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19. Highly conducting, durable and large area carbon nanotube thick films for stretchable and flexible electrodes
Y. Zhou, Y. Yokota, S. Tanaka, N. Toda, R. Azumi
Applied Physics Letter 114, in press (2019)

18. A highly durable, stretchable, transparent and conductive carbon nanotube?polymeric acid hybrid film
Y. Zhou, R. Azumi, S. Shimada
Nanoscale 11 (9), 3804-3813 (2019)

17. Carbon nanotube based transparent conductive films: progress, challenges, and perspectives
Y. Zhou, R. Azumi
Science and Technology of Advanced Materials 17 (1), 493-516 (2016)

16. Fabrication of carbon nanotube hybrid films as transparent electrodes for small-molecule photovoltaic cells
Y. Zhou, Z. Wang, T. Saito, T. Miyadera, M. Chikamatsu, S. Shimada, R. Azumi
RSC Advances 6 (30), 25062-25069 (2016)

15. Understanding the doping effects on the structural and electrical properties of ultrathin carbon nanotube networks
Y. Zhou, S. Shimada, T. Saito, R. Azumi
Journal of Applied Physics 118 (21), 215305 (2015)

14. Building interconnects in carbon nanotube networks with metal halides for transparent electrodes
Y. Zhou, S. Shimada, T. Saito, R. Azumi
Carbon 87, 61-69 (2015)

13. Efficient Small]Molecule Photovoltaic Cells Using a Crystalline Diindenoperylene Film as a Nanostructured Template
Y. Zhou, T. Taima, T. Kuwabara, K. Takahashi
Advanced Materials 25 (42), 6069-6075 (2013)

12. Glancing angle deposition of copper iodide nanocrystals for efficient organic photovoltaics
Y. Zhou, T. Taima, T. Miyadera, T. Yamanari, M. Kitamura, K. Nakatsu, Y. Yoshida
Nano letters 12 (8), 4146-4152 (2012)

11. Phase separation of co-evaporated ZnPc:C60 blend film for highly efficient organic photovoltaics
Y. Zhou, T. Taima, T. Miyadera, T. Yamanari, M. Kitamura, K. Nakatsu, Y. Yoshida
Applied Physics Letters 100 (23), 122 (2012)

10. Structural modifications of zinc phthalocyanine thin films for organic photovoltaic applications
Y. Zhou, T. Taima, T. Miyadera, T. Yamanari, Y. Yoshida
Journal of Applied Physics 111 (10), 103117 (2012)

9. Controlled growth of ZnPc thin films for photovoltaic appplications
Y. Zhou, T. Taima, Y. Shibata, T. Miyadera, T. Yamanari, Y. Yoshida
Physics Procedia 14, 221-225 (2011)

8. Controlled growth of dibenzotetraphenylperiflanthene thin films by varying substrate temperature for photovoltaic applications
Y. Zhou, T. Taima, Y. Shibata, T. Miyadera, T. Yamanari, Y. Yoshida
Solar Energy Materials and Solar Cells 95 (10), 2861-2866 (2011)

7. Thickness dependence of the structural and dielectric properties of epitaxial ZrO2 films grown by limited reaction sputtering
Y. Zhou, K. Sasaki, T. Kawae, A. Morimoto
Journal of Physics D: Applied Physics 42 (20), 205406 (2009)

6. Improved Dielectric Properties of Tetragonal ZrO2 Gate Dielectric Fabricated by Ozone-Assisted Sputtering
Y. Zhou, N. Inosaka, K. Sasaki, M Kumeda
Japanese Journal of Applied Physics 48 (6R), 060208 (2009)

5. The modifications of the surface wettability of amorphous carbon films
Y. Zhou, B. Wang, X. Zhang, M. Zhao, E. Li, H. Yan
Colloids and Surfaces A: Physicochemical and Engineering Aspects 335 (1-3) (2009)

4. Growth and dielectric properties of tetragonal ZrO2 films by limited reaction sputtering
Y. Zhou, N. Kojima, K. Sasaki
Journal of Physics D: Applied Physics 41 (17), 175414 (2008)

3. Preparation of ZrO2 ultrathin films as gate dielectrics by limited reaction sputtering-On growth delay time at initial growth stage
Y. Zhou, N. Kojima, H. Sugiyama, K. Ohara, K. Sasaki
Applied Surface Science 254 (19), 6131-6134 (2008)

2. Control over the wettability of amorphous carbon films in a large range from hydrophilicity to super-hydrophobicity
Y. Zhou, B. Wang, X. Song, E. Li, G. Li, S. Zhao, H. Yan
Applied Surface Science 253 (5), 2690-2694 (2006)

1. Superhydrophobic surfaces prepared by plasma fluorination of lotus-leaf-like amorphous carbon films
Y. Zhou, X. Song, M. Yu, B. Wang, H. Yan
Surface Review and Letters 13 (01), 117-122 (2006)


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9. Structures and Fluorescence Properties for the Crystals, Powders, and Thin Films of Dithienylhexatrienes: Effects of Positional Isomerism
Y. Sonoda, N. Tohnai, Y. Zhou, Y. Shimoi, R. Azumi
Crystal Growth & Design 18 (11), 6477-6487 (2018)

8. Stable iodide doping induced by photonic curing for carbon nanotube transparent conductive films
A. Wachi, H. Nishikawa, Y. Zhou, R. Azumi
Japanese Journal of Applied Physics 57 (6), 065101 (2018)

7. Constructing Nanostructured Donor/Acceptor Bulk Heterojunctions via Interfacial Templates for Efficient Organic Photovoltaics
Z. Wang, Y. Zhou, T. Miyadera, M. Chikamatsu, Y. Yoshida
ACS applied materials & interfaces 9 (50), 43893-43901 (2017)

6. Epitaxial Growth of C60 on Rubrene Single Crystals for a Highly Ordered Organic Donor/Acceptor Interface
H. Mitsuta, T. Miyadera, N. Ohashi, Y. Zhou, T. Taima, T. Koganezawa, Y.Yoshida, M. Tamura
Crystal Growth & Design 17 (9), 4622-4627 (2017)

5. Optically pumped lasing in solution-processed perovskite semiconducting materials: Self-assembled Fabry?Perot microcavity
F. Sasaki, Y. Zhou, Y Sonoda, R Azumi, H Mochizuki, VC Nguyen, H. Yanagi
Japanese Journal of Applied Physics 56 (4S), 04CL07 (2016)

4. Optical pumped lasing in solution processed perovskite semiconducting materials: Self-assembled microdisk lasing
F. Sasaki, H. Mochizuki, Y. Zhou, Y. Sonoda, R. Azumi
Japanese Journal of Applied Physics 55 (4S), 04ES02 (2016)

3. Morphological analysis of co-evaporated blend films based on initial growth for organic photovoltaics
Y. Shibata, T. Taima, Y. Zhou, N. Ohashi, T. Kono, Y. Yoshida
Applied Surface Science 355, 1261-1266 (2015)

2. Understanding Device-Structure-Induced Variations in Open-Circuit Voltage for Organic Photovoltaics
Z. Wang, Y. Uemura, Y. Zhou, T. Miyadera, R. Azumi, Y. Yoshida, M. Chikamatsu
ACS Applied Materials & Interfaces 7 (20), 10814-10822 (2015)

1. Size and shape controlled LiMnPO 4 nanocrystals by a supercritical ethanol process and their electrochemical properties
D. Rangappa, K. Sone, Y. Zhou, T Kudo, I Honma
Journal of Materials Chemistry 21 (39), 15813-15818 (2011)


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