Elucidating the effect of copper as a redox additive and dopant on the performance of a PANI based supercapacitor

文献情報

出版日 2014-11-07
DOI 10.1039/C4CP04321A
インパクトファクター 3.676
著者

Kavita Pandey, Pankaj Yadav, Indrajit Mukhopadhyay


原文を見る

要旨

In this article, the effect of copper (Cu) as a redox additive and dopant on the performance of a polyaniline (PANI) based supercapacitor was thoroughly investigated. The electrochemical properties of PANI in H2SO4 and in H2SO4 + CuSO4 and Cu doped PANI in H2SO4 were studied using cyclic voltammetry (CV) and impedance spectroscopy (IS). The CV result indicates that the capacity of PANI in H2SO4 was significantly improved with the introduction of Cu2+ ions into the electrolyte, but it appeared unstable because of underpotential deposition of copper over the PANI surface and the relatively irreversible nature of the redox reaction. However, a stable and improved performance was obtained for Cu doped PANI due to the combined effect of an increase in conductivity and the surface modification of the PANI film. For Cu doped PANI, nearly ∼2.4 and ∼1.5 fold improved interfacial capacitance was achieved compared to that of PANI (H2SO4) and PANI (H2SO4 + CuSO4) respectively. The obtained Nyquist spectra for all the configurations were analysed using an equivalent circuit to understand the fundamentals of capacitive and resistive response of the supercapacitor. The IS measurements lead to direct determination of parameters like series resistance, rate capability of electrodes, ion diffusion phenomena and interfacial capacitance. The experimental results and their analysis will have significant impact on understanding the effect of dopants and redox additives on the performance of PANI based supercapacitors and also lay the basis for designing a supercapacitor with an appropriate electrode and electrolyte material for numerous industrial and consumer applications.

関連文献

Hydrogen bonding induced distortion of CO3 units and kinetic stabilization of amorphous calcium carbonate: results from 2D 13C NMR spectroscopy

Sabyasachi Sen, Derrick C. Kaseman, Bruno Colas, Dorrit E. Jacob, Simon M. Clark

2016-06-01 Paper

DOI: 10.1039/C6CP02729F

Conformational preferences of monohydrated clusters of imidazole derivatives revisited

Aditi Bhattacherjee, Sanjay Wategaonkar

2015-06-15 Paper

DOI: 10.1039/C5CP02422F

The Interplay of manganese and nitrate in hydroxyapatite nanoparticles as revealed by pulsed EPR and DFT

Marat Gafurov, Timur Biktagirov, Georgy Mamin, Elena Klimashina, Valery Putlayev, L. Kuznetsova, Sergei Orlinskii

2015-07-07 Paper

DOI: 10.1039/C5CP01986A

An ultrafast spectroscopic and quantum mechanical investigation of multiple emissions in push–pull pyridinium derivatives bearing different electron donors

B. Carlotti, E. Benassi, A. Cesaretti, C. G. Fortuna, A. Spalletti, V. Barone, F. Elisei

2015-07-08 Paper

DOI: 10.1039/C5CP03207E

Formation of supramolecular assemblies and liquid crystals by purine nucleobases and cyanuric acid in water: implications for the possible origins of RNA

B. J. Cafferty, S. C. Karunakaran, G. B. Schuster, N. V. Hud

2016-05-24 Communication

DOI: 10.1039/C6CP03047E

Relationships between the solution and solid-state properties of solution-cast low-k silica thin films

Chao-Ching Chiang, Chien-You Su, An-Chih Yang, Ting-Yu Wang, Wen-Ya Lee, Chi-Chung Hua, Dun-Yen Kang

2016-06-29 Paper

DOI: 10.1039/C6CP04166C

Insights into collective cell behaviour from populations of coupled chemical oscillators

Annette F. Taylor, Mark R. Tinsley, Kenneth Showalter

2015-07-08 Perspective

DOI: 10.1039/C5CP01964H

Photochemical etiology of promising ancestors of the RNA nucleobases

M. M. Brister, M. Pollum, C. E. Crespo-Hernández

2016-02-17 Communication

DOI: 10.1039/C6CP00639F

こちらもおすすめ

化合物よくある質問

1-{3-[5-(エチルカルボンイル)-2,4-ジメチル-1H-ピロロール-3-基]プロパニル}ピペリジン-4-カルボン酸について、適用される法規ガイドラインは何ですか?

この化合物はCAS番号1142209-81-1であり、GHS分類では corrosive (腐食性物質) と classified (分類物質) として指定され...

1142209-81-11-{3-[5-(Ethoxycarbo...
化合物よくある質問

2,2-二氟-1,3-ベンゾジオキサン-5-カルボキシlic酸とは何ですか?

2,2-二氟-1,3-ベンゾジオキサン-5-カルボキシlic酸は、CAS番号656-46-2の化合物で、化学式はC8H4F2O4です。この化合物は白色の結晶性粉...

656-46-22,2-Difluoro-1,3-ben...
化合物よくある質問

8-氯-4-色原酮の代替品はありますか?

8-氯-4-色原酮(CAS番号: 49701-11-3)の代替品には、他の色原酮類似物や、構造が似ている化合物があります。例えば、8-メチル-4-色原酮や、他の...

49701-11-38-Chloro-2,3-dihydro...
化合物よくある質問

エチル6,6-ジメチル-4,5,6,7-テトラヒドロ-1H-インドアゼー-3-カルボキシレートとは何ですか?

エチル6,6-ジメチル-4,5,6,7-テトラヒドロ-1H-インドアゼー-3-カルボキシレートは、CAS番号1233243-56-5を有する化合物です。これは有...

1233243-56-5Ethyl 6,6-dimethyl-4...
化合物よくある質問

4-叔丁基-6-氯-嘧啶に適用される法規ガイドラインは何ですか?

4-叔丁基-6-氯-嘧啶はCAS番号3435-24-3で、GHS分類では毒性物質とみなし、GHSの危険性分類が適用されます。REACH規則では登録が必要で、Eu...

3435-24-34-Tert-butyl-6-chlor...
化合物よくある質問

維库溴铵杂质Bはどのように合成されますか?

維库溴铵杂质Bは、アンドロステンデンから始まり、一連の合成反応、包括的な選択性と高い収率で合成されます。具体的には、ブロミド化、酸化、ジマーゼ反応、アミド化など...

50587-95-6(2beta,3alpha,5alpha...
化合物よくある質問

2-(4-氟苄基)-吡咯烷の物理化学的性質は何ですか?

CAS番号350017-04-8の2-(4-氟苄基)-吡咯烷は、結晶性の白色粉末です。分子量は199.17 g/molで、水に溶けにくいです。化学反応では比較的...

350017-04-82-(4-Fluorobenzyl)py...
化合物よくある質問

3-喹啉甲醛(2-チロール-8-エチル)は安全ですか?

3-喹啉甲醛(2-チロール-8-エチル)は一定の毒性を持つため、取扱には注意が必要です。使用する際は適切な防護具を着用し、密閉容器で保管・搬送し、直接的な接触を...

335196-05-92-Chloro-8-ethyl-3-q...
化合物よくある質問

エチル3-(ヒドロキシメチル)-1H-ピロール-2-カルボキシレートはどのように保存すればよいですか?

エチル3-(ヒドロキシメチル)-1H-ピロール-2-カルボキシレートは、室温(25℃)以下で保存し、直射日光を避け、乾燥した環境で保管することが推奨されます。ま...

75448-69-0Ethyl 3-(hydroxymeth...
化合物よくある質問

哌拉西林杂质Dは安全ですか?

哌拉西林杂质Dは安全性が確認されていません。使用または取り扱いには注意が必要で、適切な個人防護具を使用し、直接的な接触を避けることが推奨されます。

119410-05-88-Chloro-11-(4-piper...

掲載誌

Physical Chemistry Chemical Physics

Physical Chemistry Chemical Physics
CiteScore: 5.5
自己引用率: 10.3%
年間論文数: 3036

Physical Chemistry Chemical Physics (PCCP) is an international journal co-owned by 19 physical chemistry and physics societies from around the world. This journal publishes original, cutting-edge research in physical chemistry, chemical physics and biophysical chemistry. To be suitable for publication in PCCP, articles must include significant innovation and/or insight into physical chemistry; this is the most important criterion that reviewers and Editors will judge against when evaluating submissions. The journal has a broad scope and welcomes contributions spanning experiment, theory, computation and data science. Topical coverage includes spectroscopy, dynamics, kinetics, statistical mechanics, thermodynamics, electrochemistry, catalysis, surface science, quantum mechanics, quantum computing and machine learning. Interdisciplinary research areas such as polymers and soft matter, materials, nanoscience, energy, surfaces/interfaces, and biophysical chemistry are welcomed if they demonstrate significant innovation and/or insight into physical chemistry. Joined experimental/theoretical studies are particularly appreciated when complementary and based on up-to-date approaches.

おすすめ化合物

おすすめサプライヤー

免責事項
このページに表示される学術雑誌情報は、参考および研究目的のみを目的としています。当社は雑誌出版社とは提携しておらず、投稿の取り扱いも行っておりません。出版に関するお問い合わせは、各雑誌出版社に直接ご連絡ください。
表示されている情報に誤りがある場合は、support@chemtradehub.com までご連絡ください。迅速に確認し、対応いたします。