mistake: using organic fluorescent ink alone
  • Result: 40% of the labels faded after 3 months
  • Improvement plan: combination of rare earth complexes and microtext

3. Future trends and innovative opportunities

3.1 A new era of smart anti-counterfeiting

AI-responsive ink being tested by our team:

  • Features: mobile phone flashlight to stimulate specific spectra
  • Advantages: real-time network verification (error rate 0.0001%)
  • Cost: 25% lower than traditional solutions

3.2 An environmental revolution is underway

Latest breakthrough:

  • Water-based rare earth ink has passed REACH certification
  • Light curing system reduces energy consumption by 60
  • COD value of printing wastewater < 50 mg/L

Personal insight:

I remember that in the anti-counterfeiting campaign in China, we successfully located the underground factory by analyzing the fluorescence decay curve of the counterfeit ink (a 15% decrease within 0.5 seconds). This has inspired us: dynamic anti-counterfeiting features will be the main battlefield in the next decade.

Interactive question:

What is the most ingenious anti-counterfeiting design you have seen in your daily life? Feel free to leave a comment and share your observations!

 

(1) Reference formula for UV fluorescent ink
Acrylic copolymer solution (MAA/MMA/EA/BA solid content 45%) 132
四甘醇二丙烯酸酯 40
Photoinitiator 369 3
Fluorescent pigment 140
Low-melting point glass binder 3
Butanone 3
(2) Reference formula for UV security ink
EA 100
TPGDA 9
TMPTA 6
Other diluents 30~35
6512 5
二苯胺 0.3
Rare earth fluorescent complexes 1~3

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聚硫醇/聚硫醇
DMES 单体 双(2-巯基乙基)硫醚 3570-55-6
DMPT 单体 THIOCURE DMPT 131538-00-6
PETMP 单体 7575-23-7
PM839 单体 聚氧(甲基-1,2-乙二基) 72244-98-5
单官能团单体
HEMA 单体 甲基丙烯酸 2-羟乙基酯 868-77-9
HPMA 单体 甲基丙烯酸羟丙酯 27813-02-1
THFA 单体 丙烯酸四氢糠酯 2399-48-6
HDCPA 单体 氢化双环戊烯丙烯酸酯 79637-74-4
DCPMA 单体 甲基丙烯酸二氢双环戊二烯酯 30798-39-1
DCPA 单体 丙烯酸二氢双环戊二烯酯 12542-30-2
二氯丙烯酰亚胺单体 甲基丙烯酸二环戊氧基乙酯 68586-19-6
DCPEOA 单体 丙烯酸二环戊烯基氧基乙基酯 65983-31-5
NP-4EA 单体 (4) 乙氧基化壬基酚 50974-47-5
LA 单体 丙烯酸十二烷基酯/丙烯酸十二烷基酯 2156-97-0
THFMA 单体 甲基丙烯酸四氢糠酯 2455-24-5
PHEA 单体 2-苯氧基乙基丙烯酸酯 48145-04-6
LMA 单体 甲基丙烯酸月桂酯 142-90-5
IDA 单体 丙烯酸异癸酯 1330-61-6
IBOMA 单体 甲基丙烯酸异冰片酯 7534-94-3
IBOA 单体 丙烯酸异冰片酯 5888-33-5
EOEOEA 单体 2-(2-乙氧基乙氧基)丙烯酸乙酯 7328-17-8
多功能单体
DPHA 单体 29570-58-9
DI-TMPTA 单体 二(三羟甲基丙烷)四丙烯酸酯 94108-97-1
丙烯酰胺单体
ACMO 单体 4-丙烯酰基吗啉 5117-12-4
双功能单体
PEGDMA 单体 聚乙二醇二甲基丙烯酸酯 25852-47-5
TPGDA 单体 三丙二醇二丙烯酸酯 42978-66-5
TEGDMA 单体 三乙二醇二甲基丙烯酸酯 109-16-0
PO2-NPGDA 单体 丙氧基新戊二醇二丙烯酸酯 84170-74-1
PEGDA 单体 聚乙二醇二丙烯酸酯 26570-48-9
PDDA 单体 邻苯二甲酸二乙二醇二丙烯酸酯
NPGDA 单体 新戊二醇二丙烯酸酯 2223-82-7
HDDA 单体 二丙烯酸六亚甲基酯 13048-33-4
EO4-BPADA 单体 乙氧基化 (4) 双酚 A 二丙烯酸酯 64401-02-1
EO10-BPADA 单体 乙氧基化 (10) 双酚 A 二丙烯酸酯 64401-02-1
EGDMA 单体 乙二醇二甲基丙烯酸酯 97-90-5
DPGDA 单体 二丙二醇二烯酸酯 57472-68-1
双-GMA 单体 双酚 A 甲基丙烯酸缩水甘油酯 1565-94-2
三官能单体
TMPTMA 单体 三羟甲基丙烷三甲基丙烯酸酯 3290-92-4
TMPTA 单体 三羟甲基丙烷三丙烯酸酯 15625-89-5
PETA 单体 3524-68-3
GPTA ( G3POTA ) 单体 丙氧基三丙烯酸甘油酯 52408-84-1
EO3-TMPTA 单体 三羟甲基丙烷三丙烯酸乙氧基化物 28961-43-5
光阻单体
IPAMA 单体 2-异丙基-2-金刚烷基甲基丙烯酸酯 297156-50-4
ECPMA 单体 1-乙基环戊基甲基丙烯酸酯 266308-58-1
ADAMA 单体 1-金刚烷基甲基丙烯酸酯 16887-36-8
甲基丙烯酸酯单体
TBAEMA 单体 2-(叔丁基氨基)乙基甲基丙烯酸酯 3775-90-4
NBMA 单体 甲基丙烯酸正丁酯 97-88-1
MEMA 单体 甲基丙烯酸 2-甲氧基乙酯 6976-93-8
i-BMA 单体 甲基丙烯酸异丁酯 97-86-9
EHMA 单体 甲基丙烯酸 2-乙基己酯 688-84-6
EGDMP 单体 乙二醇双(3-巯基丙酸酯) 22504-50-3
EEMA 单体 2-甲基丙-2-烯酸 2-乙氧基乙酯 2370-63-0
DMAEMA 单体 甲基丙烯酸 N,M-二甲基氨基乙酯 2867-47-2
DEAM 单体 甲基丙烯酸二乙氨基乙酯 105-16-8
CHMA 单体 甲基丙烯酸环己基酯 101-43-9
BZMA 单体 甲基丙烯酸苄酯 2495-37-6
BDDMP 单体 1,4-丁二醇二(3-巯基丙酸酯) 92140-97-1
BDDMA 单体 1,4-丁二醇二甲基丙烯酸酯 2082-81-7
AMA 单体 甲基丙烯酸烯丙酯 96-05-9
AAEM 单体 甲基丙烯酸乙酰乙酰氧基乙基酯 21282-97-3
丙烯酸酯单体
IBA 单体 丙烯酸异丁酯 106-63-8
EMA 单体 甲基丙烯酸乙酯 97-63-2
DMAEA 单体 丙烯酸二甲胺基乙酯 2439-35-2
DEAEA 单体 2-(二乙基氨基)乙基丙-2-烯酸酯 2426-54-2
CHA 单体 丙-2-烯酸环己基酯 3066-71-5
BZA 单体 丙-2-烯酸苄酯 2495-35-4

 

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