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エネルギーと環境におけるナノ材料とその応用:包括的レビュー

Nanomaterials and their Applications in Energy and Environment: A Comprehensive Review (原題)

Geetha V

Zenodoプレプリント2026-09-06#エネルギー転換
DOI: 10.5281/zenodo.22477559
原典: https://zenodo.org/records/22477559
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🤖 gxceed AI 要約

日本語

本レビューは、エネルギー変換・貯蔵(太陽電池、バッテリー、スーパーキャパシタ、燃料電池、水素製造)および環境応用(廃水処理、大気汚染制御、汚染物質分解、環境センシング、炭素回収)におけるナノ材料の最近の進歩を概説する。ナノ材料の利点、限界、環境リスク、将来展望を議論し、クリーンエネルギーと持続可能な環境管理への貢献可能性を強調する。

English

This review highlights recent advances in nanomaterials for energy conversion and storage (solar cells, batteries, supercapacitors, fuel cells, hydrogen production) and environmental applications (wastewater treatment, air-pollution control, pollutant degradation, sensing, carbon capture). It discusses advantages, limitations, environmental risks, and future prospects, emphasizing potential contributions to clean energy and sustainable environmental management.

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

日本では、水素社会実現やカーボンリサイクル政策においてナノ材料技術は重要だが、本レビューは基礎的知見の提供に留まる。日本のGX実践への直接的な示唆は限定的だが、材料開発の方向性を俯瞰するのに有用。

In the global GX context

Globally, this review provides a broad overview of nanomaterial applications relevant to clean energy and environmental sustainability, aligning with the goals of the Paris Agreement and SDGs. It offers a useful background for researchers and policymakers exploring technology options for decarbonization and pollution control.

👥 読者別の含意

🔬研究者:Provides a comprehensive overview of nanomaterial applications in energy and environment, useful for identifying research gaps and opportunities.

🏛政策担当者:Highlights the potential of nanomaterials in clean energy and environmental protection, informing technology-neutral policy discussions.

📄 Abstract(原文)

Nanomaterials have emerged as promising materials for addressing major challenges in energy production, storage, environmental protection, and sustainable development. Their unique physicochemical properties, including high surface area, tunable optical, electrical, thermal, and catalytic characteristics, enable improved performance in a wide range of applications. This review highlights recent advances in nanomaterials for energy conversion and storage, including solar cells, batteries, supercapacitors, fuel cells, and hydrogen production. It also examines their environmental applications in wastewater treatment, air-pollution control, pollutant degradation, environmental sensing, and carbon capture. The review discusses the advantages, limitations, environmental risks, and future prospects of nanomaterial-based technologies, emphasizing their potential contribution to clean energy and sustainable environmental management.

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