Page 73 - Read Online
P. 73

Wu et al. Soft Sci 2024;4:29  https://dx.doi.org/10.20517/ss.2024.21            Page 19 of 22

               13.       Wu W, Fang H, Ma H, Wu L, Wang Q, Wang H. Self-powered rewritable electrochromic display based on WO  film with
                                                                                                  3-x
                    mechanochemically synthesized MoO  nanosheets. ACS Appl Mater Interfaces 2021;13:20326-35.  DOI  PubMed
                                            3-y
               14.       Beaujuge PM, Reynolds JR. Color control in pi-conjugated organic polymers for use in electrochromic devices. Chem Rev
                    2010;110:268-320.  DOI  PubMed
               15.       Singh J, Srivastava S, Shrivas S, Pandey R, Dubey A. Comparative study of structures of electrochromic device for flexible
                    electrochromic display. In: 2023 International Conference on Device Intelligence, Computing and Communication Technologies,
                    (DICCT); 2023 Mar 17-18; Dehradun, India. IEEE; 2023. pp. 290-5.  DOI
               16.       Wu W, Wu L, Ma H, Wu L, Wang H, Fang H. Electrochromic devices constructed with water-in-salt electrolyte enabling energy-
                    saving and prolonged optical memory effect. Chem Eng J 2022;446:137122.  DOI
               17.       Eh AL, Tan AWM, Cheng X, Magdassi S, Lee PS. Recent advances in flexible electrochromic devices: prerequisites, challenges, and
                    prospects. Energy Technol 2018;6:33-45.  DOI
               18.       Zhou L, Wei P, Fang H, Wu W, Wu L, Wang H. Self-doped tungsten oxide films induced by in situ carbothermal reduction for high
                    performance electrochromic devices. J Mater Chem C 2020;8:13999-4006.  DOI
               19.       Qian C, Wang P, Guo X, Jiang C, Liu P. High-contrast energy-efficient flexible electrochromic devices based on viologen derivatives
                    and their application in smart windows and electrochromic displayers. Sol Energy Mat Sol C 2024;266:112669.  DOI
               20.       Sun P, Chen J, Li Y, et al. Deep eutectic solvent-based gel electrolytes for flexible electrochromic devices with excellent high/low
                    temperature durability. InfoMat 2023;5:e12363.  DOI
               21.       Xue W, Zhang Y, Liu F, Dou Y, Yan M, Wang W. Self-powered flexible multicolor electrochromic devices for information displays.
                    Research 2023;6:0227.  DOI  PubMed  PMC
               22.       Chen BH, Kao SY, Hu CW, Higuchi M, Ho KC, Liao YC. Printed multicolor high-contrast electrochromic devices. ACS Appl Mater
                    Interfaces 2015;7:25069-76.  DOI  PubMed
               23.       Yu Z, Li Y, Xia F, Xue W. The characteristics of indium tin oxide films prepared on various buffer layer-coated polymer substrates.
                    Surf Coat Tech 2009;204:131-4.  DOI
               24.       Ersman P, Lassnig R, Strandberg J, Dyreklev P. Flexible active matrix addressed displays manufactured by screen printing. Adv Eng
                    Mater 2021;23:2000771.  DOI
               25.       Andersson Ersman P, Zabihipour M, Tu D, et al. Monolithic integration of display driver circuits and displays manufactured by
                    screen printing. Flex Print Electron 2020;5:024001.  DOI
               26.       Lv X, Xu H, Yang Y, et al. Flexible laterally-configured electrochromic supercapacitor with feasible patterned display. Chem Eng J
                    2023;458:141453.  DOI
               27.       Nair NM, Khanra I, Ray D, Swaminathan P. Silver nanowire-based printable electrothermochromic ink for flexible touch-display
                    applications. ACS Appl Mater Interfaces 2021;13:34550-60.  DOI  PubMed
               28.       Kim DS, Lee H, Keum K, et al. A stretchable patch of multi-color electrochromic devices for driving integrated sensors and
                    displaying bio-signals. Nano Energy 2023;113:108607.  DOI
               29.       Zhao SQ, Liu YH, Ming Z, et al. Highly flexible electrochromic devices enabled by electroplated nickel grid electrodes and
                    multifunctional hydrogels. Opt Express 2019;27:29547-57.  DOI  PubMed
               30.       Layani M, Darmawan P, Foo WL, et al. Nanostructured electrochromic films by inkjet printing on large area and flexible transparent
                    silver electrodes. Nanoscale 2014;6:4572-6.  DOI  PubMed
               31.       Huang L, Chen X, Wu X, et al. Hybrid Ag/Ni mesh/PH 1000 transparent electrodes for high performance flexible electrochromic
                    devices with exceptional stability. Flex Print Electron 2023;8:025021.  DOI
               32.       Kim KW, Lee SB, Kim SH, Moon HC. Spray-coated transparent hybrid electrodes for high-performance electrochromic devices on
                    plastic. Org Electron 2018;62:151-6.  DOI
               33.       Wang JL, Lu YR, Li HH, Liu JW, Yu SH. Large area co-assembly of nanowires for flexible transparent smart windows. J Am Chem
                    Soc 2017;139:9921-6.  DOI  PubMed
               34.       Jensen J, Hösel M, Kim I, Yu J, Jo J, Krebs FC. Fast switching ITO free electrochromic devices. Adv Funct Mater 2014;24:1228-33.
                    DOI
               35.       Xue R, Liu Y, Ning L, et al. Fabrication of flexible electrochromic devices with degradable and fully recyclable features. ACS
                    Biomater Sci Eng 2022;8:1320-8.  DOI  PubMed
               36.       Huang Y, Liao S, Ren J, Khalid B, Peng H, Wu H. A transparent, conducting tape for flexible electronics. Nano Res 2016;9:917-24.
                    DOI
               37.       Kim D, Kim J, Ko Y, Shim K, Kim JH, You J. A facile approach for constructing conductive polymer patterns for application in
                    electrochromic devices and flexible microelectrodes. ACS Appl Mater Interfaces 2016;8:33175-82.  DOI  PubMed
               38.       Gao X, Wang Y, Wu M, Zhi C, Meng J, Zhang L. Multicolor electrochromic fabric with a simple structure of PEDOT:PSS/DMSO.
                    Dyes Pigments 2023;219:111642.  DOI
               39.       Wang C, Jiang X, Cui P, et al. Multicolor and multistage response electrochromic color-memory wearable smart textile and flexible
                    display. ACS Appl Mater Interfaces 2021;13:12313-21.  DOI  PubMed
               40.       Dubey A, Tao X, Cochrane C, Koncar V. Textile based three-layer robust flexible and stable electrochromic display. IEEE Access
                    2020;8:182918-29.  DOI
               41.       Zhou  Y,  Fang  J,  Wang  H,  et  al.  Multicolor  electrochromic  fibers  with  helix-patterned  electrodes.  Adv  Electron  Mater
                    2018;4:1800104.  DOI
   68   69   70   71   72   73   74   75   76   77   78