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| New functional materials for artificial muscles |
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| Developing stronger and more durable aluminum materials |
| Nano-ally design with new functions |
| Developing stronger and more durable aluminum materials |
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| Toward effective use of light element materials |
| 温めると縮む材料の開発へ |
| 新しい半導体物質硫化ホウ素シート |
| 無機結晶で柔粘性結晶のような格子ダイナミクスを実施 |
| 加湿不要で水素イオンを高速伝導する配位高分子ガラスの合成に成功 |
| 鉄酸鉛の特異な電荷分布を解明 |
| Toward effective use of light element materials |
| Graphene oxide membrane with the highest hydrogen separation performance |
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| Fabrication of lead perovskites and the discovery of charge ordering |
| Discovering new physical phenomena in insulators |
| A magnetic porous material through the adsorption of CO2 |
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| Red phosphor for white LEDs |
| Materials that have zero thermal-expansion ability |
| Highly-durable luminescent materials |
| New peep prevention filter |
| Excellent ferroelectricity and piezoelectricity without containing lead |
| The first oxide with thermally reversible switching of electrical resistivity |
| Discovery of hidden chemical order in disordered high ion conductor |
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| Fabrication of lead perovskites and the discovery of charge ordering |
| いかなる方向にもよく伸びるセラミック材料のしくみを解明 |
| Diverse chemical bonds formed in honeycomb lattices |
| Giant Negative Thermal Expansion Material with Maximum Performance |
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| Highly sensitive detection and discrimination of volatile molecules |
| 粘土鉱物をつかった“デカフェ”の過程を放射光で直接観察 |
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| Highly sensitive detection and discrimination of volatile molecules |
| Using hydrogen to reduce global warming |
| 超高効率な水の電気分解の実現へ |
| ゲート型吸着剤が切り拓く吸着分離の新時代 |
| 常温・常圧で二酸化炭素の多孔性材料への変換に成功 |
| ロジウムを越える高耐久性な多元素ナノ合金排ガス浄化触媒 |
| Using hydrogen to reduce global warming |
| Elucidating the process of CO2 gas molecule adsorption by gated adsorbents |
| Visualization of fast oxygen deintercalation reactions |
| A new solid catalyst accelerating chemical reactions in water |
| Mechanism of the 'preference’ behaviors of nitrate ions in water |
| Noble-Metal High-Entropy-Alloy Nanoparticles (NM-HEA NPs) |
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| Using a huge current over a short period |
| Dramatic improvements in solar utilization efficiency |
| 磁場と圧力でマルチに冷却可能な新しい酸化物材料 |
| 電子構造の精密制御により熱電性能を2倍増大 |
| Dynamics analysis for practical application of functional materials |
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| セラミックス材料の生成過程の可視化と計算モデルの構築 |