Page 26 - MSAM-3-4
P. 26

Materials Science in Additive Manufacturing                           Additive manufacturing of active optics



            SLA, TPP, DIW, and SLS, researchers and engineers have   Availability of data
            been able to produce high-performance optical devices
            that incorporate cutting-edge materials such as QDs,   Not applicable.
            UCNPs, and organic semiconductors.                 References
              These advancements have enabled the development of   1.   Camposeo A, Persano L, Farsari M, Pisignano D. Additive
            innovative applications, including advanced optoelectronic   manufacturing: Applications and directions in photonics
            devices, integrated photonic circuits, and metasurfaces   and optoelectronics. Adv Opt Mater. 2019;7(1):1800419.
            with highly controllable light manipulation properties. The      doi: 10.1002/adom.201800419
            ability to customize and optimize light propagation, beam
            steering, and wavelength control has paved the way for new   2.   Yang L, Mayer F, Bunz UH, Blasco E, Wegener M. Multi‑
            possibilities in fields ranging from telecommunications   material multi-photon 3D laser micro-and nanoprinting.
            and quantum computing to medical imaging and AR.      Light Adv Manuf. 2021;2(3):296-312.
                                                                  doi: 10.37188/lam.2021.017
              Despite  this  significant progress,  there  are still
            remaining challenges such as improving resolution,   3.   Jiao J.  Femtosecond Laser Additive Manufacturing of
            scalability, and material compatibility. Overcoming these   Nonlinear and Fluorescent Optical Structures. Doctoral
            obstacles will be crucial to realizing the full potential   thesis, Nanyang Technological University, Singapore; 2020.
            of additive manufacturing in optics. As new materials      doi: 10.32657/10356/144184
            and techniques continue to emerge, the future of light-  4.   Zhu  Y,  Tang  T,  Zhao  S,  et al.  Recent  advancements  and
            emitting 3D optical structures looks promising, with   applications in 3D printing of functional optics.  Addit
            potential breakthroughs in photonics, sensing, and optical   Manuf. 2022;52:102682.
            communication technologies.                           doi: 10.1016/j.addma.2022.102682

            Acknowledgments                                    5.   Xu  X,  Madrigal  JB,  Broussier  A,  et al., editors. Quantum
                                                                  emitters based on polymeric structures embedded with
            None.                                                 quantum dots fabricated via photo-polymerization. In:
            Funding                                               Advanced Fabrication Technologies for Micro/Nano Optics
                                                                  and Photonics XIII; United States: SPIE; 2020.
            This work was supported by the Korean National     6.   Zhao Z, Zhou Y, Liu B, et al. Two-photon synthetic aperture
            Research  Foundation  (Nos.  NRF‑2020R1A2C  210233813,   microscopy for minimally invasive fast 3D imaging of native
            NRF‑RS‑2024‑00401786),  Ministry  of  Agriculture,  Food   subcellular behaviors in deep tissue. Cell. 2023;186(11):2475-
            and  Rural  Affairs  (No.  MAFRA:  RS‑2024‑00401642),  and   2491.e22.
            R&D  Program  for  Forest  Science  Technology  (Project      doi: 10.1016/j.cell.2023.04.016
            No.  2023488B10-2325-AA01) provided by Korea Forest
            Service (Korea Forestry Promotion Institute), Envision project.  7.   Fu Y, Zhang S, Ma L, Zhao Z, Liao H, Xie T. Comprehensive
                                                                  advancement  in  endoscopy:  Optical  design,  algorithm
            Conflicts of interest                                 enhancement, and clinical validation for merged WLI and
                                                                  CBI imaging. Biomed Opt Express. 2024;15(2):506-523.
            The authors declare that they have no known competing      doi: 10.1364/BOE.506134
            interests.
                                                               8.   Srivastava S, Ranjan S, Yadav L, et al. Advanced spectroscopic
            Author contributions                                  techniques for characterizing defects in perovskite solar
                                                                  cells. Commun Mater. 2023;4(1):52.
            Conceptualization: Jiannan Jiao, Young-Jin Kim, Shufan Li
            Writing–original draft: Jiannan Jiao, Young-Jin Kim,      doi: 10.1038/s43246-023-00379-y
               Taewon Kim                                      9.   Huang H, Zheng S, Sun W. Beam manipulation for quantum
            Writing–review & editing:  Young-Jin  Kim,  Taewon  Kim,   dot light-emitting diode with an Ag grating and a phase-
               Hyeokin Kang                                       gradient metasurface. Opt Express. 2022;30(16):28345-28357.
                                                                  doi: 10.1364/OE.463772
            Ethics approval and consent to participate
                                                               10.  Chen  X,  Ji  C,  Xiang  Y,  Kang  X,  Shen  B,  Yu  T.  Angular
            Not applicable.                                       distribution of polarized light and its effect on light extraction
                                                                  efficiency in AlGaN deep-ultraviolet light-emitting diodes.
            Consent for publication                               Opt Express. 2016;24(10):A935-A942.
            Not applicable.                                       doi: 10.1364/OE.24.00A935


            Volume 3 Issue 4 (2024)                         20                             doi: 10.36922/msam.5748
   21   22   23   24   25   26   27   28   29   30   31