• Title/Summary/Keyword: 광-바이오센서

Search Result 73, Processing Time 0.02 seconds

Transparent Near-infrared Absorbing Dyes and Applications (투명 근적외선 흡수 염료 및 응용 분야)

  • Hyocheol Jung;Ji-Eun Jeong;Sang-Ho Lee;Jin Chul Kim;Young Il Park
    • Applied Chemistry for Engineering
    • /
    • v.34 no.3
    • /
    • pp.207-212
    • /
    • 2023
  • Near-infrared (NIR) absorbing dyes have been applied to various applications such as optical filters, biotechnology, energy storage and conversion, coating additive, and traditionally information-storage materials. Because image sensors used in cellphones and digital cameras have sensitivity in the NIR region, the NIR cut-off filter is essential to achieving more clear images. As energy storage and conversion have been important, diverse NIR absorbing materials have been developed to extend the absorption region to the NIR region, and NIR absorbing materials-based research has proceeded to improve device performances. Adding NIR-absorbing dye with a photo-thermal effect to a self-healable coating system has been attractive for future mobility technology, and more effective self-healing properties have been reported. In this report, the chemical structures of representative NIR-absorbing dyes and state of the art research based on NIR-absorbing dyes are introduced.

The Role of Acid in the Synthesis of Red-Emitting Carbon Dots (장파장 형광 탄소 양자점 제조에 있어서 산의 역할에 대한 연구)

  • Yun, Sohee;Lee, Jinhee;Choi, Jin-sil
    • Applied Chemistry for Engineering
    • /
    • v.33 no.3
    • /
    • pp.309-314
    • /
    • 2022
  • Carbon dots (CDs) are few nanometer-sized carbon-based nanoparticles and emerging candidate materials in various fields such as biosensors and bioimaging due to their excellent optical properties and high biocompatibility. However, most CDs, emitting blue light, have limited their application in biomedical fields due to the low penetration of short-wavelength lights into the biological system. Therefore, there has been enormous need to develop long-wavelength emitting CDs. In this study, red-emitting CDs were successfully synthesized through the hydrothermal reaction of p-phenylenediamine with hydrochloric acid. In addition, the effect of the amount of hydrochloric acid on the formation of carbon dots, resulting in the variation of the chemical structures of CDs, were investigated, which was confirmed with the intensive structural analyses using infrared and X-ray photoelectron spectroscopy. It was found that the chemical structure of CDs governed their optical properties and quantum yield. Therefore, this study provides an insight into the role of acid in forming red-emitting CDs as the optimal probe for biomedical application.

Specification optimization and sensitivity analysis of Si3N4/SiO2 slot and ridge-slot optical waveguides for integrated-optical biochemical sensors (집적광학 바이오케미컬 센서에 적합한 Si3N4/SiO2 슬롯 및 릿지-슬롯 광 도파로 제원 최적화 및 감지도 해석)

  • Jang, Jaesik;Jung, Hongsik
    • Journal of Sensor Science and Technology
    • /
    • v.30 no.3
    • /
    • pp.139-147
    • /
    • 2021
  • Numerical analysis was performed using FIMMWAVE to optimize the specifications of Si3N4/SiO2 slot and ridge-slot optical waveguides based on confinement factor and effective mode area. The optimized specifications were confirmed based on sensitivity in terms of the refractive index of the analyte. The specifications of the slot optical waveguide, i.e., the width of the slot and the width and height of the rails, were optimized to 0.2 ㎛, 0.46 ㎛, and 0.5 ㎛ respectively. When the wavelength was 1.55 ㎛ and the refractive index of the slot was 1.3, the confinement factor and effective mode area of 0.2024 and 2.04 ㎛2, respectively, were obtained based on the optimized specifications. The thickness of the ridge and the refractive index of the slot were set to 0.04 ㎛ and 1.1, respectively, to optimize the ridge-slot optical waveguide, and the confinement factor and effective mode area were calculated as 0.1393 and 2.90 ㎛2, respectively. When the confinement coefficient and detection degree of the two structures were compared in the range of 1 to 1.3 of the analyte index, it was observed that the confinement coefficient and sensitivity were higher in the ridge-slot optical waveguide in the region with a refractive index less than 1.133, but the reverse situation occurred in the other region. Therefore, in the implementation of the integrated optical biochemical sensor, it is possible to propose a selection criterion for the two parameters depending on the value of the refractive index of the analyte.

Design and Performance Evaluation on 2×2 Balanced-Bridge Mach-Zehnder Interferometric Integrated-Optical Biochemical Sensors using SOI Slot Optical Waveguides (SOI 슬롯 광 도파로를 활용한 2×2 Balanced-Bridge Mach-Zehnder 간섭형 집적광학 바이오케미컬 센서 설계 및 성능평가)

  • Hongsik Jung
    • Journal of Sensor Science and Technology
    • /
    • v.32 no.4
    • /
    • pp.223-231
    • /
    • 2023
  • An integrated-optical biochemical sensor structure that can perform homogeneous and surface sensing using a 2×2 balanced-bridge Mach-Zehnder interference structure based on the optimized SOI slot optical waveguide was described, and its performance and characteristics were evaluated. Equations for the two output optical powers were derived and examined using the transfer matrices of a 3-dB coupler and phase shifter (channel waveguide). The length of the 3-dB coupler was determined such that the two output optical powers were same using these formulas. In homogeneous sensing, the effect of the refractive index of an analyte in the range of 1.33-1.36 on the two output optical power distributions was numerically derived, and the sensitivity was calculated based on each output and the difference between the two outputs, the former and the latter being 7.5796-19.0305 [au/RIU] and 15.2601-38.1351 [au/RIU], respectively. In the case of surface sensing, the sensitivity range of the refractive index of 1.337 based on each of the two outputs was calculated as -2.2490--3.5854 [au/RIU] and 1.2194-3.8012 [au/RIU], and the sensitivity range of 4.8048-7.0694 [au/RIU] was confirmed based on the difference between the two outputs.

Simulation of Resonance Shift and Quality Factor for Opto-fluidic Ring Resonator (OFRR) Biosensors (광-유체링공진기(OFRR) 바이오센서에 관한 공진이동과 양호도의 시뮬레이션)

  • Cho, Han-Keun;Han, Jin-Woo;Yang, Gil-Mo
    • Journal of Biosystems Engineering
    • /
    • v.36 no.1
    • /
    • pp.23-32
    • /
    • 2011
  • In this work, the finite element method was used to investigate the shifts of resonance frequencies and quality factor of whispering-gallery-mode (WGM) for an opto-fluidic ring resonator (OFRR) biosensor. To describe the near-field radiation transfer, the time-domain Maxwell's equations were employed and solved by using the in-plane TE wave application mode of the COMSOL Multiphysics with RF module. The OFRR biosensor model under current study includes a glass capillary with a diameter of 100 mm and wall thickness of 3.0 mm. The resonance energy spectrum curves in the wavelength range from 1545 nm to 1560 nm were examined under different biosensing conditions. We mainly studied the sensitivity of resonance shifts affected by changes in the effective thickness of the sensor resonator ring with a 3.0 mm thick wall, as well as changes in the refractive index (RI) of the medium inside ring resonators with both 2.5 mm and 3.0 mm thick walls. In the bulk RI detection, a sensitivity of 23.1 nm/refractive index units (RIU) is achieved for a 2.5 mm thick ring. In small molecule detection, a sensitivity of 26.4 pm/nm is achieved with a maximum Q-factor of $6.3{\times}10^3$. These results compare favorably with those obtained by other researchers.

Rapid Detection Methods for Food-Borne Pathogens in Milk and Dairy Products using an Optical Biosensor (광바이오센서를 이용한 우유 및 유제품의 식중독균 신속검출법)

  • Choi, Eun-Young;Chang, Jin Hee;Hong, Sung Wook;Kim, So-Young;Bae, Hyo Ju;Park, Beom Young;Oh, Mi-Hwa
    • Journal of Dairy Science and Biotechnology
    • /
    • v.31 no.2
    • /
    • pp.165-170
    • /
    • 2013
  • Milk and dairy products are not only excellent foods for humans, providing plentiful varied nutrients, but are also a good medium for detrimental food-borne pathogens. Although the food safety field has stabilized due to standardization of food processing, such as the hazard analysis critical control point (HACCP), outbreaks and cases caused by food-borne pathogens still occur at high rates. In approximately 30% of cases, the disease-causing pathogenic organism is undetermined. Recently, a biosensor was developed that has a simple and fast response and overcomes the problems of conventional methods such as cultivation, immuno-assay, polymerase chain reaction, and microarray. Due to the high selectivity and sensitivity of optical biosensors, it is a suitable method for the immediate detection of food-borne pathogens in milk and dairy products.

  • PDF

A Study on Dip-Pen Nanolithography Process to fabricate Two-dimensional Photonic Crystal for Planar-type Optical Biosensor (평판형 광-바이오센서용 2차원 광자결정 제작을 위한 Dip-Pen Nanolithography 공정 연구)

  • Kim Jun-Hyong;Lee Jong-Il;Lee Hyun-Yong
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
    • /
    • v.19 no.3
    • /
    • pp.267-272
    • /
    • 2006
  • Optical waveguide based on symmetric and asymmetric Mach-Zehnder interferometer(MZI) type was designed, fabricated and measured the optical characteristics for the application of biosensor. The wavelength of the input optical signal for the device was 1550 nm. And the difference of refractive index was $0.45\;{\Delta}\%$ between core and cladding of the device. The TM(Transverse Magnetic) mode optical properties of the biosensor were analyzed with the refractive index variation of gold thin film deposited for overclad. Nowadays, nano-photonic crystal structures have been paied much attention for its high optical sensitivity. There is a technique to realize the structure, which is called Dip-Pen Nanolithography(DPN) process. The process requires a nano-scale process patterning resolution and high reliability. In this paper, two dimensional nano-photonic crystal array on the surface was proposed for improving the sensitivity of optical biosensor. And the Dip-Pen Nanolithogrphy process was investigated to realize it.

수직 정렬된 실리콘 와이어 어레이의 제작 방법과 동심원형 p-n 접합 태양전지의 제조 및 동향

  • Kim, Jae-Hyeon;Baek, Seong-Ho;Jang, Hwan-Su;Choe, Ho-Jin;Kim, Seong-Bin
    • Proceedings of the Materials Research Society of Korea Conference
    • /
    • 2010.05a
    • /
    • pp.12.2-12.2
    • /
    • 2010
  • 반도체 소자, 바이오 센서, 태양전지 등에서 집적도 및 소자 성능 향상을 위해서 최근 실리콘 소재를 위주로 한 수직 정렬형 와이어 어레이와 같은 3차원 구조의 소재에 대한 연구가 많이 진행되고 있다. 깊은 반응성 이온 식각법(DRIE: Deep Reactive Ion Etching)과 같은 건식 식각법으로 종횡비가 높은 실리콘 와이어 어레이를 제작할 수 있지만 시간과 공정비용이 많이 소요된다는 단점이 있고 양산성이 없다. 이를 극복하기 위해서 VLS (Vapor-Liquid-Solid)방법이 연구되고 있지만 촉매로 사용되는 금속의 오염으로 인한 소자 성능의 저하를 피할 수가 없다. 본 연구진에서 연구하는 있는 전기화학적 식각법을 사용하면 이러한 문제를 극복하고 매우 정렬이 잘 된 실리콘 와이어 어레이를 제작할 수 있으며 최적 조건을 정립하면 균일하고 재현성 있는 다양한 종횡비의 기판 수직형 실리콘 와이어 어레이를 제작할 수 있다. 또한, 귀금속 촉매 식각법은 금속 촉매를 사용하여 식각을 하지만 VLS 방법과 달리 Top-down 방법을 사용하기 때문에 최종 공정에서 용액에 담구어 귀금속을 식각하여 제거 하면 귀금속 촉매가 실리콘을 오염시키는 일은 배제할 수 있다. 귀금속 촉매 식각법의 경우 사용되는 촉매의 다양화, 포토리소그래피 방법, 그리고 식각 용액의 조성 변화에 따라 다양한 형상의 와이어 어레이를 제작할 수 있으며 이에 대한 결과를 소개하고자 한다. 3차원 실리콘 와이어 어레이를 사용하여 동심원형 p-n접합 와이어 어레이를 제작하면 소수캐리어의 확산거리가 짧아도 짧은 동심원 방향으로 캐리어를 포집할 수 있고 태양광의 입사는 와이어 어레이의 수직 방향이므로 태양광의 흡수도 효율적으로 할 수 있기 때문에 실리콘의 효율 향상을 달성할 수 있다. 이에 대한 본 연구진의 연구결과 및 최근 연구 동향을 발표하고자 한다.

  • PDF

Laser Fabrication of Graphene-based Materials and Their Application in Electronic Devices (레이저 유도에 의한 그래핀 합성 및 전기/전자 소자 제조 기술)

  • Jeon, Sangheon;Park, Rowoon;Jeong, Jeonghwa;Hong, Suck Won
    • Journal of the Microelectronics and Packaging Society
    • /
    • v.28 no.1
    • /
    • pp.1-12
    • /
    • 2021
  • Here, we introduce a laser-induced graphene synthesis technology and its applications for the electric/electronic device manufacturing process. Recently, the micro/nanopatterning technique of graphene has received great attention for the utilization of these new graphene structures, which shows progress developments at present with a variety of uses in electronic devices. Some examples of practical applications suggested a great potential for the tunable graphene synthetic manners through the control of the laser set-up, such as a selection of the wavelength, power adjustment, and optical techniques. This emerging technology has expandability to electric/electronic devices combined together with existed micro-packaging technology and can be integrated with the new processing steps to be applied for the operation in the fields of biosensors, supercapacitors, electrochemical sensors, etc. We believe that the laser-induced graphene technology introduced in this paper can be easily applied to portable small electronic devices and wearable electronics in the near future.

Ex Vivo Raman Spectroscopy Measurement of a Mouse Model of Alzheimer's Disease (라만 기반 치매 모델의 뇌조직 분광 특성 측정)

  • Ko, Kwanhwi;Seo, Younghee;Im, Seongmin;Lee, Hongki;Park, Ji Young;Chang, Won Seok;Kim, Donghyun
    • Korean Journal of Optics and Photonics
    • /
    • v.33 no.6
    • /
    • pp.331-337
    • /
    • 2022
  • Raman spectroscopy is an optical technique that can identify molecules in a label-free manner, and is therefore heavily investigated in various areas ranging from biomedical engineering to materials science. Probe-based Raman spectroscopy can perform minimally invasive chemical analysis, and thus has potential as a real-time diagnostic tool during surgery. In this study, Raman experimentation was calibrated by examining the Raman shifts with respect to the concentrations of chemical substances. Raman signal characteristics, targeted for normal mice and cerebral tissues of the 5xFAD dementia mutant model with accumulated amyloid beta plaques, were measured and analyzed to explore the possibility of diagnosis of Alzheimer's disease. The application to the diagnosis of dementia was cross-validated by measuring Raman signals of amyloid beta. The results suggest the potential of Raman spectroscopy as a diagnostic tool that may be useful in various areas of application.