超級電容/動力電池用石墨烯涂層鋁箔
超級電容/動力電池用石墨烯涂層鋁箔
(Graphene coated aluminum foil for supercapacitor/power battery.)
A1 layer |
Etching layer |
Graphene layer |

利用碳的良好導電、散熱及耐化性。
提供極佳的導電性能,大幅度降低正/負極材料和集流之間的接觸電阻。
提高附著力,增加導熱度,提高產品穩定。
規格說明:
Ⅰ第一碼
|
Ⅱ第二碼 |
Ⅲ、Ⅳ第三、四碼 |
Ⅳ第四碼 |
涂布原料 |
黏結劑種類
|
原箔厚度 |
涂層厚度(雙面) |
涂布原料 |
黏結劑種類 |
鋁箔厚度 |
石墨稀厚度 |
石墨烯
|
水性黏結劑 |
20:20um |
1:Double sidedbelow 1um |
碳納米管 |
聚偏氟乙烯
|
16:16um |
2:Double sidedbelow 2um |
碳粉 |
熱固型黏結劑
|
15:15um |
Customized thickness |
|
電池陰極專用黏結劑 |
12:12um |
|
|
熱熔膠
|
|
|
快充解決及附著力方案-石墨烯涂層鋁箔
石墨烯涂層箔-作為鋰離子電池基材,主要由黏結劑與石墨稀兩者相結合。藉由石墨烯優異的理論導電(106S/m)及導熱率(5000w/m.k:X-Y平面),可有效地收集電活性物質在充放電過程中所產生的電能及熱。
涂碳箔(石墨烯水性黏結劑)GW系列
產品型號 |
厚度/雙面總和(um) |
單位面密度(g/M2) |
拉力(Kg/cm) |
抗彎 |
素箔達因56 |
碳層達因56 |
膠帶>8N/cm |
耐溶劑(NMP,BAC) |
耐水性 |
GW-121 |
1 |
0.3~0.7 |
3±0.3 |
250< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-122 |
2 |
0.6~1.4 |
3±0.3 |
250< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-161 |
1 |
0.3~0.7 |
3±0.3 |
75< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-162 |
2 |
0.6~1.4 |
3±0.3 |
75< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-121 |
1 |
0.3~0.7 |
3±0.3 |
250< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-122 |
2 |
0.6~1.4 |
3±0.3 |
250< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-161 |
1 |
0.3~0.7 |
3±0.3 |
75< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-162 |
2 |
0.6~1.4 |
3±0.3 |
75< |
Pass |
Pass |
Pass |
Pass |
Pass |
涂碳箔(GW石墨烯水性黏結劑)(TM碳管熱熔膠系)
產品型號 |
厚度/雙面總和(um) |
單位面密度(g/M2) |
拉力(Kg/cm) |
抗彎 |
素箔達因56 |
碳層達因56 |
膠帶>8N/cm |
耐溶劑(NMP,BAC) |
耐水性 |
GW-221 |
1 |
0.3~0.7 |
3.2±0.3 |
70< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-222 |
2 |
0.6~1.4 |
3.2±0.3 |
70< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-301 |
1 |
0.3~0.7 |
4.5±0.3 |
85< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-302 |
2 |
0.6~1.4 |
4.5±0.3 |
85< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-221 |
1 |
0.3~0.7 |
3.2±0.3 |
70< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-222 |
2 |
0.6~1.4 |
3.2±0.3 |
70< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-301 |
1 |
0.3~0.7 |
4.5±0.3 |
85< |
Pass |
Pass |
Pass |
Pass |
Pass |
GW-302 |
2 |
0.6~1.4 |
4.5±0.3 |
85< |
Pass |
Pass |
Pass |
Pass |
Pass |
用于鋰電特性測試