• Acta Photonica Sinica
  • Vol. 51, Issue 3, 0316001 (2022)
Lingling DENG, Jiacheng SONG, Jintao GUO, and Jiajin ZHENG*
Author Affiliations
  • College of Electronic and Optical Engineering & College of Microelectronics,Nanjing University of Posts and Telecommunications,Nanjing 210023,China
  • show less
    DOI: 10.3788/gzxb20225103.0316001 Cite this Article
    Lingling DENG, Jiacheng SONG, Jintao GUO, Jiajin ZHENG. Research on the Performance of Low Roughness Silver Nanowire Transparent Electrode Based on AgNW:HPMC Embedded Structure[J]. Acta Photonica Sinica, 2022, 51(3): 0316001 Copy Citation Text show less
    References

    [1] N M NAIR, J K PAKKATHILLAM, K KUMAR et al. Printable silver nanowire and pedot: pss nanocomposite ink for flexible transparent conducting applications. ACS Applied Electronic Materials, 2, 1000-1010(2020).

    [2] Yunxia JIN, Lu LI, Yuanrong CHENG et al. Cohesively enhanced conductivity and adhesion of flexible silver nanowire networks by biocompatible polymer sol-gel transition. Advanced Functional Materials, 25, 1581-1587(2015).

    [3] Yanzhe ZHU, Tao WAN, Peiyuan GUAN et al. Improving thermal and electrical stability of silver nanowire network electrodes through integrating graphene oxide intermediate layers. Journal of Colloid and Interface Science, 566, 375-382(2020).

    [4] Jinwei GAO, Ke PEI, Tianyi SUN et al. Transparent nanowire network electrode for textured semiconductors. Small, 9, 732-732(2013).

    [5] M G KANG, L J GUO. Nanoimprinted semitransparent metal electrodes and their application in organic light-emitting diodes. Advanced Materials, 19, 1391-1396(2007).

    [6] Nan LIU, A CHORTOS, Ting LEI et al. Ultratransparent and stretchable graphene electrodes. Science Advances, 3, 1700159(2017).

    [7] Sheng ZHU, Jiangfeng NI, Yan LI. Carbon nanotube-based electrodes for flexible supercapacitors. Nano Research, 13, 1825-1841(2020).

    [8] Bingwu WEI, Xinkai WU, Li LIAN et al. A highly conductive and smooth agnw/pedot:pss film treated by hot-pressing as electrode for organic light emitting diode. Organic Electronics, 43, 182-188(2017).

    [9] R YUKSEL, A EKBER, J TURAN et al. A novel blue to transparent polymer for electrochromic supercapacitor electrodes. Electroanalysis, 30, 266-273(2018).

    [10] Qingfeng ZHAI, Yan WANG, Shu GONG et al. Vertical gold nanowires stretchable electrochemical electrodes. Analytical Chemistry, 90, 13498-13505(2018).

    [11] He ZHANG, Shang WANG, Yanhong TIAN et al. High-efficiency extraction synthesis for high-purity copper nanowires and their applications in flexible transparent electrodes. Nano Materials Science, 2, 164-171(2020).

    [12] Donghua XU, Jingshen QIU, Yucheng WANG et al. Chitosan-assisted buffer layer incorporated with hydroxypropyl methylcellulose-coated silver nanowires for paper-based sensors. Applied Physics Express, 10, 65002(2017).

    [13] J H KIM, R E TRIAMBULO, JW PARK et al. Effects of the interfacial charge injection properties of silver nanowire transparent conductive electrodes on the performance of organic light-emitting diodes. Journal of Applied Physics, 121, 1-10(2017).

    [14] Chi MA, Xiumin GAO, Yangang BI et al. Pfsa-passivated silver nanowire transparent electrodes for highly flexible organic-light-emitting devices with improved stability. Organic Electronics, 84, 105727(2020).

    [15] C L KIM, C W JUNG, Y J OH et al. A highly flexible transparent conductive electrode based on nanomaterials. Npg Asia Materials, 9, e438(2017).

    [16] C L KIM, J Y LEE, D G SHIN et al. Mechanism of heat-induced fusion of silver nanowires. Scientific Reports, 10, 9271(2020).

    [17] M A SHINDE, D J LEE, B J KIM et al. Highly conductive and smooth surfaced flexible transparent conductive electrode based on silver nanowires. Thin Solid Films, 685, 366-371(2019).

    [18] Youwang HU, Chang LIANG, Xiaoyan SUN et al. Enhancement of the conductivity and uniformity of silver nanowire flexible transparent conductive films by femtosecond laser-induced nanowelding. Nanomaterials, 9, 673(2019).

    [19] JIU Jinting, T SUGAHARA, M NOGI et al. High-intensity pulse light sintering of silver nanowire transparent films on polymer substrates: the effect of the thermal properties of substrates on the performance of silver films. Nanoscale, 5, 11820-11828(2013).

    [20] Ying WU, Zhenyu WANG, Xu LIU et al. Ultralight graphene foam/conductive polymer composites for exceptional electromagnetic interference shielding. ACS Applied Materials & Interfaces, 9, 9059-9069(2017).

    [21] Xiuzhen LIN, Shuming CHEN, Jianning YU et al. Enhanced conductivity of transparent and flexible silver nanowire electrodes fabricated by a solution-processed method at room temperature. Thin Solid Films, 624, 54-60(2017).

    [22] Xiaoyan ZENG, Qikai ZHANG, Rongmin YU et al. A new transparent conductor: silver nanowire film buried at the surface of a transparent polymer. Advanced Materials, 22, 4484-4488(2010).

    [23] Guishi LIU, Jingshen QIU, Donghua XUet, al. Fabrication of embedded silver nanowires on arbitrary substrates with enhanced stability via chemisorbed alkanethiolate. ACS Applied Materials & Interfaces, 9, 15130-15138(2017).

    [24] Yunxia JIN, Lu LI, Yangrong CHENG et al. Cohesively enhanced conductivity and adhesion of flexible silver nanowire networks by biocompatible polymer sol-gel transition. Advanced Functional Materials, 25, 1581-1587(2015).

    [25] Lu LIAN, Dan DONG, Shuai YANG et al. Highly conductive and uniform alginate/silver nanowire composite transparent electrode by room temperature solution processing for organic light emitting diode. ACS Applied Materials and Interfaces, 9, 11811-11818(2017).

    [26] J Y HA, B D SOSNOWCHIK, Liwei LIN et al. Patterned growth of tio2 nanowires on titanium substrates. Applied Physics Express, 4, 065002(2011).

    [27] Yunxia JIN, Yong SUN, Kaiqing WANG et al. Long-term stable silver nanowire transparent composite as bottom electrode for perovskite solar cells. Nano Research, 11, 1998-2011(2018).

    [28] Hui YANG, Shengchi BAI, Tianrui CHEN et al. Facile fabrication of large-scale silver nanowire-pedot: pss composite flexible transparent electrodes for flexible touch panels. Materials Research Express, 6, 086315(2019).

    [29] Wenting LI, Huan ZHANG, Shengwei SHI et al. Recent progress of silver nanowire networks for flexible organic electronics. Journal of Materials Chemistry C, 8, 4636-4674(2020).

    [30] Yunxia JIN, Kaiqing WANG, Yuanrong CHENG et al. Removable large-area ultrasmooth silver nanowire transparent composite electrode. ACS Applied Materials & Interfaces, 9, 4733-4741(2017).

    [31] E LEE, AHN J , H C KWON et al. All-solution-processed silver nanowire window electrode-based flexible perovskite solar cells enabled with amorphous metal oxide protection. Advanced Energy Materials, 8, 1702182(2017).

    [32] V H DAO, B J MAPLEBACK. Generation of highly porous silvernanowire networks by plasma treatment and their direct application as supercapacitor electrodes. Nanoscale, 12, 11868-11877(2020).

    Lingling DENG, Jiacheng SONG, Jintao GUO, Jiajin ZHENG. Research on the Performance of Low Roughness Silver Nanowire Transparent Electrode Based on AgNW:HPMC Embedded Structure[J]. Acta Photonica Sinica, 2022, 51(3): 0316001
    Download Citation