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91. Lu HC, Kao SY, Chang TH, Kung CW, Ho KC (2016) An electrochromic device based on
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92. Li SY, Wang Y, Wu JG, Guo LF, Ye M, Shao YH, Wang R, Zhao CE, Wei A (2016) Methylviologen modified ZnO nanotubes for use in electrochromic devices. RSC Adv 6(76):72037–
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93. Lauw SJ, Xu X, Webster RD (2015) Primary-colored electrochromism of 1, 4phenylenediamines. ChemPlusChem 80(8):1288–1297
94. Jennings JR, Lim WY, Zakeeruddin SM, Gr¨ atzel M, Wang Q (2015) A redox-flow
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95. Zhao Y, Zhang S, Hu F, Li J, Chen H, Lin J, Yan B, Gu Y, Chen S (2019) Electrochromic
polyaniline/aramid nanofiber composites with enhanced cycling stability and film forming
property. J Mater Sci Mater Electron: 1–11
96. Hu Y, Jiang F, Lu B, Liu C, Hou J, Xu J (2017) Free-standing oligo (oxyethylene)functionalized polythiophene with the 3, 4-ethylenedioxythiophene building block: electrosynthesis, electrochromic and thermoelectric properties. Electrochim Acta 228:361–370
97. Koc U, Karaca GY, Oksuz AU, Oksuz L (2017) RF sputtered electrochromic wool textile in
different liquid media. J Mater Sci Mater Electron 28(12):8725–8732
98. Grancari´ c AM, Jerkovi´ c I, Koncar V, Cochrane C, Kelly FM, Soulat D, Legrand X (2018)
Conductive polymers for smart textile applications. J Ind Text 48(3):612–642
99. Lang AW, Li Y, De Keersmaecker M, Shen DE, Österholm AM, Berglund L, Reynolds JR
(2018) Transparent wood smart windows: polymer electrochromic devices based on poly (3,
4-ethylenedioxythiophene): poly (styrene sulfonate) electrodes. Chemsuschem 11(5):854–
863
100. Kai H, Suda W, Ogawa Y, Nagamine K, Nishizawa M (2017) Intrinsically stretchable
electrochromic display by a composite film of poly (3, 4-ethylenedioxythiophene) and
polyurethane. ACS Appl Mater Interfaces 9(23):19513–19518
101. Chen Y, Zhu X, Yang D, Wangyang P, Zeng B, Sun H (2019) A novel design of poly
(3, 4-ethylenedioxythiophene): poly (styrenesulfonate)/molybdenum disulfide/poly (3, 4ethylenedioxythiophene) nanocomposites for fabric micro-supercapacitors with favourable
performances. Electrochim Acta 298:297–304
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90. Majeed SA, Ghazal B, Nevonen DE, Goff PC, Blank DA, Nemykin VN, Makhseed S
(2017) Evaluation of the intramolecular charge-transfer properties in solvatochromic and
electrochromic zinc octa (carbazolyl) phthalocyanines. Inorg Chem 56(19):11640–11653
91. Lu HC, Kao SY, Chang TH, Kung CW, Ho KC (2016) An electrochromic device based on
Prussian blue, self-immobilized vinyl benzyl viologen, and ferrocene. Sol Energy Mater Sol
Cells 147:75–84
92. Li SY, Wang Y, Wu JG, Guo LF, Ye M, Shao YH, Wang R, Zhao CE, Wei A (2016) Methylviologen modified ZnO nanotubes for use in electrochromic devices. RSC Adv 6(76):72037–
72043
93. Lauw SJ, Xu X, Webster RD (2015) Primary-colored electrochromism of 1, 4phenylenediamines. ChemPlusChem 80(8):1288–1297
94. Jennings JR, Lim WY, Zakeeruddin SM, Gr¨ atzel M, Wang Q (2015) A redox-flow
electrochromic window. ACS Appl Mater Interfaces 7(4):2827–2832
95. Zhao Y, Zhang S, Hu F, Li J, Chen H, Lin J, Yan B, Gu Y, Chen S (2019) Electrochromic
polyaniline/aramid nanofiber composites with enhanced cycling stability and film forming
property. J Mater Sci Mater Electron: 1–11
96. Hu Y, Jiang F, Lu B, Liu C, Hou J, Xu J (2017) Free-standing oligo (oxyethylene)functionalized polythiophene with the 3, 4-ethylenedioxythiophene building block: electrosynthesis, electrochromic and thermoelectric properties. Electrochim Acta 228:361–370
97. Koc U, Karaca GY, Oksuz AU, Oksuz L (2017) RF sputtered electrochromic wool textile in
different liquid media. J Mater Sci Mater Electron 28(12):8725–8732
98. Grancari´ c AM, Jerkovi´ c I, Koncar V, Cochrane C, Kelly FM, Soulat D, Legrand X (2018)
Conductive polymers for smart textile applications. J Ind Text 48(3):612–642
99. Lang AW, Li Y, De Keersmaecker M, Shen DE, Österholm AM, Berglund L, Reynolds JR
(2018) Transparent wood smart windows: polymer electrochromic devices based on poly (3,
4-ethylenedioxythiophene): poly (styrene sulfonate) electrodes. Chemsuschem 11(5):854–
863
100. Kai H, Suda W, Ogawa Y, Nagamine K, Nishizawa M (2017) Intrinsically stretchable
electrochromic display by a composite film of poly (3, 4-ethylenedioxythiophene) and
polyurethane. ACS Appl Mater Interfaces 9(23):19513–19518
101. Chen Y, Zhu X, Yang D, Wangyang P, Zeng B, Sun H (2019) A novel design of poly
(3, 4-ethylenedioxythiophene): poly (styrenesulfonate)/molybdenum disulfide/poly (3, 4ethylenedioxythiophene) nanocomposites for fabric micro-supercapacitors with favourable
performances. Electrochim Acta 298:297–304
