スーパーキャパシタ応用を高めるニッケル系材料の最近の進歩
Recent Advancements and progress in Nickel-based Materials for Enhancing Supercapacitive Applications (原題)
Shourya Nag, S. K. Tripathi
🤖 gxceed AI 要約
日本語
パリ協定のネットゼロ達成に向けた再生可能エネルギー移行には高効率な蓄電技術が不可欠である。本レビューは電気化学スーパーキャパシタに着目し、ニッケル系材料(酸化物、MOF、硫化物、リン化物)の合成法・長所短所・エネルギー貯蔵能を比較検討する。工業規模での実用化に向けた課題と解決策も論じる。
English
The transition to renewable energy for net-zero requires efficient storage. This review examines nickel-based materials (oxides, MOFs, sulfides, phosphides) for supercapacitors, comparing synthesis, advantages, and energy-storage performance. It concludes with challenges and solutions for industrial-scale deployment.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
蓄電技術は再エネ導入と系統安定化に寄与し、日本のGX電源構成や産業競争力に間接的に関わる。ただし開示・政策枠組みとの直接的な接点は乏しい。
In the global GX context
Advances in supercapacitor materials support grid storage and renewable integration, indirectly relevant to global decarbonization pathways, but the paper does not engage with disclosure frameworks like TCFD or ISSB.
👥 読者別の含意
🔬研究者:ニッケル系材料の比較と合成法の整理が、蓄電材料研究の出発点として有用。
🏢実務担当者:蓄電技術の選択肢を理解する一助となるが、直接的な事業インパクトは限定的。
🏛政策担当者:蓄電技術の産業化課題は、エネルギー政策や研究開発支援の参考になり得る。
📄 Abstract(原文)
The world's rapid transition towards renewable energy resources in order to achieve the netzero carbon emissions of the Paris agreement generates a necessary need for efficient energy storage technologies. Among various energy storage applications, the electrochemical storagebased supercapacitors are distinguished by their high storage capacity, longer cyclic life, power output, and eco-friendly nature. Generally, transition metals such as Ni, Co, and Mn are considered the preferred ones for the concerned purpose. Despite the higher specific capacitance of cobalt, the nickel-based materials are preferred because of their low cost, high natural abundance, and less toxicity. The present analysis involves the various categories of supercapacitors and their storage mechanism. The present study involves a detailed discussion of various advantages, disadvantages, and the comparison of nickel-based materials on the basis of their ability to store energy. The comprehensive analysis also discusses various nickelbased materials such as oxides, metal organic frameworks, sulphides, phosphides, and the respective synthesis of one from the other. The present study concludes with the various challenges related to the larger-scale production and their respective plausible solution for the utilization of supercapacitor-based energy storage technologies on an industrial level.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.1142/s0219581x26400338first seen 2026-09-12 04:57:48
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