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"Particles & Transfer" Lab. 微粒子・移動現象

A Lab for Environment‑Conscious Processes and Student Learning. 環境配慮型プロセスと学びを重視する研究室

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Tag: b4first

低出力の超音波力で水中粒子のかたまりを壊す Breaking Particle Clumps with a Low-Power Sonication in Water

Low-power ultrasound can break up sub-micron particle agglomerates. 低出力の超音波でもサブミクロン粒子の凝集体を破壊する

SAUC 煤介在 x 超音波 = 微粒子回収技術Soot-Assisted Ultrasonic Particle Collector(卒論生のひらめき)

数百nmの粒子が堆積された基板を「特別な」スス粒子が含まれている水系懸濁液に超音波法を利用した微粒子回収法・洗浄法が提案された。Aqueous samples can be prepared by a novel method for detaching submicron particulates deposited on substrate.

ろうそくのすすは、水をはじく? それとも水になじむ?Can candle soot repel water—or absorb it?

We discovered methods to form hydrophilic or hydrophobic layers. 親水性または疎水性を有する粒子膜の作製法を開発。5000年前に開発された「墨」技術と同じ?

熱い板の上の気流でナノ材料Nanomaterials from Airflow above a Hot Surface

高結晶性を有するナノ粒子層への「省エネプロセス」の発見。Discovery of a low-energy route to layer of nanometer-sized particles with high crystallinity.

A battery-driven sampler for PM1.0. 乾電池駆動型1μm以下の空気中粒子の捕集器 (Paper Award)

BEST PAPER AWARD, 2nd International Conference on Purity, Utility Reaction and Environmental Research, Kuala Lumpur. “Development of a battery-driven passive sampling system for electrostatically trapping atmospheric particles”

Plant-derived materials for battery. グルコース添加の合成で電池用粉末は「質」が向上

Without a milling process (break-down) process, Lithium-battery material can be synthesized, in submicron size (100-600 nm) through glucose-assisted combustion synthesis.(植物由来原料)グルコースを添加した新しい「燃焼合成法」により二次電池用粉末をサブミクロンサイズで合成できた。

Top in 48-hour.人気記事

  • 東京農工大学 TUAT Tokyo U. of Agric. & Tech.
  • 大学院新設:先進学際科学(Grad. School of Advanced Interdisciplinary Science, AIS from 2025/4)
  • 研究室の学生ガイド Lab Guide for Students (B3)
  • ろうそくのすすは、水をはじく? それとも水になじむ?Can candle soot repel water—or absorb it?
  • Published) Exploring the Effects of Exposure of Ammonium Sulfate Particles on Tree Leaves 樹木の葉に対する硫酸アンモニウム粒子の曝露効果を探る
  • キトサンを用いたナノ粒子プライミング:持続可能な農業へ Chitosan-Based Nanoparticle Priming: To Sustainable Agriculture (by U. T. MARA, ITB, TUAT)
  • Concept
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  • Prof. Kozo Kuchitsu 朽津 耕三 先生 1927-2021
  • Soot Enhances Water Uptake & Sugar Metabolism in Solanaceae Seeds 煤粒子がナス科種子の水分吸収と糖代謝を促進

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