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[ 2026 ]
  • Zhou, Zifan, Xuan Wang, Yang Yan, Lkhanaajav Mijiddorj, Yu Ding, Tyler Beringer, Parisa Masnadi Khiabani et al. "AIMNET: An IoT-Empowered Digital Twin for Continuous Gas Emission Monitoring and Early Hazard Detection." IEEE Internet of Things Magazine, (2026) https://doi.org/10.1109/MIOT.2025.3638271
  • Hu, Xiao-Ming, Yu Ding, Yang Yan, Chenghao Wang, Binbin Weng, Steve Hardeman, and Ming Xue. "Multi-Sensor and Multi-Model Investigation of Methane Plumes from a Wastewater Treatment Plant to Improve Emission Inversion during the Morning Boundary Layer Transition." In 106th AMS Annual Meeting. AMS, 2026. 

[ 2025 ]

  • Yan, Yang, Lkhanaajav Mijiddorj, Tyler Beringer, Bilguunzaya Mijiddorj, Alex Ho, and Binbin Weng. "Machine Learning-Enhanced NDIR Methane Sensing Solution for Robust Outdoor Continuous Monitoring Applications." Sensors 25, no. 24 (2025): 7691. https://doi.org/10.3390/s25247691
  • Hu, Xiao‐Ming, Wesley T. Honeycutt, Chenghao Wang, Binbin Weng, Bowen Zhou, and Ming Xue. "Observation and simulation of methane plumes during the morning boundary layer transition." Journal of Geophysical Research: Atmospheres 130, no. 7 (2025): e2024JD042317. https://doi.org/10.1029/2024JD042317
  • Pacherrez Gallardo, Diego P., Shu Kawamura, Ryo Shoji, Lina Yoshida, and Binbin Weng. "Thickness-Tunable PDMS-Based SERS Sensing Substrates." Sensors 25, no. 9 (2025): 2690. https://doi.org/10.3390/s25092690
  • Weng, Binbin. "Lead salt thin films, devices, and methods of manufacture." U.S. Patent 12,433,057, issued September 30, 2025. patent link
  • Nazari, Masoumeh, Sumit Goswami, Thirumalai Venkatesan, and Binbin Weng. "Mid-infrared Metalens Engineering based on the High Refractive Index PbSe Material." In CLEO: Science and Innovations, p. SS109_2. Optica Publishing Group, 2025. https://doi.org/10.1364/CLEO_SI.2025.SS109_2
  • Alam, Md Koushik, Masoumeh Nazari, and Binbin Weng. "Study of a perfectly absorbing PbSe metasurface for mid-IR photodetection." In Photonic and Phononic Properties of Engineered Nanostructures XV, vol. 13377, pp. 29-35. SPIE, 2025. https://doi.org/10.1117/12.3045577
  • Liu, Chengsi, Ming Xue, Xiao-Ming Hu, Rong Kong, and Binbin Weng. "Development of a Prototype EnKF-WRF-CH4 Inverse Modeling System for Reginal to Local Methane Emission Retrieval." In 105th Annual AMS Meeting 2025, vol. 105, p. 457509. 2025. bibcode: 2025AMS...10557509L
  • Wang, Qingyu, Xiao-Ming Hu, Wesley T. Honeycutt, Chenghao Wang, Binbin Weng, and Ming Xue. "Mobile CH4 Measurement and Inversion & An Interactive Visualization Platform." In 105th Annual AMS Meeting 2025, vol. 105, p. 451822. 2025. bibcode: 2025AMS...10551822W

[ 2024 ]

  • Xia, Lipeng, Yuheng Liu, Ray T. Chen, Binbin Weng, and Yi Zou. "Advancements in miniaturized infrared spectroscopic-based volatile organic compound sensors: A systematic review." Applied Physics Reviews 11, no. 3 (2024). https://doi.org/10.1063/5.0197236
  • Hemati, Tehere, Gang Yang, and Binbin Weng. "Study of ion charging effect to improve reactive-ion-etching profile of PbSe grating structures." Microelectronic Engineering 289 (2024): 112170. https://doi.org/10.1016/j.mee.2024.112170
  • Tischler, Joseph G., Kiernan E. Arledge, Michael Meeker, Chase T. Ellis, Nazli Sarabi, Vincent Whiteside, Chul Soo Kim, Mijin Kim, Daniel Ratchford, and Binbin Weng. "Mapping phonon polaritons with visible light." In Quantum Sensing and Nano Electronics and Photonics XX, p. PC1289510. SPIE, 2024. https://doi.org/10.1117/12.2692582
  • Nourbakhsh, Milad, Kiernan Arledge, Vincent Whiteside, Jiangang Ma, Joseph Tischler, and Binbin Weng. "Surface Phonon Polaritons from a Sapphire Nanocone Array." Bulletin of the American Physical Society (2024). bibcode: 2024APS..MARY05007N
  • Sultana, Hosna, and Binbin Weng. "Implementing the Geometric Phase for Designing the Axially Asymmetric Metasurface Element." In CLEO: Science and Innovations, pp. JTu2A-164. Optica Publishing Group, 2024. https://doi.org/10.1364/CLEO_AT.2024.JTu2A.164
  • Wang, Qingyu, Xiao-Ming Hu, Petra Maria Klein, Binbin Weng, Ming Xue, Wesley Honeycutt, Sean Crowell, and Chenghao Wang. "Examination of Meteorological Factors and Emissions Sources Leading to the Large Methane (CH4) Enhancements at the ARM Site in Oklahoma." In AGU Fall Meeting Abstracts, vol. 2024, no. 191, pp. A21K-191. 2024. bibcode: 2024AGUFMA21K..191W

[ 2023 ]

  • Weng, Binbin. "Photonic crystal gas sensor." U.S. Patent 11,624,742, issued April 11, 2023. patent link
  • Mi, Chenjia, Matthew L. Atteberry, Varun Mapara, Lamia Hidayatova, Gavin C. Gee, Madalina Furis, Wai Tak Yip, Binbin Weng, and Yitong Dong. "Biexciton-like auger blinking in strongly confined CsPbBr3 perovskite quantum dots." The Journal of Physical Chemistry Letters 14, no. 23 (2023): 5466-5474. https://doi.org/10.1021/acs.jpclett.3c01145
  • Businelle, Michael, Cliff Fitzmorris, and Binbin Weng. "Medicine Dispenser with Patient Compliance Monitoring System." U.S. Patent Application 17/802,423, filed March 16, 2023. patent link
  • Arledge, Kiernan, Michael Meeker, Chase Ellis, Nazli Rasouli Sarabi, Vincent Whiteside, Chul Soo Kim, Mijin Kim, Daniel Ratchford, Binbin Weng, and Joseph Tischler. "Mapping Phonon Polaritons with Visible Light." Bulletin of the American Physical Society 68 (2023). 

[ 2022 ]

  • P. Zhou; Y. Wu; W. Wan; B. Weng*; Z. Yi*, "Perturbation influence of a parity-time optical resonator pair", AIP Advances 12, 085230  (2022)  https://doi.org/10.1063/5.0093142
  • N. Bathaei; B. Weng; H. Sigmarsson*, "Crystallization kinetics of GeTe Phase Change Thin Films Grown by Pulsed Electron-Beam Deposition", Materials Science in Semiconductor Processing, 148, 106781 (2022) https://doi.org/10.1016/j.mssp.2022.106781
  • Q. He, W. Yang, W. Luo, S. Wilhelm, B. Weng*, "Lable-Free Differentiation of Cancer and Healthy Cells based on Machine Learning Algorithms Assisted Fast Raman Imaging" MDPI Biosensors12 (4), 250 (2022) https://doi.org/10.3390/bios12040250
  • T. Hemati, Y. Zou, B. Weng*; "High-Q surface light emission from active parity-time-symmetric gratings", Physical Review Applied 17, 044023 (2022) https://doi.org/10.1103/PhysRevApplied.17.044023
  • J. Wang, P. Marashizadeh, B. Weng, P. Larson, M. C. Altan, Y Liu, "Synthesis, Characterization, and Modeling of Aligned ZnO Nanowires Enhanced Carbon Fiber-Reinforced Composites," MDPI Materials, 15(7), 2618 (2022) https://doi.org/10.3390/ma15072618
  • J. Yang, Z. Pei, E. C. Leon, C. Wickizer, B. Weng, Y. Mao, Q. OU, and Y. Shao, "Cavity quantum-electrodynamical time-dependent density functional theory within Gaussian atomic basis. II. Analytic energy gradient", J. Chem. Phys156, 124104 (2022); https://doi.org/10.1063/5.0082386
  • L. McDowell, J. Qiu, M. Rastkar, B. Weng, Z. Shi, "Integration of Epitaxial IV-VI Pb-Chalcogenide on Group IV Vicinal Ge Substrate to Form p-n Heterogeneous Structure", Crystal Growth & Design, 22, 461-468 (2022); https://doi/abs/10.1021/acs.cgd.1c01074

[ 2021 ]

  • T. Hemati, B. Weng,* "Non-Trivial Lasing Mode From Parity-Time Symmetric Diffraction Gratings", arXiv:2107.10921 (2021)
  • J. Yang, Q. OU, Z. Pei, H. Wang, B. Weng, Z. Shuai, K. Mullen, and Y. Shao, "Quantum-Electrodynamical Time-Dependent Density Functional Theory Within Gaussian Atomic Basis," Journal of Chemical Physics155, 064107 (2021) https://doi.org/10.1063/5.0057542
  • K. Arledge,  B. Uchoa, Y. Zou, B. Weng,* "Chemical Sensing with Topological Photonic Arrays of Circular Waveguides "Physical Review Research, 3, 033106 (2021) https://doi.org/10.1103/PhysRevResearch.3.033106
  • E. Echeverria*, A.J. Austin, N. Dice, A.K. Kalkan, L. Zhang, B. Weng, D. Meyer, and D.N. Mcllroy, "Boron-Induced Metamorphosis on Graphitic Structures - A New Form of Mesoscopic Carbon," Carbon Trends, 2, 100012 (2021)  https://doi.org/10.1016/j.cartre.2020.100012
  • B. Weng*, "Topologically Protected Mid-Infrared Photonic States for Sensing Applications ", Invited Talk, Northeastern Normal University, Sept. 18 (2021)
  • T. Hemati, B. Weng*, "Oriented Growth of Lead Selenide Nanocrystals for Mid-Infrared Photodetector Applications", International Conference on Luminence, Session II: Nanocrystals, quantum dots and nano-structured materials, Changchun, China (2021)
  • K. Arledge, B. Weng*, B. Uchoa, "Topological Sensing with Photonic Arrays of Resonant Circular Waveguides,"  APS March Meeting, Session Talk: U71.00028 (2021)

[ 2020 ]

  • G. Yang, B. Weng,* "Reactive ion etching of PbSe thin films in CH4/H2/Ar plasma atmosphere," Materials Science in Semiconductor Processing, 124, 105596 (2020) https://doi.org/10.1016/j.mssp.2020.105596
  • T. Hemati,  X. Zhang, B. Weng,* "A Direct Oriented-Attachment Growth of Lead-Chalcogenide Mid-Infrared Nanocrystals Film on Amorphous Substrates," Journal of Materials Chemistry C8, 13205-13212 (2020) http://doi.org/10.1039/d0tc02729d
  • T. Hemati, B. Weng,* "Experimental Study of the Size-Dependent Photoluminescence Emission of CBD-Grown PbSe Nanocrystals on Glass," Nano Express, 01, 010030 (2020) https://doi.org/10.1088/2632-959X/ab8bab
  • B. Weng, M. Nanny, J. Suflita and R. Moghanloo "Automatic, Real-Time Surface-Enhanced Raman Scattering (SERS) Analysis," US Patent, Application Number: 16/963,792, July 21 (2020)
  • B. Weng, "Lead Salt Thin Films, Devices, and Methods of Manufacture," Provisional Patent, Application Number: 62967288, January 29 (2020)
  • T. Hemati, X. Zhang, B. Weng,* "Towards a low-cost on-chip mid-IR gas sensing solution: chemical synthesis of lead-salt photonic materials", SPIE Photonics West, Invited Paper of Smart Photonic and Optoelectronic Integrated Circuits XXII conference, Proc. SPIE 11284-42 (2020) (.PDF)

[ 2019 ]

  • J. Salazar, Q. Zeshan, S. Saharokh, B. Weng, H. Sigmarsson, "Frequency Agile Microstrip Patch Antenna Using an Anisotropic Artificial Dielectric Layer (AADL): Modeling and Design," IEEE Access, 10, 1109 (2019) http://doi.org/0.1109/ACCESS.2019.2962160
  • J. Qiu, B. Weng, L. McDowell, Z. Shi, "Low-cost Uncooled MWIR PbSe Quantum Dots Photodiodes," RSC Advances, 9, 42516-42523 (2019) http://doi.org/10.1039/C9RA07664F
  • L. Wang, Y. Wang, Y. Jia, X. Liu, T. Liu, T. Fu, J. Li, B. Weng, X. Zhang, Y. Liu, "Manipulation of phase-transfer ligand exchange dynamics of PbS quantum dots for efficient infrared photovoltaics," Journal of Physical Chemistry C, 123, 50, 30137-30144(2019) https://doi.org/10.1021/acs.jpcc.9b09231
  • Y. Wang, M. An, Y. Jia, L. Wang, J. Li, B. Weng, X. Zhang, Y. Liu, "Pressure-enhanced electronic coupling of highly-passivated quantum dot films for the photovoltaic performance improvement," Applied Physics Letters115, 193902 (2019)  https://doi.org/10.1063/1.5110749
  • T. Hemati, and B. Weng,* “Theoretical Design of Coupled High Contrast Grating (CHCG) Waveguides to Enhanced CO2 Light-Absorption for Gas Sensing Applications,” Journal of Applied Physics125, 154502 (2019)  https://doi.org/10.1063/1.5091933
  • L. McDowell, J. Qiu, B. Weng, Z. Shi, “Growth Study of New Complex Oxide PbOxSe1-x Thin Films by Oxygen Plasma-Assisted Molecular Beam Epitaxy,” ACS Crystal Growth and Design, 19(4), 2253-2258 (2019)  https://doi.org/10.1021/acs.cgd.8b01872
  • N. Bathaei, B. Weng,* and H. Sigmarsson, "Growth Study of GeTe Phase Change Material Using Pulsed Electron-Beam Deposition", Material Science in Semiconductor Processing, 96, 73-74 (2019) https://doi.org/10.1016/j.mssp.2019.02.028
  • B. Weng, "Hybrid Wet Chemical Method for Making Nano-Crystalline PbSe Thin Films," Invention Disclosure, Application Number: 2020-010, October 8 (2019)
  • M. Businelle, B. Weng, C. Fitzmorris, "Bluetooth Enabled Pill Box," Invention Disclosure, Application Number: 2020-001, July 26 (2019)
  • B. Weng, M. Nanny, J. Suflita, R. Moghanloo, "Photonic Cavity Assisted Superhydrofobic Nanostructured Surface-Enhanced Raman Scattering (SERS) Sensors and Methods of Use," Provisional Patent, Application Number: 62/812,629, March 1 (2019)

[ 2018 ]

  • T. Hemati and B. Weng,* invited authors of a chapter “Mid-infrared Photonic Crystals for Gas Sensing Applications” in the book: "Photonic Crystals - A Glimpse of the Current Research Trends.", ISBN 978-953-51-6982-6, InTech Publisher  (2018) http://doi.org/10.5772/intechopen.80042
  • J. Wang, B. Weng, P. Larson, Y. Liu,* "Synthesis and characterization of self-assembled ZnO nanoarrays on hybrid structural fibers", Surfaces and Interfaces16, 188 (2018) https://doi.org/10.1016/j.surfin.2018.10.006
  • T. Hemati and B. Weng,* "Theoretical Study of Leaky-Mode Resonant Gratings for Improving the Absorption Efficiency of the Uncooled Mid-Infrared Phtodetectors", Journal of Applied Physics, 124, 053105 (2018) https://doi.org/10.1063/1.5040373
  • J. Wang, B. Weng,* P. Larson, Y. Liu,* "Synthesis of ZnO Nanoarrays on Carbon Fibers using Combined Atomic Layer Deposition and Hydrothermal Methods", Materials Research Express 05, 065029 (2018) https://doi.org/10.1088/2053-1591/aac845
  • X. Shi, Q. Phan, B. Weng, L. McDowell, J. Qiu, Z. Cai, Z. Shi*, "Study on the Theoretical Limitation of the Mid-Infrared PbSe Junction Detector at High Operation Temperature", Detection 06, 1-16 (2018) https://doi.org/10.4236/detection.2018.61001
  • Z. Shi, J. Qiu, B. Weng, “Photovoltaic Lead-Salt Semiconductor Detectors,” US Patent No.: US9,887,309 B2, Granted Date: 02/06/2018 (.PDF)

[ 2017 ]

  • B. Weng*, J. Qiu, W. Ge, J. Xu and Z. Shi, “Continuous-wave Mid-Infrared Photonic Crystal Light Emitters at Room Temperature,” Applied Physics: B 123, 29 (2017)  DOI: 10.1007/s00340-016-6622-6
  • J. Qiu, B. Weng (co-first author), W. Ge, L. McDowell, Z. Cai, and Z. Shi, “A broadband Pb-chalcogenide/CdS Solar Cells with Tandem Quantum-Dots Embedded in the Bulk Matrix absorption layers by using Chemical Bath Deposition,” Solar Energy Materials and Solar Cells172, 117-123 (2017)  https://doi.org/10.1016/j.solmat.2017.07.025
  • Z. Shi, J. Qiu, B. Weng, “Photovoltaic Lead-Salt Detector (光伏铅盐检测器)”, International Application No.PCT/US2014/043487, CN Patent No. CN105324856B, Granted Date: 11.28.2017 (.PDF)
[ 2016 ]
  • B. Weng*, J. Wang, P. Larson and Y. Liu, “Growth Process Optimization of ZnO Thin Film using Atomic Layer Deposition”, Materials Research Express 3, 126402 (2016) (.PDF)
  • A. Lambrecht, B. Weng and Z. Shi, invited authors of a chapter “Molecular Beam Epitaxy of IV-VI Compounds” in: Saleem Hashmi (editor-in-chief), Reference Module in Materials Science and Materials Engineering. Oxford: Elsevier; PP.1- 11 (2016) (Source link)
[ 2015 ]
  • J. Qiu, B. Weng (co-first author), L. Li, X. Li, and Z. Shi, “Large-scale self-assembled epitaxial growth of highly-ordered 3D micro/nano single-crystalline PbSe pyramid arrays by selective chemical bath deposition”, Materials Research Express 2, 055010 (2015) (.PDF)
  • B. Weng*, J. Qiu, W. Ge, and Z. Shi, “Numerical Analysis of CdS/PbSe Room Temperature Mid-infrared Heterojunction Photovoltaic Detectors”, Proc. SPIE 9451, Infrared Technology and Applications XLI, 945116 (2015) (.PDF)
[ 2014 ]
  • B. Weng*, J. Qiu, L. Zhao, C. Chang, and Z. Shi, “CdS/PbSe Heterojunction for High Temperature Mid-infrared Photovoltaic Detector Applications”, Applied Physics Letters 104, 121111 (2014) (.PDF)
  • J. Qiu, B. Weng, L. Zhao, C. Chang, Z. Shi, X. Li, H. Kim, and Y. Hwang, “Synthesis and Characterization of Flower-like Bundles of ZnO Nanosheets by a Surfactant-free Hydrothermal Process”, Journal of Nanomaterials 2014, 281461 (2014) (.PDF)
  • B. Weng*, J. Qiu, Z. Yuan, P. R. Larson, G. W. Strout, and Z. Shi, “Responsivity Enhancement of Mid-infrared PbSe Detectors using CaF2 Nano-structured Antireflective Coatings”, Applied Physics Letters 104, 021109 (2014) (.PDF)
  • L. Zhao, J. Qiu, B. Weng, C. Chang, Z. Yuan, and Z. Shi, “Understanding Sensitization Behavior of Lead Selenide Photoconductive Detectors by Charge Separation Model”, Journal of Applied Physics 115, 084502 (2014) (.PDF)
  • B. Weng*, J. Qiu, L. Zhao, C. Chang, and Z. Shi, “Theoretical D* Optimization of N+-p Pb1-xSnxSe Long-Wavelength (8-11µm) Photovoltaic Detector at 77K”, Detection 2, 1-6 (2014) (.PDF)
  • B. Weng*, J. Qiu, L. Zhao, Z. Yuan, C. Y. Chang, and Z. Shi, “Recent Development on the Uncooled Mid-infrared PbSe Detectors with High Detectivity”, Photonic West, Invited Paperof Mid-IR photodetectors Session, Proc. SPIE 8993, 899311 (2014) (.PDF)
  • Z. Shi, J. Qiu, Binbin Weng, and Z. Yuan, “Pb-Salt Mid-Infrared Detectors and Method for Making Same,” US Patent Publication No.: US 2014/0252529 A1, Sep. 2014
[ 2013 ]
  • J. Qiu, B. Weng (co-first author), Z. Yuan, and Z. Shi, “Study of Sensitization Process on Mid-infrared Uncooled PbSe Photoconductive Detectors Leads to High Peak Detectivity”, Journal of Applied Physics 113, 103102 (2013) (.PDF)
  • Z. Shi, J. Qiu, B. Weng, Z. Yuan, “Nanostructures CaF2 Index Gradient Antireflective Coatings”, the invent was disclosed by OU Office of Technology Development, No.13NOR040, Feb. 2013
[ 2012 ]
  • B. Weng*, Z. Shi, invited authors of a chapter “Mid-Infrared Surface-Emitting Two Dimensional Photonic Crystal Semiconductor Lasers” in the book: "Photonic Crystal: Innovative Systems, Lasers and Waveguides", ISBN: 978-953-51-0416-2, InTech Publisher (2012) (.PDF)
  • L. li, J. Qiu, B. Weng, Z. Yuan, X. Li, X. Gan, I. R. Sellers, and Z. Shi, “Measurement of the Valence Band-offset in a PbSe/ZnO Heterojunction by X-Ray Photoelectron Spectroscopy”, Applied Physics Letters 101, 261601 (2012) (.PDF)
  • J. Qiu, X. Li, X. Gao, X. Gan, B. Weng, L. Li, Z. Yuan, Z. Shi, and Y. Hwang, “Branched double-shelled TiO2 Nanotube Networks on Transparent Conducting Oxide Substrates for Dye Sensitized Solar Cells”, Journal of Materials Chemistry 22, 23411 (2012) (.PDF)
  • B. Weng*, L. Li, J.Qiu, and Z. Shi, “Recent Development of IV-VI Mid-infrared Photonic Crystal Lasers on Si”, International Symposium on Photonics and Optoelectronics (2012) (.PDF)
  • J. Qiu, F. Zhuge, X. Li, X. Gao, X. Gan, L. Li, B. Weng, Z. Shi, and Y. Hwang, “Coaxial Multi-shelled TiO2 Nanotube Arrays for Dye Sensitized Solar Cells”, Journal of Materials Chemistry 22, 3549 (2012) (.PDF)
[ 2011 ]
  • B. Weng*, J. Ma, L. Wei, L. Li, J. Qiu, J. Xu, and Z. Shi, “Room Temperature Mid-infrared Surface-emitting Photonic Crystal Laser on Silicon”, Applied Physics Letters 99, 221110 (2011) (.PDF)
  • B. Weng*, L. Li, J. Qiu, and Z. Shi, “Mid-infrared lead-salt surface emitting photonic crystal laser on silicon”, Material Research Society Meeting Proceedings (2011)
[ 2010 ]
  • B. Weng*, J. Ma, L. Wei, J.Xu, G. Bi, and Z. Shi, “Mid-infrared Surface-emitting Photonic crystal Microcavity Light Emitter on Silicon”, Applied Physics Letters 97, 231103 (2010) (.PDF)
  • B. Weng*, F. Zhao, J. Ma, G. Yu, J. Xu, and Z. Shi, “Elimination of Threading Dislocations in As-grown PbSe Film on Patterned Si(111) Substrate using MBE”, Applied Physics Letters 96, 251911 (2010) (.PDF)
  • F. Zhao, J. Ma, B. Weng, D. Li, G. Bi, A. Chen, J. Xu, and Z. Shi , “MBE Growth of PbSe Thin Film with a 9 x105 cm-2 Etch-pitas Density on Patterned (1 1 1)-oriented Si”, Journal of Crystal Growth 312, 2695 (2010) (.PDF)
  • J. Ma, M. Curtis, M. Zurbuchen, J. Keay, B. Weng, D. Li, F. Zhao, M. Johnson and Z. Shi, “Growth Mechanism of Cuboid Growth Pits in PbSe Epilayers Grown by MBE”, Journal of Physics D: Applied Physics 43, 455411 (2010) (.PDF)
[ 2008 ]
  • B. Weng, H. Wu, J. Si, and T. Xu, “Band Gap Energies and Reflective Indices of Epitaxial PbSrTe Thin Film”, Chinese Physics Letters 25, 3334 (2008) (.PDF)
  • J. Si, H. Wu, B. Weng, Z. He, and C. Cai, “Study of PbTe/PbSrTe Hetero-structure Mid-infrared Light Emitting Devices", the 15th Chinese Semiconductor Materials, Microwave & Optoelectronic Devices Symposia (2008)
[ 2007 ]
  • B. Weng, L. Qin, J. Huang, Y. Yin, B. Liu, and B. Zhang, “GaN-based Blue Light-emitting Diodes with a Nano-roughened ITO Surface”, Semiconductor Optoelectronics 28, 774 (2007) (.PDF)

       

  • Binbin Weng, H. Wu, J. Si, and T. Xu, “Band Gap Energies and Reflective Indices of Epitaxial PbSrTe Thin Film”, Chinese Physics Letters 25, 3334 (2008)
  • J. Si, H. Wu, Binbin Weng, Z. He, and C. Cai, “Study of PbTe/PbSrTe Hetero-structure Mid-infrared Light Emitting Devices", the 15th Chinese Semiconductor Materials, Microwave & Optoelectronic Devices Symposia (2008)
  • Binbin Weng, L. Qin, J. Huang, Y. Yin, B. Liu, and B. Zhang, “GaN-based Blue Light-emitting Diodes with a Nano-roughened ITO Surface”, Semiconductor Optoelectronics28, 774 (2007)
  • Binbin Weng, H. Wu, J. Si, and T. Xu, “Band Gap Energies and Reflective Indices of Epitaxial PbSrTe Thin Film”, Chinese Physics Letters 25, 3334 (2008)
  • J. Si, H. Wu, Binbin Weng, Z. He, and C. Cai, “Study of PbTe/PbSrTe Hetero-structure Mid-infrared Light Emitting Devices", the 15th Chinese Semiconductor Materials, Microwave & Optoelectronic Devices Symposia (2008)
  • Binbin Weng, L. Qin, J. Huang, Y. Yin, B. Liu, and B. Zhang, “GaN-based Blue Light-emitting Diodes with a Nano-roughened ITO Surface”, Semiconductor Optoelectronics28, 774 (2007)