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1. СÐò

Ëæ×ÅÖÇÄÜÒÂ×Å¡¢ÈáÐÔµç×ÓÆ÷¼þºÍ¹¦Ð§ÐÔ·Ä֯ƷµÄ¿ìËÙÉú³¤£¬£¬£¬£¬£¬¸ßµ¯ÐÔÕëÖ¯»ù²¼ÓëÕæ¿Õ¶ÆÒøÄ¤²ãµÄ¸´ºÏÖÊÁÏÒòÆäÓÅÒìµÄµ¼µçÐÔ¡¢ÈáÈÍÐԺͿÉÀ­ÉìÐÔÄÜ£¬£¬£¬£¬£¬ÔÚÒ½ÁƼà²â¡¢µç´ÅÆÁÕÏ¡¢¼ÓÈÈÖ¯ÎïµÈÁìÓòÕ¹ÏÖ³öÆÕ±éµÄÓ¦ÓÃÔ¶¾° ¡£¡£ ¡£¡£¡£½üÄêÀ´£¬£¬£¬£¬£¬º£ÄÚÍâѧÕßÎ§ÈÆ´ËÀิºÏÖÊÁϵÄÖÆ±¸¹¤ÒÕ¡¢½á¹¹ÓÅ»¯¼°ÐÔÄÜÌáÉý¾ÙÐÐÁË´ó×ÚÑо¿ ¡£¡£ ¡£¡£¡£±¾ÎĽ«ÏµÍ³Ì½Ìָߵ¯ÐÔÕëÖ¯»ù²¼ÓëÕæ¿Õ¶ÆÒøÄ¤²ã¸´ºÏ¹¤ÒÕµÄÒªº¦ÊÖÒÕ¡¢Ó°ÏìÒòËØ¼°ÆäÐÔÄÜÌåÏÖ£¬£¬£¬£¬£¬²¢Á¬Ïµº£ÄÚÍâÑо¿Ð§¹û¾ÙÐÐÆÊÎö½ÏÁ¿ ¡£¡£ ¡£¡£¡£

2. ÖÊÁÏ»ù´¡ÓëÌØÕ÷ÆÊÎö

2.1 ¸ßµ¯ÐÔÕëÖ¯»ù²¼

¸ßµ¯ÐÔÕëÖ¯»ù²¼Í¨³£½ÓÄɰ±ÂÚ£¨Spandex£©¡¢µÓÂÚ£¨PET£©»ò¾Ûõ¥ÏËάµÈ¾ßÓÐÓÅÁ¼µ¯ÐÔµÄÖÊÁϱàÖ¯¶ø³É ¡£¡£ ¡£¡£¡£Æä½á¹¹Ìصã°üÀ¨¸ß¿×϶ÂÊ¡¢ÓÅÒìµÄÍ¸ÆøÐÔÒÔ¼°ÓÅÒìµÄ»Øµ¯ÐÔ ¡£¡£ ¡£¡£¡£³£¼ûµÄÕëÖ¯½á¹¹°üÀ¨Î³±àË«Ãæ×éÖ¯£¨ÈçÂÞÎÆ×éÖ¯¡¢Ë«ÂÞÎÆ×éÖ¯£©ºÍ¾­±àÍøÑÛ×éÖ¯µÈ ¡£¡£ ¡£¡£¡£

±í1 ³£¼û¸ßµ¯ÐÔÕëÖ¯»ù²¼ÖÊÁÏÐÔÄܱÈÕÕ

ÖÊÁÏÀàÐÍ µ¯ÐÔÄ£Á¿ (MPa) ¶ÏÁÑÉ쳤ÂÊ (%) ÃÜ¶È (g/cm?) ÈÈÎȹÌÐÔ (¡æ)
°±ÂÚ 0.05¨C0.2 400¨C800 1.21 190¨C230
PET 2¨C4 15¨C30 1.38 250¨C270
¾Ûõ¥ÏËά 2.5¨C5.0 20¨C40 1.38 260¨C280

×ÊÁÏȪԴ£ºWang et al., Textile Research Journal, 2021; Zhang et al., Fibers and Polymers, 2020

2.2 Õæ¿Õ¶ÆÒøÄ¤²ã

Õæ¿Õ¶ÆÒøÊÇÒ»ÖÖÎïÀíÆøÏà³Á»ý£¨PVD£©ÊÖÒÕ£¬£¬£¬£¬£¬Í¨¹ýÔÚÕæ¿ÕÇéÐÎϽ«½ðÊôÒøÕô·¢²¢³Á»ýÓÚ»ù²ÄÍâòÐγɵ¼µçĤ²ã ¡£¡£ ¡£¡£¡£¸ÃĤ²ã¾ßÓÐÓÅÒìµÄµ¼µçÐÔ¡¢Èȵ¼ÐԺ͹âѧ·´ÉäÐÔÄÜ ¡£¡£ ¡£¡£¡£ÒøÄ¤ºñ¶ÈÒ»°ã¿ØÖÆÔÚ50¨C500 nmÖ®¼ä£¬£¬£¬£¬£¬ÒÔÆ½ºâµ¼µçÐÔÓë͸¹âÐÔÐèÇó ¡£¡£ ¡£¡£¡£

±í2 ²î±ðºñ¶ÈÒøÄ¤µÄµ¼µçÐÔÄÜ

ÒøÄ¤ºñ¶È (nm) ·½×è (¦¸/sq) ͸¹âÂÊ (% @ 550 nm)
50 15 85
100 7 70
200 3 55
500 1.2 20

×ÊÁÏȪԴ£ºChen et al., Applied Surface Science, 2022; Li et al., Materials Science and Engineering: B, 2020

3. ¸´ºÏ¹¤ÒÕÁ÷³Ì

¸ßµ¯ÐÔÕëÖ¯»ù²¼ÓëÕæ¿Õ¶ÆÒøÄ¤²ãµÄ¸´ºÏÖ÷񻃾¼°ÒÔϼ¸¸öÒªº¦·½·¨£º»ù²¼Ô¤´¦Àí¡¢Õæ¿Õ¶ÆÒø¡¢ºó´¦Àí¼°ÐÔÄܲâÊÔ ¡£¡£ ¡£¡£¡£

3.1 »ù²¼Ô¤´¦Àí

ΪÁËÌá¸ß¶Æ²ãÓë»ù²ÄÖ®¼äµÄ¸½×ÅÁ¦£¬£¬£¬£¬£¬Ðè¶ÔÕëÖ¯»ù²¼¾ÙÐÐϴ媡¢ÍÑÖ¬¡¢µÈÀë×Ó´¦Àí»ò»¯Ñ§½ÓÖ¦¸ÄÐÔ ¡£¡£ ¡£¡£¡£ÀýÈ磬£¬£¬£¬£¬½ÓÄÉÑõµÈÀë×ÓÌå´¦Àí¿ÉÔÚ»ù²¼ÍâòÒýÈ뼫ÐÔ»ùÍÅ£¬£¬£¬£¬£¬ÔöÇ¿Óë½ðÊôĤ²ãµÄ½áЭÁ¦ ¡£¡£ ¡£¡£¡£

±í3 ³£Óûù²¼Íâò´¦ÀíÒªÁì¼°ÆäЧ¹û

´¦Àí·½Ê½ ´¦Àíʱ¼ä (min) ÍâòÄÜת±ä (mJ/m?) ¸½×ÅÁ¦¸ÄÉÆ (%)
ÑõµÈÀë×ÓÌå´¦Àí 5 ´Ó 35 ÌáÉýÖÁ 58 +40
×ÏÍâ³ôÑõ´¦Àí 10 ´Ó 35 ÌáÉýÖÁ 52 +30
»¯Ñ§Ñõ»¯´¦Àí 15 ´Ó 35 ÌáÉýÖÁ 48 +25

×ÊÁÏȪԴ£ºZhao et al., Surface and Coatings Technology, 2021

3.2 Õæ¿Õ¶ÆÒø¹¤ÒÕ

Õæ¿Õ¶ÆÒøÍ¨³£½ÓÄɴſؽ¦Éä»òµç×ÓÊøÕô·¢ÊÖÒÕ ¡£¡£ ¡£¡£¡£ÆäÖУ¬£¬£¬£¬£¬´Å¿Ø½¦ÉäÊÊÓÃÓÚ´óÃæ»ýÔȳƶÆÄ¤£¬£¬£¬£¬£¬¶øµç×ÓÊøÕô·¢Ôò¸üÊʺϸߴ¿¶È½ðÊô±¡Ä¤µÄÖÆ±¸ ¡£¡£ ¡£¡£¡£

±í4 ²î±ðÕæ¿Õ¶ÆÒø¹¤ÒÕ²ÎÊý±ÈÕÕ

¹¤ÒÕÀàÐÍ ÊÂÇéѹÁ¦ (Pa) ÎÂ¶È (¡æ) ³Á»ýËÙÂÊ (nm/min) Óŵã Èõµã
´Å¿Ø½¦Éä 0.1¨C1.0 ÊÒΠ5¨C20 ³ÉĤÖÂÃÜ£¬£¬£¬£¬£¬ÔȳÆÐԺà װ±¸±¾Ç®¸ß
µç×ÓÊøÕô·¢ 1¡Á10??¨C1¡Á10?? ÊÒΠ10¨C50 ³Á»ýËÙÂʿ죬£¬£¬£¬£¬×°±¸¼òÆÓ Ĥ²ãÒ×±¬·¢È±ÏÝ
ÈÈÕô·¢ 1¡Á10??¨C1¡Á10?? 200¨C300 20¨C100 ±¾Ç®µÍ ½á¾§ÐԲ£¬£¬£¬£¬¸½×ÅÁ¦Èõ

×ÊÁÏȪԴ£ºLiu et al., Vacuum, 2020; Kim et al., Thin Solid Films, 2019

3.3 ºó´¦ÀíÓë·â×°

ΪÌá¸ß¶ÆÒø²ãµÄÎȹÌÐÔºÍÄ;ÃÐÔ£¬£¬£¬£¬£¬³£½ÓÄÉ×ÏÍâ¹Ì»¯Ê÷֬Ϳ¸²¡¢ÈÈѹ·â×°»òÄÉÃ×Í¿²ã±£»£»£»£»£»¤µÈ·½Ê½ ¡£¡£ ¡£¡£¡£ÀýÈ磬£¬£¬£¬£¬Ê¹Óþ۰±õ¥£¨PU£©»ò¾Û¶Ô±½¶þ¼×ËáÒÒ¶þ´¼õ¥£¨PET£©×÷Ϊ·â×°²ã¿ÉÓÐÓ÷ÀÖ¹Òø²ãÑõ»¯ºÍ»úеĥËð ¡£¡£ ¡£¡£¡£

4. ÐÔÄܲâÊÔÓëÆÊÎö

4.1 µ¼µçÐÔÄܲâÊÔ

µ¼µçÐÔÄÜÊÇȨºâ¶ÆÒøÖ¯Î﹦ЧÐԵĽ¹µãÖ¸±êÖ®Ò» ¡£¡£ ¡£¡£¡£³£ÓõIJâÊÔÒªÁì°üÀ¨ËÄ̽Õë·¨ºÍ»ô¶ûЧӦÕÉÁ¿ ¡£¡£ ¡£¡£¡£Ñо¿Åú×¢£¬£¬£¬£¬£¬¾­ÓÉÊʵ±¹¤ÒÕÓÅ»¯ºóµÄ¶ÆÒøÕëÖ¯»ù²¼Æä·½×è¿ÉµÍÓÚ 5 ¦¸/sq£¬£¬£¬£¬£¬Öª×ã´ó´ó¶¼ÈáÐÔµç×ÓÓ¦ÓÃÐèÇó ¡£¡£ ¡£¡£¡£

±í5 ²î±ð¹¤ÒÕÌõ¼þ϶ÆÒøÕëÖ¯»ù²¼µÄµ¼µçÐÔÄÜ

¹¤ÒÕ²ÎÊý ÒøÄ¤ºñ¶È (nm) ·½×è (¦¸/sq) µç×èת±äÂÊ (% after 10,000 cycles)
´Å¿Ø½¦É䣬£¬£¬£¬£¬ÎÞ·â×° 100 7 +60
´Å¿Ø½¦Éä + PU ·â×° 100 7.2 +15
µç×ÓÊøÕô·¢ + PET ·â×° 200 3.5 +10
ÈÈÕô·¢ + ×ÏÍâ¹Ì»¯Ê÷Ö¬ 300 2.1 +25

×ÊÁÏȪԴ£ºZhou et al., Journal of Materials Chemistry C, 2022

4.2 »úеÐÔÄܲâÊÔ

ÓÉÓÚÕëÖ¯»ù²¼×Ô¼º¾ßÓи߶ȿÉÀ­ÉìÐÔ£¬£¬£¬£¬£¬Òò´Ë¸´ºÏÖÊÁϵĻúеÐÔÄܲâÊÔÖ÷Òª°üÀ¨À­ÉìÊÔÑé¡¢ÍäÇúÆ£ÀͲâÊÔºÍĦ²ÁÄ¥ËðÊÔÑé ¡£¡£ ¡£¡£¡£ÊµÑéÅú×¢£¬£¬£¬£¬£¬ºÏÀíÉè¼ÆµÄ¶ÆÒøÖ¯ÎïÔÚÀ­Éì 50% µÄÇéÐÎÏÂÈÔÄܼá³ÖÓÅÒìµÄµ¼µçÐÔ ¡£¡£ ¡£¡£¡£

±í6 ¶ÆÒøÕëÖ¯»ù²¼ÔÚ²î±ðÀ­Éì״̬ϵĵç×èת±ä

À­ÉìÂÊ (%) ³õʼµç×è (¦¸) À­Éìºóµç×è (¦¸) µç×èת±äÂÊ (%)
0 5.0 5.0 0
20 5.0 5.5 +10
50 5.0 6.2 +24
80 5.0 7.8 +56

×ÊÁÏȪԴ£ºLi et al., Smart Materials and Structures, 2021

4.3 ÇéÐÎÎȹÌÐÔ²âÊÔ

ÇéÐÎÎȹÌÐÔ²âÊÔÖ÷Òª¿¼²ì¶ÆÒøÖ¯ÎïÔÚ¸ßΡ¢¸ßʪ¡¢×ÏÍâÏßÕÕÉäµÈÌõ¼þϵÄÐÔÄܼá³ÖÄÜÁ¦ ¡£¡£ ¡£¡£¡£Ñо¿Åú×¢£¬£¬£¬£¬£¬½ÓÄÉ PET »ò PU ·â×°µÄ¶ÆÒøÕëÖ¯»ù²¼ÔÚ 85¡ãC/85% RH Ìõ¼þÏ´æ·Å 1000 Сʱºó£¬£¬£¬£¬£¬Æä·½×è½öÉÏÉýÔ¼ 10%£¬£¬£¬£¬£¬ÌåÏÖ³öÓÅÒìµÄ¿¹Ñõ»¯ºÍ·À³±ÄÜÁ¦ ¡£¡£ ¡£¡£¡£

±í7 ¶ÆÒøÕëÖ¯»ù²¼ÔÚ²î±ðÇéÐÎÌõ¼þϵÄÎȹÌÐÔ²âÊÔЧ¹û

²âÊÔÌõ¼þ ²âÊÔʱ¼ä (h) ·½×èת±äÂÊ (%) Íâ¹Ûת±ä
85¡ãC/85% RH 1000 +10 ÎÞÏÔ×űäÉ«
UV ÕÕÉä (500 W/m?) 500 +15 ΢»Æ±ä
ÑÎÎí²âÊÔ (ASTM B117) 240 +30 ¾Ö²¿ÇÖÊ´ºÚµã

×ÊÁÏȪԴ£ºWu et al., Corrosion Science, 2020

5. Ó¦ÓÃÁìÓòÓëÊг¡Ô¶¾°

5.1 ¿ÉÒÂ×ŵç×ÓÆ÷¼þ

¶ÆÒøÕëÖ¯»ù²¼ÒòÆäÓÅÒìµÄµ¼µçÐÔÓëÈáÐÔ£¬£¬£¬£¬£¬±»ÆÕ±éÓ¦ÓÃÓÚÈáÐÔ´«¸ÐÆ÷¡¢¼ÓÈÈÖ¯ÎïºÍÖÇÄÜ·þ×°ÖÐ ¡£¡£ ¡£¡£¡£ÀýÈ磬£¬£¬£¬£¬»ùÓÚ¶ÆÒøÖ¯ÎïµÄѹÁ¦´«¸ÐÆ÷¿ÉÓÃÓÚ¼à²âÈËÌåÐÄÀíÐźţ¨ÈçÐÄÂÊ¡¢ºôÎüƵÂÊ£©£¬£¬£¬£¬£¬ÆäÏìӦѸËٶȿɴï 0.5 kPa?? ¡£¡£ ¡£¡£¡£

5.2 µç´ÅÆÁÕÏÖÊÁÏ

¶ÆÒøÖ¯Îï¾ß±¸ÓÅÒìµÄµç´ÅÆÁÕÏЧÄÜ£¨SE£©£¬£¬£¬£¬£¬ÔÚ GHz Ƶ¶Î¹æÄ£ÄÚ¿ÉʵÏÖÁè¼Ý 40 dB µÄÆÁÕÏЧ¹û£¬£¬£¬£¬£¬ÊÊÓÃÓÚ¾üÓÃͨѶװ±¸¡¢º½¿Õº½ÌìºÍ5G»ùÕ¾µÈÁìÓòµÄµç´Å×ÌÈÅ·À»¤ ¡£¡£ ¡£¡£¡£

±í8 ²î±ð¶ÆÒøÖ¯ÎïµÄµç´ÅÆÁÕÏÐÔÄܱÈÕÕ

Ö¯ÎïÀàÐÍ Òøº¬Á¿ (%) ÃæÃÜ¶È (g/m?) SE (dB @ 1¨C10 GHz)
γ±à¶ÆÒøÖ¯Îï 15 120 35¨C45
¾­±à¶ÆÒøÖ¯Îï 20 150 40¨C50
ÕëÖ¯+¶à²ãÒøÄ¤Ö¯Îï 25 180 45¨C60

×ÊÁÏȪԴ£ºYang et al., IEEE Transactions on Electromagnetic Compatibility, 2021

5.3 ¿¹¾úÓ뿹¾²µç¹¦Ð§Ö¯Îï

Òø¾ßÓÐ×ÔÈ»¿¹¾úÐÔÄÜ£¬£¬£¬£¬£¬Òò´Ë¶ÆÒøÖ¯ÎïÒ²±»ÓÃÓÚÒ½ÁÆ·óÁÏ¡¢¿¹¾ú·þ×°µÈÁìÓò ¡£¡£ ¡£¡£¡£±ðµÄ£¬£¬£¬£¬£¬ÆäÓÅÒìµÄµ¼µçÐÔ»¹¿ÉÓÐÓÃÏû³ý¾²µç»ýÀÛ£¬£¬£¬£¬£¬ÊÊÓÃÓÚʯÓÍ»¯¹¤¡¢Çå½à³µ¼äµÈ¶Ô¾²µçÃô¸ÐµÄÇéÐÎ ¡£¡£ ¡£¡£¡£

6. ÌôÕ½ÓëÉú³¤Ç÷ÊÆ

Ö»¹Ü¸ßµ¯ÐÔÕëÖ¯»ù²¼ÓëÕæ¿Õ¶ÆÒøÄ¤²ã¸´ºÏÖÊÁϾßÓÐÁÉÀ«µÄÓ¦ÓÃÔ¶¾°£¬£¬£¬£¬£¬µ«ÈÔÃæÁÙÒÔÏÂÌôÕ½£º

  • ¶Æ²ã¸½×ÅÁ¦È±·¦£ººã¾ÃÍäÕÛ»òÀ­Éì¿ÉÄܵ¼ÖÂÒøÄ¤ÍÑÂ䣬£¬£¬£¬£¬Ó°Ïìµ¼µçÎȹÌÐÔ£»£»£»£»£»
  • ÇéÐÎÄ;ÃÐÔÓÐÏÞ£ºÔÚ¸ßʪ¡¢¸ßÑÎÎíÇéÐÎÏ£¬£¬£¬£¬£¬Òø²ãÒ×±¬·¢Ñõ»¯ºÍÇÖÊ´£»£»£»£»£»
  • ¹æÄ£»£»£»£»£»¯Éú²ú±¾Ç®½Ï¸ß£ºÕæ¿Õ¶ÆÄ¤×°±¸Í¶×ʴ󣬣¬£¬£¬£¬ÏÞÖÆÁË´ó¹æÄ£¹¤Òµ»¯Ó¦Ó㻣»£»£»£»
  • »·±£ÎÊÌ⣺¶ÆÒøÀú³ÌÖпÉÄܱ¬·¢ÖؽðÊô·ÏË®£¬£¬£¬£¬£¬ÐèÔöÇ¿ÂÌɫ֯ÔìÊÖÒÕµÄÑо¿ ¡£¡£ ¡£¡£¡£

δÀ´µÄÉú³¤Ç÷ÊÆ°üÀ¨£º

  • ¿ª·¢ÐÂÐ;ۺÏÎï·â×°ÖÊÁÏ£¬£¬£¬£¬£¬Ìá¸ß¶Æ²ãÎȹÌÐÔ£»£»£»£»£»
  • ̽Ë÷µÍεÈÀë×ÓÌ帨Öú³Á»ýÊÖÒÕ£¬£¬£¬£¬£¬½µµÍÄܺÄÓ뱾Ǯ£»£»£»£»£»
  • Á¬ÏµÄÉÃ×ÒøÏß¡¢Ê¯Ä«Ï©µÈÐÂÐÍÖÊÁÏ£¬£¬£¬£¬£¬¹¹½¨¶à¹¦Ð§¸´ºÏϵͳ£»£»£»£»£»
  • ÍÆ¶¯ÖÇÄÜÖÆÔìÓë×Ô¶¯»¯Éú²úÏß½¨É裬£¬£¬£¬£¬ÌáÉý²úÆ·Ò»ÖÂÐÔÓëÉú²úЧÂÊ ¡£¡£ ¡£¡£¡£

7. ½áÂÛ

¸ßµ¯ÐÔÕëÖ¯»ù²¼ÓëÕæ¿Õ¶ÆÒøÄ¤²ã¸´ºÏÖÊÁÏÒÀ¸½ÆäÓÅÒìµÄµ¼µçÐÔ¡¢ÈáÈÍÐÔ¼°¿ÉÀ­ÉìÐÔ£¬£¬£¬£¬£¬ÔÚÖÇÄÜÒÂ×Å¡¢µç´ÅÆÁÕÏ¡¢¼ÓÈÈÖ¯ÎïµÈ¶à¸öÁìÓòÕ¹ÏÖ³öÖØ´óµÄÓ¦ÓÃDZÁ¦ ¡£¡£ ¡£¡£¡£È»¶ø£¬£¬£¬£¬£¬ÆäÔÚ¸½×ÅÁ¦¡¢ÇéÐÎÎȹÌÐÔ¼°¹æÄ£»£»£»£»£»¯Éú²ú·½ÃæÈÔ±£´æÒ»¶¨ÌôÕ½ ¡£¡£ ¡£¡£¡£Í¨¹ýÓÅ»¯¸´ºÏ¹¤ÒÕ¡¢Ë¢Ð·â×°ÊÖÒÕ¼°Ì½Ë÷ÐÂÖÊÁÏ×éºÏ£¬£¬£¬£¬£¬ÓÐÍû½øÒ»²½Íƶ¯¸ÃÀàÖÊÁϵÄÊÖÒÕǰ½øÓ빤ҵӦÓà ¡£¡£ ¡£¡£¡£


²Î¿¼ÎÄÏ×

  1. Wang, Y., Zhang, L., & Liu, H. (2021). Mechanical and electrical properties of silver-coated elastic knitted fabrics for wearable electronics. Textile Research Journal, 91(11-12), 1307¨C1318. https://doi.org/10.1177/0040517520976654
  2. Zhang, X., Chen, J., & Zhao, Y. (2020). Development of stretchable conductive textiles via vacuum metallization. Fibers and Polymers, 21(3), 543¨C552. https://doi.org/10.1007/s12221-020-9417-5
  3. Chen, Z., Li, M., & Wu, T. (2022). Transparent silver films deposited by electron beam evaporation for flexible optoelectronic applications. Applied Surface Science, 576, 151849. https://doi.org/10.1016/j.apsusc.2021.151849
  4. Li, F., Zhou, K., & Sun, Q. (2020). Silver nanowire-based flexible strain sensors: Fabrication, performance, and applications. Materials Science and Engineering: B, 258, 114558. https://doi.org/10.1016/j.mseb.2020.114558
  5. Zhao, R., Xu, D., & Gao, H. (2021). Surface modification of polyester fabrics for enhanced adhesion of metal coatings. Surface and Coatings Technology, 419, 127301. https://doi.org/10.1016/j.surfcoat.2021.127301
  6. Liu, S., Yang, Y., & He, X. (2020). Comparative study on vacuum metallization techniques for textile substrates. Vacuum, 178, 109468. https://doi.org/10.1016/j.vacuum.2020.109468
  7. Kim, J., Park, S., & Lee, K. (2019). Effect of deposition parameters on the microstructure and electrical properties of silver thin films. Thin Solid Films, 689, 137528. https://doi.org/10.1016/j.tsf.2019.137528
  8. Zhou, Y., Wang, H., & Zhang, X. (2022). Stretchable silver-coated fabrics with high conductivity and durability. Journal of Materials Chemistry C, 10(15), 5734¨C5743. https://doi.org/10.1039/D2TC00464E
  9. Li, W., Sun, J., & Cheng, H. (2021). Flexible strain sensors based on silver-coated knitted fabrics for human motion detection. Smart Materials and Structures, 30(11), 115022. https://doi.org/10.1088/1361-665X/ac2e9f
  10. Wu, Q., Huang, L., & Lin, Z. (2020). Corrosion behavior of silver-coated textiles under humid and saline environments. Corrosion Science, 168, 108547. https://doi.org/10.1016/j.corsci.2020.108547
  11. Yang, H., Liu, M., & Zhang, Y. (2021). Electromagnetic interference shielding effectiveness of silver-coated woven fabrics in the GHz frequency range. IEEE Transactions on Electromagnetic Compatibility, 63(4), 1123¨C1131. https://doi.org/10.1109/TEMC.2020.3040418

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