Research Article

Improving The Optoelectronic Properties of Conducting Polymer Via Polyoxometalate

Volume: 15 Number: 1 January 18, 2020
EN TR

Abstract


References

  1. [1] Choi, K., Yoo, S.J., Sung, Y.E., and Zentel, R., (2006). High Contrast Ratio and Rapid Switching Organic Polymeric Electrochromic Thin Films Based on Triarylamine Derivatives from Layer-by-Layer Assembly Chem. Mater. 18:5823–5825.
  2. [2] Sonmez, G. and Wudl, F., (2005). Completion of The Three Primary Colours: The Final Step toward Plastic Displays J. Mater. Chem. 2:20-22.
  3. [3] Durmus, A., Gunbas, G.E., Camurlu, P., and Toppare, L., (2007). A neutral State Green Polymer with a Superior Transmissive Light Blue Oxidized State Chem. Commun. 31:3246-8.
  4. [4] Rowley, N.M. and Mortimer, R.J., (2002). New Electrochromic Materials Sci. Prog. 179:161-168.
  5. [5] Varis, S., Ak, M., Tanyeli, C., Akhmedov, I.M., and Toppare, L., (2006). Synthesis and Characterization of a New Soluble Conducting Polymer and Its Electrochromic Device Solid State Sci. 8:1477–83.
  6. [6] Nicho, M., (2004). Synthesis of Derivatives of Polythiophene and Their Application in an Electrochromic Device Sol. Energy Mater. Sol. Cells 82:105–18.
  7. [7] Mortimer, R.J., Dyer, A.L., and Reynolds, J.R., (2006). Electrochromic Organic and Polymeric Materials for Display Applications Displays. 27:2-18.
  8. [8] Yang, Z., Peng, H., Wang, W., and Liu, T., (2010). Crystallization behavior of Poly(ε-caprolactone)/layered Double Hydroxide Nanocomposites J. Appl. Polym. Sci. 116: 2658–2667.

Details

Primary Language

English

Subjects

Engineering

Journal Section

Research Article

Publication Date

January 18, 2020

Submission Date

July 23, 2019

Acceptance Date

January 18, 2020

Published in Issue

Year 1970 Volume: 15 Number: 1

APA
Torlak, Y., Guzel, M., & Ak, M. (2020). Improving The Optoelectronic Properties of Conducting Polymer Via Polyoxometalate. Physical Sciences, 15(1), 1-8. https://izlik.org/JA72HG57TB
AMA
1.Torlak Y, Guzel M, Ak M. Improving The Optoelectronic Properties of Conducting Polymer Via Polyoxometalate. Physical Sciences. 2020;15(1):1-8. https://izlik.org/JA72HG57TB
Chicago
Torlak, Yasemin, Merve Guzel, and Metin Ak. 2020. “Improving The Optoelectronic Properties of Conducting Polymer Via Polyoxometalate”. Physical Sciences 15 (1): 1-8. https://izlik.org/JA72HG57TB.
EndNote
Torlak Y, Guzel M, Ak M (January 1, 2020) Improving The Optoelectronic Properties of Conducting Polymer Via Polyoxometalate. Physical Sciences 15 1 1–8.
IEEE
[1]Y. Torlak, M. Guzel, and M. Ak, “Improving The Optoelectronic Properties of Conducting Polymer Via Polyoxometalate”, Physical Sciences, vol. 15, no. 1, pp. 1–8, Jan. 2020, [Online]. Available: https://izlik.org/JA72HG57TB
ISNAD
Torlak, Yasemin - Guzel, Merve - Ak, Metin. “Improving The Optoelectronic Properties of Conducting Polymer Via Polyoxometalate”. Physical Sciences 15/1 (January 1, 2020): 1-8. https://izlik.org/JA72HG57TB.
JAMA
1.Torlak Y, Guzel M, Ak M. Improving The Optoelectronic Properties of Conducting Polymer Via Polyoxometalate. Physical Sciences. 2020;15:1–8.
MLA
Torlak, Yasemin, et al. “Improving The Optoelectronic Properties of Conducting Polymer Via Polyoxometalate”. Physical Sciences, vol. 15, no. 1, Jan. 2020, pp. 1-8, https://izlik.org/JA72HG57TB.
Vancouver
1.Yasemin Torlak, Merve Guzel, Metin Ak. Improving The Optoelectronic Properties of Conducting Polymer Via Polyoxometalate. Physical Sciences [Internet]. 2020 Jan. 1;15(1):1-8. Available from: https://izlik.org/JA72HG57TB