Publications

Journal Covers

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Journal Publication

  1. Y.-A. Chen, I.-T. Chen, and C.-H. Chang, “Increasing etching depth of sapphire nanostructures using multilayer etching mask,” Journal of Vacuum Science & Technology B 37, 061606, 2019 [link].
  2. C. Luo, W.-Y. Chang, M. Gao, C.-H. Chang, J. Li, D. Viehland, J. Tian, X. Jiang, “Multi-layered domain morphology in relaxor single crystals with nano-patterned composite electrode,” Acta Materialia 182, 10, 2020 [link].
  3. Y.-A. Chen, S. V. Naidu, Z. Luo, and C.-H. Chang, “Enhancing optical transmission of multilayer composites using interfacial nanostructures,” Journal of Applied Physics 126, 063101, 2019 [link].
  4. X. A. Zhang, I-T. Chen and C.-H. Chang, “Recent progress in near-field nanolithography using light interactions with colloidal particles: from nanospheres to three-dimensional nanostructures,” 2019 Nanotechnology 30 352002 [link].
  5. Z. Luo, B. A. Evans, and C.-H. Chang, “Magnetically Actuated Dynamic Iridescence Inspired by the Neon Tetra,” ACS Nano, 2019, 13, 4, 4657-4666 [link].
  6. J.-H. Min, Y.-A. Chen, I-T. Chen, T. Sun, D. T. Lee, C. Li, Y. Zhu, B. T. O’Connor, G. N. Parsons, and C.-H. Chang, “Conformal physical vapor deposition assisted by atomic layer deposition and its application for stretchable conductors,” Advanced Materials Interfaces2018, 1801379 [link].
  7. W.-Y. Chang, X. A. Zhang, J. Kim, W. Huang, A. Bagal, C.-H. Chang, T. Fang, H. F. Wu, X. Jiang, “Evaluation of Photoacoustic Transduction Efficiency of Candle Soot Nanocomposite Transmitters,” IEEE Transcation on Nanotechnology17(5), p985-993, 2018 [link].
  8. A. Poteet, X. A. Chang, H. Nagai, and C.-H. Chang, “Twin photonic nanojets generated from coherent illumination of microscale spheres and cylinders,” Nanotechnology, 29, 075204, 2018 [link].
  9. W.-Y. Chang, C.-C. Chung, Z. Yuan, C.-H. Chang, J. Tian, D. Viehland, J.-F. Li, J. L. Jones, X. Jiang, “Patterned nano-domains in PMN-PT single crystals,” Acta Materialia, 143, 166-173, 2018 [link].
  10. X. A. Zhang, Y.-A. Chen, A. Bagal, and C.-H. Chang, “Enhanced total internal reflection using low-index nanolattice materials,” Optics Letters, 42(20), 4123-4126, 2017 [link].
  11. A. Bagal, X. A. Zhang, R. Shahrin, E. C. Dandley, J. Zhao, F. R. Poblete, C. J. Oldham, Y. Zhu, G. N. Parsons, C. Bobko, and C.-H. Chang, “Large-Area Nanolattice Film with Enhanced Modulus, Hardness, and Energy Dissipation,” Scientific Reports, 7, 9145, 2017 [link].
  12. J. Tippens, A. Bagal, X. A. Zhang, and C.-H. Chang, “Nanostructured antireflective in-plane solar harvester,” Optics Express, 26(16), A840-A850, 2017 [link].
  13. H. Nagai, A. Poteet, X. A. Zhang, and C.-H. Chang, “Three-Dimensional Colloidal Interference Lithography,” Nanotechnology, 28, 125302, 2017 [link].
  14. Z. Wang, J. Zhao, A. Bagal, E. C. Dandley, C. J. Oldham, T. Fang, G. N. Parsons, and C.-H. Chang, “Wicking Enhancement in Three-Dimensional Hierarchical Nanostructures,” Langmuir, 32, 8029-8033, 2016. [link]
  15. D. Alden, W. Guo, R. Kirste, F. Kaess, I. Bryan, T. Troha, A. Bagal, P. Reddy, Luis H. Hernandez-Balderrama, A. Franke, S. Mita, C.-H. Chang, A. Hoffmann, M. Zgonik, R. Collazo and Z. Sitar, “Fabrication and structural properties of AlN submicron periodic lateral polar structures and waveguides for UV-C applications,” Applied Physics Letters, 108, 261106, 2016. [link]
  16. J.-H. Min, A. Bagal, J. Z. Mundy, C. J. Oldham, B.-I. Wu, G. N. Parsons and C.-H. Chang, “Fabrication and Design of Metal Nano-Accordion Structures Using Atomic Layer Deposition and Interference Lithography,” Nanoscale, 8, 4984-4990, 2016. [linkFigure_JM_NS_web
  17. J.-H. Min, X. A. Zhang, and C.-H. Chang, “Designing unit cell in three-dimensional periodic nanostructures using colloidal lithography,” Optics Express, 24(2), 247983, 2016. [link]JM_Banner
  18. X. A. Zhang, A. Bagal, E. C. Dandley, J. Zhao, C. J. Oldham, B.-I. Wu, G. N. Parsons, and C.-H. Chang, “Ordered 3D Thin-Shell Nanolattice Materials with Near-Unity Refractive Indices,” Advanced Functional Materials, 25, 6644-6649, 2015. [link]Print
  19. A. Bagal, E. C. Dandley, J. Zhao, X. A. Zhang, C. J. Oldham, G. N. Parsons, and C.-H. Chang, “Multifunctional Nano-Accordion Structures for Stretchable Transparent Conductors,” Materials Horizons, 2, 486-494, 2015. Featured on inside front cover. [link]Banner
  20. J. E. Elek, X. A. Zhang, B. Dai, Z. Xu, and C.- H. Chang, “Fabrication of Three-Dimensional Hierarchical Nanostructures using Template-Directed Colloidal Assembly,” Nanoscale, 7, 4406-4410, 2015. [link] TOC
  21. X. A. Zhang, B. Dai, Z. Yuan, and C.-H. Chang, “Sculpting Asymmetric, Hollow-Core, Three-Dimensional Nanostructures Using Colloidal Particles,” Small, 11, 1285-1292, 2015. Featured on inside front cover. [link]cropped-banner-01.png
  22. W-Y Chang, W. Huang, A. Bagal, C.-H. Chang, J. Tian, P. Han, and Xiaoning Jiang, “Study on dielectric and piezoelectric properties of 0.7 Pb(Mg1/3Nb2/3)O3-0.3 PbTiO3 single crystal with nano-patterned composite electrode,” J. Appl. Phys., 114, 114103, 2013. [link]
  23. A. Bagal and C.-H. Chang, “Fabrication of subwavelength periodic nanostructures using liquid immersion Lloyd’s mirror interference lithography,” Optics Letters, 38 (14), 2531, 2013. [link]AB_OL_thumb
  24. X. A. Zhang, J. Elek, and C.-H. Chang, “Three-Dimensional Nanolithography Using Light Scattering from Colloidal Particles,” ACS Nano, 7(7), 6212-6218, 2013. Featured on front cover. [link]ToC Graphic
  25. Q. Yang, X. A. Zhang, A. Bagal, W. Guo, and C.-H. Chang, “Antireflection effects at nanostructured material interfaces and the suppression of thin-film interference,” Nanotechnology, 24, 235202 (2013). [link]QY_Nanotech_coverart
  26. K.-C. Park, H. J. Choi, C.-H. Chang, R. E. Cohen, G. H. McKinley, and G. Barbastathis, “Nanotextured Silica Surfaces with Robust Superhydrophobicity and Omnidirectional Broadband Supertransmissivity,” ACS Nano, 6, no. 5, 3789–3799 (2012). Top-10 most read article of 2012. [link]
  27. C.-H. Chang, L. Tian, W. Hesse, H. Gao, H. J. Choi, M. Siddiqui, and G. Barbastathis, “From two-dimensional self-assembly to three-dimensional nanolithography,” Nano Letters, 2011, 11 (6), pp 2533–2537. [link]
  28. C.-H. Chang, J. A. Dominguez-Caballero, H. J. Choi, and G. Barbastathis, “Nanostructured gradient-index antireflection diffractive optics,”Optics Letters36, 2354-2356 (2011).  [link]
  29. R. K. Heilmann, M. Ahn, A. Bruccoleri, C.-H. Chang, E. M. Gullikson, P. Mukherjee, and M. L. Schattenburg, “Diffraction efficiency of 200 nm-period critical-angle transmission gratings in the soft x-ray and extreme ultraviolet wavelength bands,”Applied Optics, 50, Issue 10, pp. 1364-1373 (2011). [link]
  30. C.-H. Chang, H. J. In, S. Takahashi, M. Deterre, H. J. Choi, K. W. Gotrik, and G. Barbastathis, “Assembling Nanoparticle Catalysts with Nanospheres for Periodic Carbon Nanotube Structure Growth,” Nanotechnology22, 035301 (2011). [link]
  31. D. L. Voronov, M. Ahn, E. H. Anderson, R. Cambie, C.-H. Chang, E. M. Gullikson, R. K. Heilmann, F. Salmassi, M. L. Schattenburg, T. Warwick, V. V. Yashchuk, L. Zipp, and H. A. Padmore, “High-efficiency 5000 lines/mm multilayer-coated blazed grating for EUV wavelengths,” Optics Letters, 35, 2615-2617  (2010). [link]
  32. C.-H. Chang, L. Waller, and G. Barbastathis, “Design and optimization of broadband wide-angle antireflection structures for binary diffractive optics,” Optics Letters, 35, 907-909  (2010). [link]
  33. C.-H. Chang, C.-W. Tan, J. Miao, and G. Barbastathis, “Self-assembled ferrofluid lithography: patterning micro and nanostructures by controlling magnetic nanoparticles,” Nanotechnology20 495301 (2009). [link]
  34. C.-H. Chang, Y. Zhao, R. K. Heilmann, and M. L. Schattenburg, “Spatial-frequency multiplication with multilevel interference lithography,” J. Vac. Sci. Technol. B, 26 (6) 2135-2138 (2008). [link]
  35. C.-H. Chang, Y. Zhao, R. K. Heilmann, and M. L. Schattenburg, “Fabrication of 50 nm period gratings with multilevel interference lithography,” Optics Letters33, 1572-1574 (2008). [link]
  36. C.-H. Chang, R. K. Heilmann, M. L. Schattenburg, and P. Glenn, “Spectral leakage analysis of a shear mode double-pass acousto-optical modulator,” Rev. Sci. Instrum., 79, 033104 (2008). [link]
  37. Y. Zhao, C.-H. Chang, R.K. Heilmann and M.L. Schattenburg, “Phase control in multiexposure spatial frequency multiplication,” J. Vac. Sci. Technol. B25 (6), 2439-2443 (2007). [link]
  38. C.-H. Chang, M. Akilian, and M. L. Schattenburg, “Describing isotropic and anisotropic out-of-plane deformations in thin cubic materials by use of Zernike polynomials,” Applied Optics45 (3), 432-437 (2006). [link]
  39. J. F. Seely, L. I. Goray, B. Kjornrattanawanich, J. M. Laming, G. E. Holland, K. A. Flanagan, R. K. Heilmann, C.-H. Chang, M. L. Schattenburg, and A. P. Rasmussen, “Efficiency of a grazing-incidence off-plane grating in the soft-x-ray region,” Applied Optics,45 (8), 1680-1687 (2006). [link]
  40. M. P. Kowalski, R. K. Heilmann, M. L. Schattenburg, C.-H. Chang, F. B. Berendse, and W. R. Hunter, “Near-normal-incidence extreme-ultraviolet efficiency of a flat crystalline anisotropically etched blazed grating,” Applied Optics45 (8), 1676-1679 (2006). [link]
  41. J. C. Montoya, C.-H. Chang, R. K. Heilmann, and M. L. Schattenburg, “Doppler writing and linewidth control for scanning beam interference lithography,” J. Vac. Sci. Technol. B,23 (6), 2640-2645 (2005). [link]
  42. C.-H. Chang, J. C. Montoya, M. Akilian, A. Lapsa, R. K. Heilmann, and M. L Schattenburg, M. Li, K. A. Flanagan, A. P. Rasmussen, J. F. Seely, J. M. Laming, B. Kjornrattanawanich, and L. I. Goray, “High fidelity blazed grating replication using nanoimprint lithography,” J. Vac. Sci. Technol. B,22 (6), 3260-3264 (2004). [link]
  43. P. T. Konkola, C. G. Chen, R. K. Heilmann, C. Joo, J. C. Montoya, C.-H. Chang, and M. L. Schattenburg, “Nanometer-level repeatable metrology using the Nanoruler,” J. Vac. Sci. Technol. B,21 (6), 3097-3101 (2003). [link]
  44. C.-H. Chang, R. K. Heilmann, R. C. Fleming, J. Carter, E. Murphy, M. L. Schattenburg, T. C. Bailey, J. G. Ekerdt, R. D. Frankel, and R. Voisin, “Fabrication of sawtooth diffraction gratings using nanoimprint lithography,” J. Vac. Sci. Technol. B,21 (6), 2755-2759 (2003). [link]

Selected Conference Presentation

  1. A. Bagal, E. Dandley, J. Zhao, X. A. Zhang, C. Oldham, G. Parsons, and C.-H. Chang, “Fabrication of Stretchable Transparent Conductors using Nano-Accordion Structures,” 59th International Conference on Electron, Ion and Photon Beam Technology and Nanofabrication, San Diego, CA, May 26-29, 2015.
  2. A. Bagal, X. A. Zhang, R. Shahrin, E. C. Dandley, J. Zhao, C. J. Oldham, G. N. Parsons, C. Bobko, and C.-H. Chang, “Fabrication and Mechanical Properties of Porous 3D Nanostructures,” 59th International Conference on Electron, Ion and Photon Beam Technology and Nanofabrication, San Diego, CA, May 26-29, 2015.
  3. J.-H. Min, A. Bagal, J. Z. Mundy, C. J. Oldham, G. N. Parsons, and C.-H. Chang, “Fabrication of Thin Metallic Nanostructures using Atomic Layer Deposition,” 59th International Conference on Electron, Ion and Photon Beam Technology and Nanofabrication, San Diego, CA, May 26-29, 2015.
  4. X. A. Zhang, E. C. Dandley,  A. Bagal, J. Zhao, C. J. Oldham, G. N. Parsons, and C.-H. Chang, “Low-Index Materials with Controllable Ordered Geometry by Three-Dimensional Nanolithography and Atomic Layer Deposition,” 8th International Conference on Nanophotonics, Changchun, China, May 25-28, 2015.
  5. X. A. Zhang, Z. Xu, B. Dai, and C.-H. Chang, “Three-Dimensional Nanolithography Using Colloidal Nanospheres with Oblique and Multiple Exposures,” 58th International Conference on Electron, Ion and Photon Beam Technology and Nanofabrication, Washington, DC, May 27-30, 2014 (invited talk).
  6. A. Bagal, E. Dandley, J. Zhao, C. Oldham, G. Parsons, and C.-H. Chang, “Fabrication of ZnO Nano-Spring for Transparent Stretchable Conductor,” 58th International Conference on Electron, Ion and Photon Beam Technology and Nanofabrication, Washington, DC, May 27-30, 2014.
  7. E. Elek, X. A. Zhang, Z. Xu, and C.-H. Chang, “Design of Hierarchical Three-Dimensional Porous Nanostructures using Template-Directed Colloidal Assembly,” 58th International Conference on Electron, Ion and Photon Beam Technology and Nanofabrication, Washington, DC, May 27-30, 2014.
  8. J.-H. Min, X. A. Zhang, and C.-H. Chang, “Fabrication of Three-Dimensional Periodic Nanostructures in Negative Photoresist Using a Colloidal Phase Mask,” 58th International Conference on Electron, Ion and Photon Beam Technology and Nanofabrication, Washington, DC, May 27-30, 2014 (invited poster).
  9. Z. Wang, A. Bagal, J. Zhao, E. Dandley, C. Oldham, T. Fang, G. Parsons, and C.-H. Chang, “Fabrication of ZnO Three-Dimensional Hierarchical Nanostructures for Wicking Applications,” 58th International Conference on Electron, Ion and Photon Beam Technology and Nanofabrication, Washington, DC, May 27-30, 2014.
  10. T. Rivord, A. Bagal, and C.-H. Chang, “Nanostructured In-Plane Solar Concentrator,” Optical Society of America (OSA) topic meeting on Optics for Solar Energy (SOLAR), Tucson, AZ, November 4-6, 2013.
  11. J. E. Elek, X. A. Zhang, and C.-H. Chang, “Fabrication of Hierarchical Three-Dimensional Nanostructures Using Template-Directed Assembly of Colloidal Particles,” 57th Intl. Conf. on Electron, Ion, Photon Beam Technology and Nanofabrication, Nashville, TN, May 28-31, 2013.
  12. X. A. Zhang and C.-H. Chang, “Fabrication of Periodic Hollow-Shell Nano-Volcano Arrays for Particle Trapping,” 57th Intl. Conf. on Electron, Ion, Photon Beam Technology and Nanofabrication, Nashville, TN, May 28-31,2013
  13. A. Bagal and C.-H. Chang, “Liquid Immersion Lloyd’s Mirror Interference Lithography,” 57th Intl. Conf. on Electron, Ion, Photon Beam Technology and Nanofabrication, Nashville, TN, May 28-31,2013
  14. X. A. Zhang, J. Elek, and C.-H. Chang, “Fabrication of hollow-shell nano-volcanoes from Mie scattering by colloidal nanospheres,” 56th Intl. Conf. on Electron, Ion, Photon Beam Technology and Nanofabrication, Waikoloa, HI, June 2012.

Invited Talks

  1. C.-H. Chang, “Engineering Three-Dimensional Nanostructures with Multiple Functionalities,” Department of Mechanical Engineering, Temple University, April 13, 2015.
  2. C.-H. Chang, “Engineering Multifunctional Three-Dimensional Nanostructures: Going Beyond Biomimetics,” NASA Glenn Research Center, June 6, 2014
  3. C-H. Chang, “Bio-Improved Antireflection Structures: Going Beyond the Moth Eye,” Optical Society of America (OSA) topic meeting on Optics for Solar Energy (SOLAR), Tucson, AZ, November 4-6, 2013.
  4. C.-H. Chang, “Multifunctional Two/Three-Dimensional Nanostructured Materials,” NASA Langley Research Center, August 20, 2013.
  5. C.-H. Chang, “Design and Fabrication of Multifunctional Two/Three-Dimensional Nanostructured Materials,” Emerging Information and Technology Association Young Investigator Conference (EITA-YIC), Cambridge, MA, August 2, 2013.
  6. C.-H. Chang, “Multifunctional Two/Three-Dimensional Nanostructured Materials,” Oak Ridge National Laboratory, June 3, 2013.
  7. C.-H. Chang, “Multifunctional Nanostructured Materials: Blurring the Lines between Optical Interfaces,” 57th International Conference on Electron, Ion and Photon Beam Technology and Nanofabrication, Nashville, TN, May 28-31, 2013.
  8. C.-H. Chang, “Multifunctional Nanostructured Materials,” Joint School of Nanoscience and Nanoengineering (JSNN), NC A&T State University and UNC-Greensboro, September 21, 2012.