SS-ZXR AM0標準光譜太陽模擬器

NT$100

以無與倫比的準確度在地球上複製太空陽光

AM0 光譜標準定義 根據 ASTM 規定,定義了 AM0 標準光譜,用於空間應用的光模擬器必須滿足以下要求:

  • ASTM AM0 標準光譜 (ASTM E927-10)
  • 照度強度為1366瓦特/平方米
  • 空間非均勻性小於2%
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    描述

    滿足AM0標準光譜的太陽模擬器SS-ZXR——太空應用研究和發展的關鍵工具。由Enlitech工程打造,這款先進的模擬器旨在復現外太空的陽光,這是太空科學和技術的一個關鍵方面。它匹配ASTM AM0標準光譜,產生1366 W/m²的照度強度,並確保空間不均勻性小於2%。搭載仿真自然陽光的氙短弧燈和先進的電漿沉積技術用於AM0濾光片,SS-ZXR模擬器保證高光譜準確性和長工作壽命。無論是為太空特性化太陽能電池還是測試新技術,SS-ZXR太陽模擬器都是您開拓太空科學未來的夥伴。

    隨著太空科學和技術的進步,模擬外太空陽光變得至關重要。根據ASTM規定,定義了AM0標準光譜,而太空應用的光模擬器必須滿足這些要求:

    1. – ASTM AM0標準光譜(ASTM E927-10)
    2. – 照度強度為1366 W/m²
    3. – 空間不均勻性小於2%

    Enlitech採用氙短弧燈作為寬頻光源。氙燈具有6000K的色溫,與自然陽光(5500K)非常接近。SS-ZXR太陽模擬器利用光學模擬軟體來模仿光機系統設計,並運用傅立葉光學技術產生空間上均勻的輻照度。

    SS-ZXR太陽模擬器中的AM0濾光片採用先進的電漿沉積技術,確保高光譜準確性和長壽命。由於優越的光譜評級,SS-ZXR比其他模擬器更適合於特性化太空太陽能電池。

    特點

    1. 光譜精準度

      光譜範圍 Spectral Range:SS-ZXR模擬器在設計上確保了光譜範圍的廣泛,能夠覆蓋AM0光譜中的全部重要波段,展現了對光譜準確性的堅持。
      光譜匹配度 Spectral Match:SS-ZXR通過使用特定類型的光源和濾光系統,精確地匹配了太空中太陽的光譜分佈,體現了對模擬真實性的高度追求。

    2. 模擬環境的真實性
      無大氣過濾模擬 No Atmospheric Filtering Simulation:SS-ZXR設計模擬了太空的真空條件,即無大氣層過濾的太陽輻射,確保了模擬環境的真實性。
      溫度和輻射強度控制 Temperature and Radiation Intensity Control:SS-ZXR提供了可控的溫度和輻射強度設定,以精確模擬太空的極端條件。
    3. 系統的適應性與靈活性
      可調節設計 Adjustable Design:SS-ZXR允許用戶根據不同的測試需求調節光照強度、光譜範圍和照射面積,展現了無與倫比的適應性與靈活性。
      多功能性 Multifunctionality:SS-ZXR支持不同類型的測試,包括材料性能、光伏元件效率、熱性能等,體現了其多功能性。
    4. 成本效益和可維護性
      經濟性 Economy:SS-ZXR在滿足性能要求的同時,考慮到了成本效益,使產品在市場上具有競爭力。
      易維護性 Maintainability:SS-ZXR設計易於維護和升級,確保長期運行的可靠性和效率。
    5. 使用者友善
      操作界面 User Interface:SS-ZXR提供了直觀、易用的操作界面,包括自動化程度高的測試程序和數據記錄,使使用者能夠輕鬆進行操作。
      安全性 Safety:SS-ZXR確保了所有操作對操作人員和設備都是安全的,包括防護措施和緊急停機功能。
    6. 技術支援與服務
      客戶培訓 Customer Training:SS-ZXR提供了充分的客戶培訓,以確保用戶能夠有效利用模擬器進行測試。
      售後支持 After-sales Support:SS-ZXR建立了強大的技術支持和售後服務體系,解決用戶在使用過程中可能遇到的問題。

    實證

    對於AM0太陽光模擬器的使用者而言,選擇符合標準和規格要求的設備是確保產品效能、合規性以及最終成功的重要因素。這不僅影響產品開發和認證過程,也直接影響產品的市場表現和客戶信任。

    Enlitech-AM0-Solar-Simulator-IV-curve-silicon-solar-cells

    IV 曲線檢測

    SS-ZXR 在 AM0 光譜下測量的矽太陽能電池的 IV 曲線。
    Enlitech SS-ZXR配備KA-6000和KA-Viewer,可快速且智慧地掃描和檢測IV曲線,顯著降低設備操作的學習曲線,並有效節省人力和時間成本。 Enlitech SS-ZXR 測量的結果具有極高的準確性,使研究人員能夠在極短的時間內精確掌握每次測量的結果。

    Enlitech-

    光譜圖

    SS-ZXR光譜與AM0光譜的比較。 每個波長部分均為 A 級。
    氙燈提供的光譜非常接近自然陽光,特別是在沒有大氣過濾的情況下模擬太空中的AM0光譜條件時。 它們能夠覆蓋從紫外線到可見光甚至近紅外線的廣泛範圍,這對於測試太空應用中的太陽能電池和材料至關重要。

    Enlitech-

    光譜認證

    SS-ZXR透過採用ASTM E927-10國際法規,取得A級AM0模擬器資格。 藍色虛線是A級的上限,綠色虛線是下限。
    SS-ZXR的光譜皆屬於AM0光譜的A級。
    氙燈技術在太陽模擬領域已廣泛應用和驗證,擁有成熟的技術基礎和良好的可靠性記錄。 是研究機構和製造商的風險較低的選擇

    Enlitech-

    光斑均勻性等級

    根據AM0太陽光模擬器規範,SS-ZXR的光照均勻性2%以內,符合A級標準。
    氙燈系統可以提供高度穩定和均勻的光源,這對於長期的耐久性測試和性能評估非常重要。 這些特性確保了實驗和測試結果的可重複性和可靠性。

    Enlitech-

    光斑穩定性等級

    根據AM0太陽光模擬器規範,SS-ZXR的光照不穩定性合格為A級。
    氙燈具有高光輸出強度和寬廣的可調範圍,使其能夠模擬從低光源到強光的不同環境條件。 這對於模擬太空中的極端照明條件特別有用。

    與市場上其他AM0太陽光模擬器產品比較

    BrandEnlitechN Brand (USA)Y Brand (Japan)
    ModelSS-ZXR9xxxxxAxx
    Efficitive Illuminance Area100 mm x 100 mm4 in. x 4 in.Φ 100 mm
    Spectral MatchAAA
    Spatial UniformityAAB
    Temporal StabilityA+AA
    Illuminance Intensity1 SUN ± 20%1 SUN ± 20%>1 sun
    Beam DirectionUp/Down/Right/Left OptionalDownward onlyVertical or Horizontal
    Spectrum Range300 nm – 1800 nmN/A300 nm – 1400 nm
    PriceContact usHighHigh

    規格

    TypeSpot SizeSpectrumSpatial UniformityTemporal StabilityWorking Distance
    SS-ZXR100100 x 100 mm2AAA+30 cm
    SS-ZXR160160 x 160 mm2AAA50 cm
    *所有Enlitech 光焱科技所設計生產製造的太陽光模擬器均符合GB/T 6494-2017的規定。
    Lighting DirectionGlove Box Integration Location Customization
    Upward lightingIntegrated with glove box, simulator under the glove boxFully customizable, tailor-made
    Downward lightingIntegrated with glove box, simulator above the glove boxFully customizable, tailor-made
    Downward lightingSimulator placed on the desktop
    Horizontal lightingWith dedicated bracket

    1.光譜範圍:300-1800nm

    SS-ZXR 採用氙氣短弧燈作為寬带光源,色溫為 6000K(最接近自然陽光,為 5500K)。 它覆蓋了 300 至 1800nm 的寬光譜範圍,符合 GB/T 6494-2017 規範的 350-1800nm 和 ASTM 300-1400nm。

    2.超高光譜匹配度

    Enlitech SS-ZXR根據ASTM E927-19標準達到了A級或更高的光譜匹配水平。在AM0光譜範圍內,它提供了約為400到1100nm的81.55%輻照度,約為300到400nm的4.67%,其餘約為13.78%。 SS-ZXR的每個波段都達到了A級,確保了在模擬太空太陽源時的最大真實度。 這一特色確保了太空光伏研究人員在開發光伏器件方面的努力,不會因為太陽模擬器輸出光譜不夠精確或製造商使用LED光源的成本削減措施而受到影響,這可能降低了原本可達到的光伏轉換效率。

    3.光強度可達1.4sun(1366瓦特/平方米)

    Enlitech的SS-ZXR太陽模擬器設計時考慮了大面積器件的需求,提供了100 x 100 mm²、160 x 160 mm²和180 x 180 mm²三種不同的照射面積,工作距離範圍從30到50厘米不等。

    光強度保持在1太陽以上,峰值約為1.2sun(1640瓦/平方米,與AM0標準的1366瓦/平方米相比)。具有可選的自動強度調制的可編程控制功能,模擬器可以在不改變光譜的情況下調整強度輸出,強度調整精度為1%,可以在光源穩定之前即進行測量而無需費時等待。

    4.完美準直度

    在太空中,由於不存在明顯的折射或散射,陽光高度準直且均勻。 Enlitech SS-ZXR 採用受半導體行業曝光機原理啟發而專門開發的設計流程,以實現這種精度。

    它具有高度准直,可提供高度准直的光源。 此外,它還利用光學模擬軟體來模擬光學機械系統設計和傅立葉光學技術來產生空間均勻的輻照度。

    5.超低維護成本氙燈光源

    Enlitech的SS-ZXR採用氙燈作為光源,提供寬波長光譜和約6000K的色溫,非常接近陽光。

    這種設計不僅提供類似於自然陽光的光譜,而且需要最少的維護並節省人力。

    6.四向出光

    Enlitech的SS-ZXR太陽模擬器設計時考慮了大面積器件的需求,提供了100 x 100 mm²、160 x 160 mm²和180 x 180 mm²三種不同的照射面積,工作距離範圍從30到50厘米不等。

    客戶還可以選擇光輸出的方向,包括向上、向下、向左和向右,甚至可以將其與手套箱設置完美整合。 這種特殊而靈活的設計使其成為太空太陽能應用研究人員最明智的選擇。

    系統設計

    SS-ZXR 您的太空研究必備品,符合AM0標準光譜

    由Enlitech設計,我們的卓越太陽模擬器忠實地複製了外太空中的陽光,使其成為太空科學和技術的重要工具。
    該模擬器遵循嚴格的ASTM AM0標準光譜,提供1366瓦特/平方米的照度強度,同時確保空間非均勻性低於2%。
    配備氙短弧燈,忠實模擬自然陽光,並使用先進的等離子體沉積技術製造AM0濾光片,SS-ZXR模擬器保證出色的光譜準確性和長壽命。
    無論您是為太空任務量測太陽能電池還是測試開創性技術,SS-ZXR太陽模擬器都是您在開創太空光伏新未來時可靠夥伴。

    應用

    光焱科技 SS-ZXR 是太陽光電領域廣泛應用的理想選擇,尤其是在先進的光學檢測技術方面。它的多功能性和精確度使其非常適合:

    在您的太陽光電研究中,SS-ZXR 能提供精確、可靠且可重複的結果。加入滿意用戶的行列,信賴其專業技術,滿足您先進的光學檢測技術需求。

    Customer TypeApplication FieldPain PointsHow Enlitech SS-ZXR helps solve pain points
    Solar cell manufacturersTesting and verifying solar cell efficiencyHigh cost of testing equipmentUtilize SS-ZXR for its cost-effectiveness and high spectral accuracy to reduce overall testing expenses.
    Space agenciesTesting solar panels in space environmentsNeed to simulate real space environment spectraEmploy SS-ZXR for its ASTM AM0 compliance, closely simulating the solar spectrum in space for accurate panel testing.
    Solar testing laboratoriesProviding testing services for solar productsLooking for versatile and reliable testing equipmentImplement SS-ZXR for its versatility and reliability in solar product testing, thanks to its broad spectrum range and uniform irradiance.
    Universities and research institutionsScientific research and development of new solar technologiesLack of funds to purchase expensive testing equipmentLeverage SS-ZXR’s long working life and high spectral accuracy to support extended research within budget constraints.
    Aerospace companiesTesting equipment used in high altitude and spaceNeed for equipment that highly simulates real conditionsDeploy SS-ZXR for its precise AM0 spectrum simulation, ideal for high-altitude and space equipment testing.
    Electronic product manufacturersTesting solar-powered electronic productsNeed to simulate various lighting conditionsUse SS-ZXR for its wide spectrum range (300~1800 nm) to test products under various lighting conditions accurately.
    Environmental monitoring organizationsTesting performance of solar monitoring equipmentDifficulty in testing equipment under different environmental conditionsEmploy SS-ZXR to simulate a wide range of environmental conditions for comprehensive performance testing.
    Energy consulting firmsProviding solar investment analysis for clientsLack of actual test data to support recommendationsImplement SS-ZXR for detailed performance analysis and testing reports, enhancing investment analysis with solid data.

    客戶實證

    應用文獻

    Fully Additively Manufactured Counter Electrodes for Dye-Sensitized Solar Cells

    Semih Akin, Sungdo Kim, Chul Ki Song, Sang Yong Nam, and Martin Byung-Guk Jun
    Published: 29 March 2024 https://doi.org/10.3390/mi15040464

    … In the present work, we introduce a fully additive manufacturing (AM) approach for the fabrication …
    … by using a solar simulator (Enlitech SS-F5-3A, USA) with a Keithley 2450 source meter …

    Reference to:AM0、SS-F5-3A


    In‐Situ Polymer Framework Strategy Enabling Printable and Efficient Perovskite Solar Cells by Mitigating “Coffee Ring” Effect

    Linfeng Li, Zengqi Huang, Xiangchuan Meng, Zhi Xing, Baojin Fan, Jiaxuan Li, Yiwang Chen
    First published: 06 January 2024 https://doi.org/10.1002/adma.202310752

    … Characterization of perovskite solar cells The current density-voltage (JV) characteristics were generated by the solar simulator (Enlitech,SS-F5-3A, 100 mW cm -2 irradianceand AM 1.5

    Reference to:AM0、SS-F5-3A


    Rational molecular and device design enables organic solar cells approaching 20% efficiency

    Jiehao Fu, Qianguang Yang, Peihao Huang, Sein Chung, Kilwon Cho, Zhipeng Kan, Heng Liu, Xinhui Lu, Yongwen Lang, Hanjian Lai, Feng He, Patrick W. K. Fong, Shirong Lu, Yang Yang, Zeyun Xiao & Gang Li
    Published: 28 February 2024 https://doi.org/10.1038/s41467-024-46022-3

    … Highly sensitive EQE was measured using an integrated system (PECT-600, Enlitech),

    where the photocurrent was amplified and modulated by a lock-in instrument. EQE EL

    Reference to:AM0、EQE、PECT-600


    Nitrogen-Blowing Assisted Strategy for Fabricating Large-Area Organic Solar Modules with an Efficiency of 15.6%

    Yingying Cheng, Yitong Ji, Dongyang Zhang, Xiangda Liu, Zezhou Xia, Xiujun Liu, Xueyuan Yang, and Wenchao Huang
    Published: 4 June 2024 https://doi.org/10.3390/polym16111590

    SS-X50, Enlitech, Shanghai, China) under standard AM 1.5G
    … solar cell (SRC2020, Enlitech) to ensure a consistent …

    … evaluation system (QE-R, Enlitech). The absorption and transmission …

    Reference to:AM0、SS-X50、SRC2020、QE-R


    A Dual‐Functional Molecule for Efficient and Stable CsPbI3‐based 2D Dion‐Jacobson Perovskite Solar Cells

    Mingyue Xiao, Bin Chen, Li Pan, Liya Zheng, Runze Yu, Zhu Fang, Gang Chen
    First published: 10 June 2024 https://doi.org/10.1002/solr.202400244

    … The JV measurements of the solar cell devices were performed using a Keithley 2400 digital source meter under the illumination of a solar simulator (SS-F5-3A, Enlitech) with an AM 1.5

    Reference to:AM0、SS-F5-3A


    Eliminating the Burn‐in Loss of Efficiency in Organic Solar Cells by Applying Dimer Acceptors as Supramolecular Stabilizers

    Yanxun Li, Feng Qi, Baobing Fan, Kai-Kai Liu, Jifa Yu, Yuang Fu, Xianzhao Liu, Zhen Wang, Sen Zhang, Guanghao Lu, Xinhui Lu, Qunping Fan, Philip C. Y. Chow, Wei Ma, Francis R. Lin, Alex K.-Y. Jen
    First published: 04 April 2024 https://doi.org/10.1002/adma.202313393

    … solar simulator (Enlitech SS-F5, Enlitech) along with AM 1.5 G spectra which intensity was calibrated by the certified standard silicon solar cell at 100 mW/cm2. EQE spectra were …

    Reference to:AM0、SS-F5、EQE


    Large-Area Perovskite Solar Module Produced by Introducing Self-Assembled L-Histidine Monolayer at TiO2 and Perovskite Interface

    Hung-Chieh Hsu, Jung-Che Tsao, Cheng-Hsien Yeh, Hsuan-Ta Wu, Chien-Te Wu, Shih-Hsiung Wu and Chuan-Feng Shih
    Published: 4 August 2024 https://doi.org/10.3390/nano14151315

    … Current density–voltage (J–V) curves were generated by using a solar simulator (Enlitech SS-F5-3A) at AM 1.5G and 100 mW/cm2 illumination and a source meter (Keithley 2400) with … 

    Reference to:AM0、SS-F5-3A


    A molecular dynamics simulation route towards Eu-doped multi-component transparent spectral conversion glass-ceramics

    Xiuxia Xu, Chenhao Wang , Di Wang, Wenyan Zheng, Zhiyu Liu, Jincheng Du, Xusheng Qiao, Xianping Fan, Zhiyu Wang , Guodong Qian
    Available online 1 February 2024 https://doi.org/10.1016/j.jre.2024.01.016
    -F5-3A solar simulator (Enlitech, Taiwan) providing AM 1.5 spectrum at 100 mW/cm 2 . The intensity was calibrated by an SRC-2020 standard silicon solar cell (Enlitech, Taiwan, China) …

    Reference to:AM0、SS-F5-3A、SRC-2020


    On the role of asymmetric molecular geometry in high-performance organic solar cells

    Jinfeng Huang, Tianyi Chen, Le Mei, Mengting Wang, Yuxuan Zhu, Jiting Cui, Yanni Ouyang, Youwen Pan, Zhaozhao Bi, Wei Ma, Zaifei Ma, Haiming Zhu, Chunfeng Zhang, Xian-Kai Chen, Hongzheng Chen & Lijian Zuo
    Published: 16 April 2024 https://doi.org/10.1038/s41467-024-47707-5

    … The J–V measurement was performed via the solar simulator (SS-X50, Enlitech) and AM 1.5G spectra, calibrating the intensity of the certified standard silicon solar cell (KG2) at 100 mW …

    Reference to:AM0、SS-X50


    SrFx‐based electron‐selective contact with high tolerance to thickness for crystalline silicon solar cells enabling efficiency over 21%

    Chunfang Xing, Conghui Jiang, Wenbo Gu, Xinliang Lou, Kun Gao, Yuhang Song, Beibei Shao, Kun Li, Xinyu Wang, Dacheng Xu, Xiaohong Zhang, Yusheng Wang, Xinbo Yang, Baoquan Sun
    First published: 15 August 2023 https://doi.org/10.1002/pip.3733

    … -based devices were tested using a solar simulator (Enlitech) under standard air mass (AM) 1.5-G one-sun conditions and EQE measurement system (Enlitech), respectively. The higher …

    Reference to:AM0、EQE

    Synergistic Modification for Efficient Perovskite Solar Cells with Small Voltage Loss

    You He,Hua Dong,Cong Chen,Feng Hao,Fei Long,Jilin Wang,Chuantian Zuo and Liming Ding
    Published: October 26, 2023 https://doi.org/10.1021/acsami.3c10430

    … -based solar simulator (Enli Tech, AM 1.5G, 100 mW/cm 2 ). The external quantum efficiency (EQE) was measured by using a QE-R3011 measurement system (Enli Tech). Absorption…

    Reference to:AM0、EQE、QE-R3011


    Crystallization and orientation modulation enable highly efficient doctor-bladed perovskite solar cells

    Jianhui Chang, Erming Feng, Hengyue Li, Yang Ding, Caoyu Long, Yuanji Gao, Yingguo Yang, Chenyi Yi, Zijian Zheng & Junliang Yang
    Published: 29 June 2023 https://doi.org/10.1007/s40820-023-01138-x

    … The devices were illuminated by a xenon-lamp-based solar simulator (Enlitech SS-X, AM 1.5G), calibrated by a standard silicon solar cell with a light intensity of 1 Sun …

    Reference to:AM0、SS-X


    Aspartate all-in-one doping strategy enables efficient all-perovskite tandems

    Shun Zhou, Shiqiang Fu, Chen Wang, Weiwei Meng, Jin Zhou, Yuanrong Zou, Qingxian Lin, Lishuai Huang, Wenjun Zhang, Guojun Zeng, Dexin Pu, Hongling Guan, Cheng Wang, Kailian Dong, Hongsen Cui, Shuxin Wang, Ti Wang, Guojia Fang & Weijun Ke
    Published: 08 November 2023 https://doi.org/10.1038/s41586-023-06707-z

    … J–V measurements were performed using a Keithley 2400 source meter and a solar simulator (SS-X50, Enlitech) along with AM 1.5 G spectra. The intensity of the spectra was calibrated …

    Reference to:AM0、SS-X50


    Iodine-trapping strategy for light-heat stable inverted perovskite solar cells under ISOS protocols

    Xiaodong Li, Hui Yang, Acan Liu, Chunyan Lu, Haobo Yuan, Wenxiao Zhang and  Junfeng Fang
    First published: 07 Nov 2023 https://doi.org/10.1039/D3EE03405D

    … To calibrate the initial illumination intensity to 100 mW cm −2 , the PSC is first measured under a solar simulator (Enlitech, SS-F5-3A) with simulated AM 1.5G illumination (450 W xenon …

    Reference toAM0、SS-F5-3A


    Lifetime over 10000 hours for organic solar cells with Ir/IrOx electron-transporting layer

    Yanxun Li, Bo Huang, Xuning Zhang, Jianwei Ding, Yingyu Zhang, Linge Xiao, Boxin Wang, Qian Cheng, Gaosheng Huang, Hong Zhang, Yingguo Yang, Xiaoying Qi, Qiang Zheng, Yuan Zhang, Xiaohui Qiu, Minghui Liang & Huiqiong Zhou
    Published: 04 March 2023 https://doi.org/10.1038/s41467-023-36937-8

    … The stability of organic solar cells is a key issue to promote practical applications. Herein, we demonstrate that the device performance of organic solar cells is enhanced by an Ir/IrO x …

    Reference to:AM0


    Versatile organic photovoltaics with a power density of nearly 40 W g− 1 

    Xiangjun Zheng, Lijian Zuo, Kangrong Yan, Shiqi Shan, Tianyi Chen, Guanyu Ding, Bowei Xu, Xi Yang, Jianhui Hou, Minmin Shi and Hongzheng Chen
    First published: 04 Apr 2023 https://doi.org/10.1039/D3EE00087G

    , Enlitech) along with AM 1.5G spectra whose intensity was calibrated using a certified standard silicon solar cell (KG2, Enlitech) … system (RE-R, Enlitech). The surface tension values of …

    Reference to:AM0、KG2、RE-R


    Tailoring Self‐Assembled Monolayers for High‐Performance Polymer Solar Cells with Improved Stability

    Jie Hu, Chengliang He, Xiangjun Zheng, Yaokai Li, Xi Yang, Wenyuan Wang, Jie Zhang, Qi Chen, Fei Huang, Weifei Fu, Hongzheng Chen
    First published: 26 January 2023 https://doi.org/10.1002/solr.202201106

    … via the solar simulator (SSF5-3 A, Enlitech) along with AM 1.5 G spectrum. The intensity was calibrated by a standard silicon solar cell (SRC-2020, Enlitech) with KG-2 filter at 100 mW …

    Reference to:AM0、SSF5-3 A、SRC-2020


    Efficient inverted CsPbI3 perovskite solar cells fabricated in common air

    Chunyan Lu, Xiaodong Li, Xuemin Guo, Sheng Fu, Wenxiao Zhang, Haobo Yuan,
    Junfeng Fang
    Published: 15 January 2023 https://doi.org/10.1016/j.cej.2022.139495

    … The JV characteristics were measured using Keithley 2400 sourcemeter under the solar simulator (Enlitech, SS-F5-3A) with simulated AM 1.5G illumination (100 mW cm −2 ). The light …

    Reference to:AM0、SS-F5-3A


    Taurine as a powerful passivator of perovskite layer for efficient and stable perovskite solar cells

    Xian Hou, Zhenjia Yuan, Jinlong Liu, Hongzhen Ma and Fucheng Yu
    First published on 5th June 2023 https://doi.org/10.1039/D3RA02944A

    … the devices were performed using an Enlitech SS-X equipment under AM 1.5 G 100 mW cm …
    … measurement system (QE-R, Enlitech). The electrochemical impedance spectroscopy (EIS) …

    Reference to:AM0、SS-X、QE-R


    Iodine-doped g-C3N4 modified zinc titanate electron transporting layer for highly efficient perovskite solar cells

    Fengyan Xie, Guofa Dong , Minghui Wu , Kechen Wu, Chunlei Huang, Shaowu Du, Yafeng Li, Mingdeng Wei, Caiyun Chen
    First published: April 2023 https://doi.org/10.1016/j.jcis.2022.12.098

    … meter with a SS-F5-3A solar simulator (Enlitech) under one sun (AM 1.5 G, 100 mW cm 2 ) …
    … collected on an QE-R instrument (Enlitech). The surface chemical compositions and energy …

    Reference to:AM0、SS-F5-3A、QE-R

    Tailoring interlayer spacers for efficient and stable formamidinium‐based low‐dimensional perovskite solar cells

    Lei Cheng, Ke Meng, Zhi Qiao, Yufeng Zhai, Runze Yu, Li Pan, Bin Chen, Mingyue Xiao, Gang Chen
    First published: 08 November 2021 https://doi.org/10.1002/adma.202106380 

    … The EQE was measured by the solar-cell spectral-response measurement system (QE-R, Enlitech). For the thermal stability tests, the devices were aged at 85 C in a N 2 -filled glovebox. …

    Reference to:AM0、EQE、QE-R


    Non‐Halogenated Solvents Processed Efficient ITO‐Free Flexible Organic Solar Cells with Upscaled Area

    Feng Zhao, Xiangjun Zheng, Shuixing Li, Kangrong Yan, Weifei Fu, Lijian Zuo, Hongzheng Chen
    First published: 17 March 2022 https://doi.org/10.1002/marc.202200049

    … -response measurement system (QE-R, Enlitech). The EQE background was a black …
    … AM 1.5G light source for 336 h in an inert circumstance. The light source was provided by Enlitech

    Reference to:AM0、QE-R、EQE


    Improving charge transport and reducing non-radiative energy loss via a nonacyclic carbazole-based third component for over 18% efficiency polymer solar cells

    Yongshuai Gong, Runnan Yu, Huaizhi Gao, Zongwen Ma, Yiman Dong, Yi-Jia Su, Tsung-Wei Chen, Chain-Shu Hsu and Zhan’ao Tan
    Published: 16 Feb 2022 https://doi.org/10.1039/D2TA00716A

    R, Enlitech). A highly sensitive EQE was measured using an integrated system (PECT-600, Enlitech)…
    …through the devices (ELCT-3010, Enlitech), and the measurements were carried out …

    Reference to:AM0、PECT-600、ELCT-3010


    100 cm2 Organic Photovoltaic Cells with 23% Efficiency under Indoor Illumination

    Keita Yoshida, Jia-Fu Chang, Chu-Chen Chueh & Tomoya Higashihara
    Published: 22 June 2022 https://doi.org/10.1007/s10118-022-2761-x

    … (SS-F5-3A, Enlitech) along with AM 1.5G spectra (100 mW·cm− …
    … system (PECT-600, Enlitech), where the photocurrent was …
    … the devices (ELCT-3010, Enlitech). AFM height and phase …

    Reference to:AM0、SS-F5-3A、PECT-600、ELCT-3010


    Polypropylene Glycol‐Modified Anode Interface for High‐Performance Perovskite Solar Cells

    Fei Wu, Kangrong Yan, Haotian Wu, Yuanhang Guo, Shiqi Shan, Tianyi Chen, Weifei Fu, Lijian Zuo, Hongzheng Chen
    First published: 03 August 2022 https://doi.org/10.1002/cjoc.202200349

    … Comprehensive Summary The surface properties and chemical interactions are critical for perovskite solar cells (PVSCs). In this work, we show that the polypropylene glycol (PPG) can …

    Reference to:AM0


    Surface passivation and energetic modification suppress nonradiative recombination in perovskite solar cells

    Sijing Zhong, Han Chen , Jinglin Yi , Tao Yang , Ziqi Gan , Xiaozhe Su ,Meijing Li , Zhiming Zhong , Feng Peng , Lei Ying
    Published: 19 April 2022 https://doi.org/10.1007/s40820-022-00854-0

    … 2400) under Enlitech Solar Simulator (AM 1.5G, 100 mW cm −2 ) that calibrated by a standard silicon solar cell from NREL. The EQE spectra were obtained using an Enlitech QE-R

    Reference to:AM0、EQE、QE-R


    High‐efficiency ITO‐free organic photovoltaics with superior flexibility and upscalability

    Xiangjun Zheng, Lijian Zuo, Feng Zhao, Yaokai Li, Tianyi Chen, Shiqi Shan, Kangrong Yan, Youwen Pan, Bowei Xu, Chang-Zhi Li, Minmin Shi, Jianhui Hou, Hongzheng Chen
    First published: 02 March 2022 https://doi.org/10.1002/adma.202200044

    … The EQE data were obtained by using the solar-cell spectral-response measurement system (RE-R, Enlitech). Contact angle measurements were performed using water and …

    Reference to:AM0、EQE、RE-R


    Synergistic effects of bithiophene ammonium salt for high-performance perovskite solar cells

    Chang Xu, Lijian Zuo, Pengjie Hang, Xiangwei Guo, Youwen Pan, Guanqing Zhou, Tianyi Chen, Benfang Niu, Xingqi Xu, Zijian Hong, Dawei Wang, Haiming Zhu, Xuegong Yu, Deren Yang and Hongzheng Chen
    First published: 30 Mar 2022 https://doi.org/10.1039/D2TA01349E

    … examined with a solar simulator (Enlitech, SS-F5-3A) under AM 1.5 G standard light equipped …
    … External quantum efficiency (EQE) was measured using an Enlitech EQE measurement …

    Reference to:AM0、SS-F5-3A、EQE


    LiF-Modified SnO2 Electron Transport Layer Improves the Performance of Carbon-Based All-Inorganic CsPbIBr2 Perovskite Solar Cells

    Yuwen Xing,Haiming Zhang,Zirui Yan,Yuxuan Guo,Wenfu Qin,Yanyun Feng,Sinan Liu,Qingchen He,Siqi Han, and Haina Zhu
    Published October 25, 2022 https://doi.org/10.1021/acs.energyfuels.2c02797

    … devices were measured by an Enlitech SS-F7-3A under AM 1.5G (100 mW/cm 2 ) illumination. The external quantum efficiency spectra (EQE) were collected with an Enlitech QE-R in …

    Reference to:AM0、SS-F7-3A、EQE、QE-R


    Long-term stable perovskite solar cells prepared by doctor blade coating technology using bilayer structure and non-toxic solvent

    Hung-Chieh Hsu, Shih-Hsiung Wu , Yung-Liang Tung , Chuan-Feng Shih
    First published: February 2022 https://doi.org/10.1016/j.orgel.2021.106400

    … were measured by using a solar simulator (Enlitech SS-F5-3A) at AM 1.5G and 100 mW/cm …
    … using a solar cell response measurement system (Enlitech QE-R) at room temperature under …

    Reference to:AM0、SS-F5-3A、QE-R

    資源

    軟體

    Enlitech-IVS-KA6000

    IVS-KA6000 功能

    完全自動的電流和電壓特性測量/IV曲線測量。
    IV曲線多重疊加圖表顯示。
    正向掃描、反向掃描、自動正向和反向掃描測量。
    閱讀更多:鈣鈦礦太陽能電池最全面的IV測量和分析軟件

    Enlitech-photovoltaic-IV-analysis-software-IV-test-KA-Viewer

    KA-Viewer 功能

    理想因子(n)分析
    MMF校正
    溫度係數校正
    閱讀更多:KA-Viewer IV分析軟件

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