• 제목/요약/키워드: luminescence effects

검색결과 86건 처리시간 0.025초

광섬유와 LED를 활용한 마카쥬(marquage) 기법의 스마트 토트백 개발 (Development of Smart Tote Bags with Marquage Techniques Using Optical Fiber and LEDs)

  • 박진희;김상진;김주용
    • 패션비즈니스
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    • 제25권1호
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    • pp.51-64
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    • 2021
  • The purpose of this study was to develop smart bags that combining fashion-specific trends and smart information technologies such as light-emitting diodes(LED) and optic fibers by grafting marquage techniques that have recently become popular as part of eco-fashion. We applied e-textiles by designing leather tote bags that could show off LED luminescence. A total of two tote bags, a white-colored peacock design and a black-colored paisley design, divided the LED's light-emitting method into two types, incremental lighting and random light-emission to suit each design, and the locations of the optical fibers were also reversed depending upon the design. The production of circuits for the LEDs and optical fibers was based on the design, and a flexible conductive fabric was laser-cut instead of wire line and attached to the circuit-line location. A separate connector was underwent three-dimensional(3D)-modeling and was connected to high-luminosity LEDs and optic fiber bundles. The optical fiber logo part expressed a subtle image using a white-colored LED, which did not offset the LED's sharp luminous effects, suggesting that using LEDs with fiber optics allowed for the expression of each in harmony without being heterogeneous. Overall, the LEDs and fiber optic fabric were well-harmonized in the fashion bag using marquage techniques, and there was no sense of it being a mechanical device. Also, the circuit part was made of conductive fabric, which is an e-textile product that feels the same as a thin, flexible fabric. The study confirmed that the bag was developed as a smart wearable product that could be used in everyday life.

Pr6O11의 함량 및 열처리 조건에 따른 YPO4:Pr3+ 형광체의 발광 특성 연구 (A Study on the Luminescent Characteristics of YPO4:Pr3+ Phosphor by the Content Ratio of Pr6O11 and Calcination Temperature)

  • 김민준;이성의
    • 한국전기전자재료학회논문지
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    • 제37권1호
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    • pp.68-73
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    • 2024
  • In this study, the praseodymium-doped yttrium phosphate (YPO4:Pr3+) powder, which is well known for its high luminescent efficiency, and long life in the UV range, was synthesized with various content ratios of Pr6O11 and calcination temperature. Crystal structure and luminescent properties of various phosphor powders based on different concentrations and calcination conditions were characterized by XRD (X-Ray Diffraction) and PL (photoluminescence) spectrometers. From the XRD analysis, the structure of YPO4:Pr3+ which is calcinated at 1,200℃ was stable tetragonal phase and crystal size was calculated about 25 nm by Scherrer equation. PL emission of YPO4:Pr3+ with a different content ratio of Pr6O11 by excitation λexc=250 nm shows that 0.75 mol% phosphor powder has maximum PL intensity and PL decreases with the increase of the ratio of Pr6O11 up to 1.25 mol% which is caused by changes of crystallinity of phosphor powders. With increasing dopant ratio, photo-luminescence Emission decreases due to Concentration quenching, which is commonly observed in phosphors. Currently, 0.75 mol% is considered the optimal doping concentration. A hybrid ultraviolet-emitting device incorporating YPO4:Pr3+ fluorescent material with plasma discharge was fabricated to enhance UV germicidal effects while minimizing ozone generation. UV emission from the plasma discharge device was shown at about 200 nm and 350 nm which caused additional emission of the regions of 250 nm, 315 nm, and 370 nm from the YPO4:Pr3+ phosphor.

($A{\beta}-oligomer$로 유도된 Neuro2A 세포주에서 용담사간탕(龍膽瀉肝湯)의 치매 억제 효과 (A Study on the Inhibitory Effect of Yeongdamsagantang on Alzheimer in $A{\beta}-oligomer-induced$ Neuro 2A Cell Lines)

  • 김해수;신유정;박종혁;김승모;백경민;박치상
    • 대한한의학회지
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    • 제29권2호
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    • pp.151-164
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    • 2008
  • Objective: To investigate the effects of Yeongdamsagantang (YDGT) on apoptosis of neuronal cells that can result in dementia. Method: The water extract of the YDGT was tested in vitro for its beneficial effects on neuronal survival and neuroprotective functions, particularly in connection with $A{\beta}$ oligomer-related dementias. $A{\beta}$ oligomers derived from proteolytic processing of the ${\beta}-amyloid$ precursor protein (APP), including the $amyloid-{\beta}$ peptide $(A{\beta})$, play a critical role in the pathogenesis of Alzheimer's disease. A neuroblastoma cell line stably expressing an $A{\beta}$ oligomerassociated neuronal degeneration was used to investigate if YDGT inhibits formation of $A{\beta}$ oligomer. To measure the ATP generating level in mitochondrial membrane, luciferin/luciferase luminescence kit (Promega) and luminator was used, and to survey the protein's apparition, confocal microscopy was used. Result: $A{\beta}oligomer$ had a profound attenuation in the increase in CT105 expressing neuro2A cells from YDGT. Experimental evidence indicates that YDGT protected against neuronal damage from cells, but its cellular and molecular mechanisms remain unknown. We demonstrated that YDGT inhibited formation of $amyloid-{\beta}$ $(A{\beta})$ oligomers, which were the behavior, and possibly causative, features of AD. The decreased $A{\beta}$ oligomer in the presence of YDGT was observed in the conditioned medium of this $A{\beta}oligomer-secreting$ cell line under in vitro. In the cells, YDGT significantly attenuated mitochondrion-initiated apoptosis. Conclusion: (i) a direct $A{\beta}$ oligomer toxicity and the apoptosis initiated by the mitochondria; and (ii) multiple cellular and molecular neuroprotective mechanisms, including attenuation of apoptosis and direct inhibition of $A{\beta}$ oligomer aggregation, underlie the neuroprotective effects of YDGT.

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InGaAs/InAlAs 양자우물구조의 발광특성에 대한 In0.4Al0.6As 버퍼층 성장온도의 영향 (Growth Temperature Effects of In0.4Al0.6As Buffer Layer on the Luminescence Properties of InGaAs/InAlAs Quantum Well Structures)

  • 김희연;류미이;임주영;신상훈;김수연;송진동
    • 한국진공학회지
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    • 제20권6호
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    • pp.449-455
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    • 2011
  • $In_{0.4}Al_{0.6}As$ 버퍼층의 성장온도 변화에 따른 $In_{0.5}Ga_{0.5}As/In_{0.5}Al_{0.5}As$ 다중양자우물(multiple quantum wells, MQWs)의 광학적 특성을 포토루미네션스(photoluminescence, PL)와 시간분해 포토루미네션스(time-resolved PL, TRPL) 측정을 이용하여 분석하였다. $In_{0.4}Al_{0.6}As$ 버퍼층은 기판의 온도를 $320^{\circ}C$에서 $580^{\circ}C$까지 다양하게 변화시키며 $1{\mu}m$ 성장하였으며, 그 위에 $In_{0.5}Al_{0.5}As$ 층을 $480^{\circ}C$에서 $1{\mu}m$ 성장한 후 InGaAs/InAlAs MQWs을 성장하였다. MQWs는 6-nm, 4-nm, 그리고 2.5-nm 두께의 $In_{0.5}Ga_{0.5}As$ 양자우물과 10-nm 두께의 $In_{0.5}Al_{0.5}As$ 장벽으로 이루어졌다. 4-nm QW과 6-nm QW로부터 PL 피크가 나타났으나, $In_{0.4}Al_{0.6}As$ 성장온도 변화가 가장 큰($320^{\circ}C$에서 $580^{\circ}C$까지 변화) 시료는 6-nm QW에서의 PL 피크만 나타났다. 낮은 온도($320^{\circ}C$에서 $480^{\circ}C$까지 변화)에서 성장한 $In_{0.4}Al_{0.6}As$ 버퍼층 위에 성장한 MQWs의 PL 특성이 우수하게 나타났다. 발광파장에 따른 TRPL 결과로 4-nm QW과 6-nm QW에서의 캐리어 소멸시간을 얻었다.

뇌동맥류 코일 색전술시 자체 제작한 Bismuth 차폐체 설치의 피부선량 감소 효과 (Effects of Self-Made Bismuth Shield Installation on Entrance surface Dose Reduction during Endovascular Treatment of Cerebral Aneurysms)

  • 김재석;김영길;최재호
    • 한국방사선학회논문지
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    • 제13권2호
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    • pp.175-183
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    • 2019
  • 뇌신경계 인터벤션 시술은 장시간의 시술로 인해 피부의 수포, 탈모, 홍반 등의 방사선 피폭으로 인한 위해가 빈번히 보고되고 있다. 인체공학적으로 제작된 Bismuth (원자번호 83;Bi) 차폐체를 뇌혈관계 인터벤션 시술에 적용함으로써 의료방사선 피폭으로부터 두피 및 수정체의 방사선 피폭을 최소화하고자 하였다. 측정 부위는 4부위로 후두부(9 points), 양쪽 측두부(12 points), 양쪽 수정체부(6 points), 코 끝부(6 points)이며, 측정 소자는 광자극 형광 선량계(Optically Stimulated Luminescence Dosimeter: OSLD)를 각 지점(points)에 측정기를 부착 후 자체 제작된 Bismuth차폐 기구를 사용 전(A그룹)과 후(B그룹)를 측정한 후 피부표면선량(entrance surface dose)을 비교 분석하였다. A 그룹(Bismuth unshield)과 B 그룹(Bismuth shield)의 피부선량 평균은 A 그룹은 92.44 mGy였고, B 그룹은 67.55 mGy로 측정되었다. A 그룹에 비해 B 그룹에서 평균 26.92% 감소되었다. 후두부의 피부선량 평균은 A 그룹(9 point)은 146.08 mGy, B 그룹(9 point)은 103.23 mGy로 측정되었고 A 그룹에 비해 B 그룹에서 평균 29.32 % 감소하였다. 측두부의 피부선량 평균은 A 그룹(6 point)은 101.90 mGy, B 그룹(6 point)은 72.69 mGy로 측정되었고 A 그룹에 비해 B 그룹에서 평균 28.67% 감소하였다. 수정체부의 피부선량 평균은 A 그룹(3 point)은 27.51 mGy, B 그룹(3 point)은 21.39 mGy로 측정되었고 A 그룹에 비해 B 그룹에서 평균 22.26% 감소하였다. Bismuth 차폐체의 사용은 뇌혈관 중재적 시술 후 나타날 수 있는 일시적 탈모 및 기타 확률적 영향에 따른 방사선 장해를 감소시킬 수 있는 대안이 될 것으로 사료된다.

GQD layers for Energy-Down-shift layer on silicon solar cells by kinetic spraying method

  • 이경동;박명진;김도연;김수민;강병준;김성탁;김현호;이해석;강윤묵;윤석구;홍병희;김동환
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.422.1-422.1
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    • 2016
  • Graphene quantum dots (GQDs), a new kind of carbon-based photo luminescent nanomaterial from chemically modified graphene oxide (CMGO) or chemically modified graphene (CMG), has attracted extensive research attention in the last few years due to its outstanding chemical, optical and electrical properties. To further extended its potential applications as optoelectronic devices, solar cells, bio and bio-sensors and so on, intensive research efforts have been devoted to the CMG. However, the CMG, a suspension of aqueous, have problematic since they are prone to agglomeration after drying a solvent. In this study, we synthesized the GQDs from graphite and deposited on silicon substrate by kinetic spray. The photo luminescent properties of deposited GQD films were analyzed and compared with initial GQDs suspension. In addition, its carbon properties were investigated with GQDs solution properties. The properties of deposited GQD films by kinetic spray were similar to that of the GQDs suspension in water. We could provide a pathway for silicon-based silicon based device applications. Finally, the well-adjusted GQD films with photo luminescence effects will show Energy-Down-Shift layer effects on silicon solar cells. The GQD layers deposited at nozzle scan speeds of 40, 30, 20, and 10 mm/s were evaluated after they were used to fabricate crystalline-silicon solar cells; the results indicate that GQDs play an important role in increasing the optical absorptivity of the cells. The short-circuit current density (Jsc) was enhanced by about 2.94 % (0.9 mA/cm2) at 30 mm/s. Compared to a reference device without a GQD energy-down-shift layer, the PCE of p-type silicon solar cells was improved by 2.7% (0.4 percentage points).

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안와 및 안부속기 종양의 방사선치료에서 백내장의 예방을 위한 렌즈보호 장치의 효용성 (Efficacy of Lens Shielding Device to Prevent Cataract with Radiotherapy for Orbit or Ocular Adnexal Tumor)

  • 조정근;조현상;한태종
    • 한국콘텐츠학회논문지
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    • 제7권12호
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    • pp.139-144
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    • 2007
  • 안와 림프종의 치료에 가장 효과적인 치료법인 방사선 치료는 안구 질환의 증가로 인해 계속 늘어나는 추세이다. 항암화학요법과 치료 기술의 비약적인 발전으로 치료 및 예후가 좋아지고는 있지만 백내장, 안구건조, 망막병증 등의 부작용이 발생되고 있다. 이에 본 연구에서는 안와 림프종의 방사선치료 시 백내장 발생의 방어수단으로써 Lens Shielding Device(이하 LSD)를 고안 제작하였고 이의 제작방법과 방사선 차폐 정도에 대해 알아보았다. 안구 표면에 해당하는 깊이에서 TLD의 측정결과는 3개의 평균값이 5.7%로 나타났고 관심부위인 수정체의 위치에서는 TLD 4.2%, markus chamber 5.1%의 선량값을 나타내었다. 본 연구에서 안와에 발생한 림프종의 방사선 치료로 인한 부작용을 예방하기 위해 제작한 LSD는 치료 중 조사받게 되는 총 30Gy의 선량 중에서 5%에 해당하는 약 1.5Gy의 방사선량만이 수정체와 각막에 영향을 미치는 것으로 확인되어 백내장의 역치선량인 2Gy와 임상적으로 백내장이 발생된다고 보고된 5Gy보다 적은 선량이 조사됨을 알 수 있었다. 방사선 치료 시 발생할 수 있는 여러 부작용의 예방에 유용한 기구임을 확인하였고 환자의 안구와 일치되도록 개인별로 제작하여 착용 시 이물감에 의한 불편을 줄일 수 있을 뿐만 아니라 치료 시 고정 또한 매우 용이함을 검증하였다.

전산화단층촬영에서 촬영 목적 부위와 주변 결정장기에 대한 피폭선량 평가: 선량 권고량 중심으로 (Evaluation of Radiation Exposure Dose for Examination Purposes other than the Critical Organ from Computed Tomography: A base on the Dose Reference Level (DRL))

  • 이서영;김경리;하혜경;임인철;이재승;박형후;곽병준;유윤식
    • 한국방사선학회논문지
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    • 제7권2호
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    • pp.121-129
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    • 2013
  • 최근 다중검출기 CT의 보편화 된 사용으로 환자의 피폭선량이 증가하고 있다. 따라서 광자극발광선량계를 이용해 촬영 목적 부위와 주변 결정장기에 대한 환자의 피폭선량을 측정하고 그에 따른 생물학적 효과를 예측하여 저감화 방안을 제시하고자 하였다. ICRP에서 권고한 표준안을 대상으로 만들어진 인체 모형 표준 팬텀에 교정상수를 부여받은 OSD 선량계를 측정하고자 하는 좌 우 수정체, 갑상선, 촬영의 중심점, 생식선에 부착하여 각 검사 부위별 노출 조건과 동일한 상태에서 환자의 피폭 선량을 모사하였다. OSL 선량계의 평균 교정상수는 $1.0058{\pm}0.0074$이었으며 검사 부위별 주변 결정장기의 등가선량은 좌 우측 수정체의 경우 직접 피폭이 약 50mGy로 최대였으며 간접 피폭되는 경우 0.24mGy, 원거리에서는 0.005mGy미만의 기준 준위 이하로 측정되었다. 갑상선의 경우 두부 검사에서 10.89mGy로 최대였으며 흉부에서 7.75mGy, 복부 및 요추부, 골반부에서는 기준 미만이었다. 생식선의 경우 골반검사에서 21.98mGy로 최대였으며 간접 피폭되는 검사에서 기준 준위 미만에서 6.92mGy까지 피폭되었다. CT 검사에서 DRL에 대한 저감화 방법은 국제기구에서 권고하고 있는 방사선 방어 원칙에 대한 정당한 해석과 제도적 뒷받침이 필요하다. 따라서 환자의 피폭을 최소화하기 위해서는 정당성을 충족하여야 하며 환자의 피폭선량에 미치는 영향들을 체계화하고 조직의 불필요한 피폭을 최소화 하여야 한다.

Positron Annihilation Spectroscopy of Active Galactic Nuclei

  • Doikov, Dmytry N.;Yushchenko, Alexander V.;Jeong, Yeuncheol
    • Journal of Astronomy and Space Sciences
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    • 제36권1호
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    • pp.21-33
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    • 2019
  • This paper focuses on the interpretation of radiation fluxes from active galactic nuclei. The advantage of positron annihilation spectroscopy over other methods of spectral diagnostics of active galactic nuclei (therefore AGN) is demonstrated. A relationship between regular and random components in both bolometric and spectral composition of fluxes of quanta and particles generated in AGN is found. We consider their diffuse component separately and also detect radiative feedback after the passage of high-velocity cosmic rays and hard quanta through gas-and-dust aggregates surrounding massive black holes in AGN. The motion of relativistic positrons and electrons in such complex systems produces secondary radiation throughout the whole investigated region of active galactic nuclei in form of cylinder with radius R= 400-1000 pc and height H=200-400 pc, thus causing their visible luminescence across all spectral bands. We obtain radiation and electron energy distribution functions depending on the spatial distribution of the investigated bulk of matter in AGN. Radiation luminescence of the non-central part of AGN is a response to the effects of particles and quanta falling from its center created by atoms, molecules and dust of its diffuse component. The cross-sections for the single-photon annihilation of positrons of different energies with atoms in these active galactic nuclei are determined. For the first time we use the data on the change in chemical composition due to spallation reactions induced by high-energy particles. We establish or define more accurately how the energies of the incident positron, emitted ${\gamma}-quantum$ and recoiling nucleus correlate with the atomic number and weight of the target nucleus. For light elements, we provide detailed tables of all indicated parameters. A new criterion is proposed, based on the use of the ratio of the fluxes of ${\gamma}-quanta$ formed in one- and two-photon annihilation of positrons in a diffuse medium. It is concluded that, as is the case in young supernova remnants, the two-photon annihilation tends to occur in solid-state grains as a result of active loss of kinetic energy of positrons due to ionisation down to thermal energy of free electrons. The single-photon annihilation of positrons manifests itself in the gas component of active galactic nuclei. Such annihilation occurs as interaction between positrons and K-shell electrons; hence, it is suitable for identification of the chemical state of substances comprising the gas component of the investigated media. Specific physical media producing high fluxes of positrons are discussed; it allowed a significant reduction in the number of reaction channels generating positrons. We estimate the brightness distribution in the ${\gamma}-ray$ spectra of the gas-and-dust media through which positron fluxes travel with the energy range similar to that recorded by the Payload for Antimatter Matter Exploration and Light-nuclei Astrophysics (PAMELA) research module. Based on the results of our calculations, we analyse the reasons for such a high power of positrons to penetrate through gas-and-dust aggregates. The energy loss of positrons by ionisation is compared to the production of secondary positrons by high-energy cosmic rays in order to determine the depth of their penetration into gas-and-dust aggregations clustered in active galactic nuclei. The relationship between the energy of ${\gamma}-quanta$ emitted upon the single-photon annihilation and the energy of incident electrons is established. The obtained cross sections for positron interactions with bound electrons of the diffuse component of the non-central, peripheral AGN regions allowed us to obtain new spectroscopic characteristics of the atoms involved in single-photon annihilation.

Characterization of Optical Properties of Light-Emitting Diodes Grown on Si (111) Substrate with Different Quantum Well Numbers and Thicknesses

  • 장민호;고영호;고석민;유양석;김준연;탁영조;박영수;조용훈
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.313-313
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    • 2012
  • In recent years there have been many studies of InGaN/GaN based light emitting diodes (LEDs) in order to progress the performance of luminescence. Many previous literatures showed the performance of LEDs by changing the LED structures and substrates. However, the studies carried out by the researchers so far were very complicated and sometimes difficult to apply in practice. Therefore, we propose one simple method of changing the thickness and the numbers of multiple quantum wells (MQWs) in order to optimize their effects. In our research, we investigated electrical and optical properties by changing the well thickness and the number of quantum well (QW) pair in LED structures by growing the structure -inch Si (111) wafer. We defined the samples from LED_1 to LED_3 according to MQW structure. Samples LED_1, LED_2 and LED_3 consist of 5-pair InGaN/GaN (3.5 nm/ 4.5 nm), 5-pair InGaN/GaN (3 nm/4.5 nm) and 7-pair InGaN/GaN (3.5 nm/4.5 nm), respectively. We characterized electrical and optical properties by using electroluminescence (EL) measurement. Also, Efficiency droop was analyzed by calculating external quantum efficiency (EQE) with varying injection current. The EL spectra of three samples show different emission wavelength peaks, FWHM and the blueshift of wavelength caused by screening the internal electric field because of the effect of different MQW structure. The results of optical properties show that the LED_2 sample reduce the internal electric field in QW than LED_1 from EL spectra. the increase in the number of QW pairs reduces the strain and increase the In composition in MQW. And, the points of efficiency droop's peak show different trend from LED_1 to LED_3. It is related with the carrier density in active region. Thus, from the results of experiments, we are able to achieve high performance LEDs and a reduction of efficiency droop and emission wavelength blueshift by optimizing MQWs structure.

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