| 5 | 1/1 | 返回列表 |
| 查看: 5231 | 回復: 123 | ||||
| 當前只顯示滿足指定條件的回帖,點擊這里查看本話題的所有回帖 | ||||
[交流]
[ACS Energy Letters] 可定制電化學儲能器件 散金100~
|
||||
|
custom-made electrochemical energy storage devices abstract customizable electrochemical energy storage device represents a key technology for the realization of wearable and bio-integrated electronics. this perspective begins with a brief introduction of the drive for customizable electrochemical energy storage devices. the following section involves the first-decade development trajectory of the customizable electrochemical energy storage devices. it then discusses the challenges and the future directions of the customizable electrochemical energy storage devices, calling for customizable electrochemical energy storage devices that allow users to select, design and change the functions (including capacity, flexibility, shapes, and functionalities) according to real-world application scenarios. the leveraging of the customizable electrochemical energy storage devices will shed a light on smarter and programmable electrochemical energy storage devices to power future wearable and bio-integrated electronics. key content: the drive for customizable electrochemical energy storage devices the first-decade journey towards customizable ees devices innovations in materials and structures of customizable devices further extension of efficient fabrication methods and integrated multifunctional systems artificial intelligence enabled programmable combinations of customizable properties https://pubs.acs.org/doi/10.1021/acsenergylett.8b02408 托老師的福,邀稿的perspective, 算是對自己做的工作的一個小結展望,希望對大家未來開展方向有用 ![]() ![]() ![]() 未完待續(xù),集齊東西再來做個總結帖。。。附帶幫我前面兩篇文章推銷下 ![]() ![]() ![]() 蜂窩狀任意三維形狀超級電容器 (聚吡咯/黑磷氧化物/石墨烯氧化物) honeycomb‐lantern‐inspired 3d stretchable supercapacitors with enhanced specific areal capacitance abstract traditional stretchable supercapacitors, possessing a thin electrode and a 2d shape, have limited areal specific areal capacitance and are incompatible with 3d wearables. to overcome the limitations of 2d stretchable supercapacitors, it is highly desirable to develop 3d stretchable supercapacitors with higher mass loading and customizable shapes. in this work, a new 3d stretchable supercapacitor inspired by a honeycomb lantern based on an expandable honeycomb composite electrode composed of polypyrrole/black‐phosphorous oxide electrodeposited on carbon nanotube film is reported. the 3d stretchable supercapacitors possessing device‐thickness‐independent ion‐transport path and stretchability can be crafted into customizable device thickness for enhancing the specific areal energy storage and integrability with wearables. notably, a 1.0 cm thick rectangular‐shaped supercapacitor shows enhanced specific areal capacitance of 7.34 f cm−2, which is about 60 times higher than that of the original 2d supercapacitor (120 mf cm−2) at a similar discharge rate. the 3d supercapacitor can also maintain a capacitance ratio of 95% even under the reversible strain of 2000% after 10 000 stretch‐and‐release cycles, superior to state‐of‐the‐art stretchable supercapacitors. the enhanced specific areal energy storage and the customizability in shapes of the 3d stretchable supercapacitors show immense promise in a wide range of applications in stretchable and wearable electronics. keywords 3d supercapacitors, black phosphorus, expandable honeycomb structures, flexible electronics, polypyrrole 原文鏈接: https://onlinelibrary.wiley.com/doi/abs/10.1002/adma.201805468 可編輯超級電容 (mno2 納米線/碳納米管/納米纖維素) editable supercapacitors with customizable stretchability based on mechanically strengthened ultralong mno2 nanowire composite abstract:although some progress has been made on stretchable supercapacitors, traditional stretchable supercapacitors fabricated by predesigning structured electrodes for device assembling still lack the device-level editability and programmability. to adapt to wearable electronics with arbitrary configurations, it is highly desirable to develop editable supercapacitors that can be directly transferred into desirable shapes and stretchability. in this work, editable supercapacitors for customizable shapes and stretchability using electrodes based on mechanically strengthened ultralong mno2 nanowire composites are developed. a supercapacitor edited with honeycomb-like structure shows a specific capacitance of 227.2 mf cm−2 and can be stretched up to 500% without degradation of electrochemical performance, which is superior to most of the state-of-the-art stretchable supercapacitors. in addition, it maintains nearly 98% of the initial capacitance after 10 000 stretch-and-release cycles under 400% tensile strain. as a representative of concept for system integration, the editable supercapacitors are integrated with a strain sensor, and the system exhibits a stable sensing performance even under arm swing. being highly stretchable, easily programmable, as well as connectable in series and parallel, an editable supercapacitor with customizable stretchability is promising to produce stylish energy storage devices to power various portable, stretchable, and wearable devices. 原文鏈接:https://onlinelibrary.wiley.com/doi/full/10.1002/adma.201704531 [ Last edited by zhishenglv on 2019-1-23 at 10:56 ] |
鋰離子電池專題(技術答疑) |
» 搶金幣啦!回帖就可以得到:
+4/1107
+2/104
+1/95
+2/54
+1/38
+1/36
+1/36
+1/20
+1/15
+1/14
+1/10
+1/9
+1/7
+1/6
+1/5
+1/4
+1/4
+1/2
+1/1
+1/1



| 最具人氣熱帖推薦 [查看全部] | 作者 | 回/看 | 最后發(fā)表 | |
|---|---|---|---|---|
|
[考博] 求材料讀博院校 +9 | yanglei131 2026-03-08 | 9/450 |
|
|---|---|---|---|---|
|
[考研] 一志愿清華深研院材料專碩294分,專業(yè)課111分,本科中南大學材料,有六級,有工作經驗 +4 | H14528 2026-03-04 | 4/200 |
|
|
[考研] 278求調劑 +7 | Gale1314 2026-03-06 | 7/350 |
|
|
[考研] 材料與化工求調劑 +10 | 與冬清寧 2026-03-07 | 13/650 |
|
|
[考研] 材料工程085601調劑求老師收留 +5 | 強木木木 2026-03-07 | 5/250 |
|
|
[考研] 材料調劑 +4 | xxxcm 2026-03-08 | 7/350 |
|
|
[考研] 一志愿武理314求調劑 +4 | ( ̄~ ̄;) 2026-03-08 | 5/250 |
|
|
[考研] 347求調劑 +4 | 浮云滿足 2026-03-07 | 4/200 |
|
|
[考研] 334求調劑 +8 | Trying] 2026-03-06 | 8/400 |
|
|
[考研] 一志愿哈爾濱工業(yè)大學0856材料與化工,前三科206,總分283,求調劑 +7 | 26考研求調劑 2026-03-06 | 7/350 |
|
|
[考研] 085600,一志愿鄭州大學,280分求調劑 +7 | Wuqi725 2026-03-05 | 7/350 |
|
|
[考研] 0856材料與化工求調劑! +5 | 化工考生111 2026-03-04 | 11/550 |
|
|
[考研] 考研282分求調劑,接受跨專業(yè) +4 | 劉淄博 2026-03-04 | 7/350 |
|
|
[考研] 求調劑,學校研究所都可以,材料與化工267分 +6 | wmx1 2026-03-05 | 6/300 |
|
|
[考研] 紡織、生物、化學、材料等專業(yè) +3 | Eember. 2026-03-05 | 7/350 |
|
|
[考研] 一志愿985材料與化工 326分求調劑 +3 | Hz795795 2026-03-04 | 3/150 |
|
|
[考研] 0703化學求調劑 +3 | 將未有期 2026-03-04 | 3/150 |
|
|
[考研] 085601 材料305分求助 +4 | 泡泡郵件 2026-03-03 | 6/300 |
|
|
[考研] 322,求調劑 +3 | 菜菜愛玩 2026-03-04 | 3/150 |
|
|
[考研] 292求調劑 +3 | sgbl 2026-03-03 | 3/150 |
|