Measuring temperature effects on nanobubble nucleation via a solid-state nanopore
文献信息
Qiao Li, Shao-Chuang Liu, Yong-Xu Hu
In this study, we designed SiNX solid-state nanopores to detect the temperature effect on the hydrogen nanobubble formation. Here, we integrated a temperature controller with the highly sensitive nanopore. As the temperature decreases from 25 °C to 5 °C, the occurrence of the nanobubble nucleation inside a 12.3 nm SiNX nanopore confined space decreased from 102 s−1 to 23 s−1, and the life-time of nanobubbles increased from 1.16 ms to 4.78 ms. The results further gave the activation energy for nanobubble nucleation which was 8.1 × 10−20 J with a 12.3 nm SiNX nanopore. Our method provides an efficient analytical tool for revealing the temperature-dependent nanobubble nucleation, which further benefits the fundamental understanding of nanobubble nucleation.
相关文献
CeO2 catalysed conversion of CO, NO2 and NO from first principles energetics
Michael Nolan, Stephen C. Parker, Graeme W. Watson
DOI: 10.1039/B514782D
Cryo-TEM of isolated milk fat globule membrane structures in cream
Rianne Waninge, Evelin Kalda, Marie Paulsson, Tommy Nylander, Björn Bergenståhl
DOI: 10.1039/B314613H
DNA Compaction by cationic surfactant in solution and at polystyrene particle solution interfaces: a dynamic light scattering study
Marité Cárdenas, Karin Schillén, Tommy Nylander, Jörgen Jansson, Björn Lindman
DOI: 10.1039/B310798A
Paraelectric–antiferroelectric transitions in the bent-core liquid-crystalline materials
A. Eremin, H. Nádasi, G. Pelzl, S. Diele, H. Kresse, W. Weissflog, S. Grande
DOI: 10.1039/B312586F
Structure of adsorption complexes of water in zeolites of different types studied by infrared spectroscopy and inelastic neutron scattering
Ilir A. Beta, Heinz Böhlig, Bernd Hunger
DOI: 10.1039/B313234J
Inverse correlation between efficiency of singlet oxygen production and rate constant for oxygen quenching in the S1 state of anthracene derivatives
Fujio Tanaka, Tomoaki Furuta, Masami Okamoto, Satoshi Hirayama
DOI: 10.1039/B312398G
Calculations of PAH anions: When are diffuse functions necessary?
Noach Treitel, Roy Shenhar, Ivan Aprahamian, Tuvia Sheradsky, Mordecai Rabinovitz
DOI: 10.1039/B315069K
Analysis of dynamic surface tension data for SDS–DTAB mixed solutions
Ch. Frese, S. Ruppert, H. Schmidt-Lewerkühne, K. P. Wittern, R. Eggers, V. B. Fainerman, R. Miller
DOI: 10.1039/B313880A
Adsorption of hydrogen on the polar O–ZnO surface: a molecular beam study
DOI: 10.1039/B307955D
Clustering of water molecules in aqueous solutions: Effect of water–solute interaction
Alla Oleinikova
DOI: 10.1039/B314474G
您可能还喜欢
如何储存8-溴-4-羟基-6-(三氟甲氧基)喹啉-3-羧酸乙酯(CAS号:1072944-81-0)?
8-溴-4-羟基-6-(三氟甲氧基)喹啉-3-羧酸乙酯应储存在阴凉、干燥的地方,避免光照和高温。建议使用密封容器进行储存,以防止水分和空气的影响。
2,2-二(2-呋喃基)丙烷(CAS号:17920-88-6)的市场或研究趋势如何?
2,2-二(2-呋喃基)丙烷的研究趋势主要集中在新型材料的开发和应用,如高分子材料、有机光电材料等。市场趋势方面,随着环保要求的提高和新材料的应用,该化合物的需...
如何处理含有螺[呋喃并[3,4-b]吡啶-5(7H),4'-哌啶]-7-酮盐酸盐(CAS号:475152-31-9)的废料?
对于含有螺[呋喃并[3,4-b]吡啶-5(7H),4'-哌啶]-7-酮盐酸盐的废料,应首先进行分类和分离,以减少危险物质的数量。随后,可以考虑通过化学氧化、生物...
Cinnamyl 3-aminobut-2-enoate(CAS号:113898-97-8)安全吗?
Cinnamyl 3-氨基丁-2-烯酸在接触皮肤和眼睛时可能会引起刺激。应避免吸入其粉尘和烟雾。操作时应穿戴适当的个人防护装备,如手套、护目镜和实验室外套。
反式-2-十二碳烯二酸(CAS号:6402-36-4)的市场或研究趋势如何?
反式-2-十二碳烯二酸在医药、材料科学等领域有一定的应用,但其市场相对较小。近年来,由于环保意识的提升,对环境友好型化学品的需求增加,研究倾向于开发更绿色的合成...
什么是(9ci)-1H-苯并咪唑-5-乙酸(CAS号:473895-86-2)?
(9ci)-1H-苯并咪唑-5-乙酸是一种含氮杂环化合物,其化学结构为1H-苯并咪唑-5-乙酸。该化合物具有特定的分子式C8H7NO2,属于有机酸类化合物。
酞菁蓝(CAS号:147-14-8)的主要用途是什么?
酞菁蓝主要用作颜料和染料,广泛应用于塑料、油墨、涂料、纺织品及橡胶工业中。它也用于光敏材料,如太阳能电池和光刻胶。在医疗领域,酞菁蓝因其光敏特性被用于某些光动力...
5-甲基-1,2,3,4-四氢异喹啉(CAS号:123593-99-7)安全吗?
5-甲基-1,2,3,4-四氢异喹啉在使用和储存时需要谨慎处理。它具有一定的毒性,应避免吸入其蒸气或直接接触皮肤和眼睛。操作此化合物时,建议佩戴防护眼镜、实验服...
如何处理含有3',4',5'-三甲氧基苯乙酮(CAS号:1136-86-3)的废料?
含有3',4',5'-三甲氧基苯乙酮的废液应首先确保其是否为危险废物,根据当地法规确定处理方法。通常,这类有机废液可以采用中和反应降低其pH值,然后通过蒸馏或萃...
如何储存KI-7(CAS号:1489263-00-4)?
KI-7应储存在通风良好的干燥环境中,避免光照和高温。建议使用密封容器储存,并保持在阴凉处。储存温度应控制在室温范围内,一般建议不超过25°C。避免与氧化剂接触...
来源期刊
Analyst

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.










![(2S)-{[(9H-Fluoren-9-ylmethoxy)carbonyl]amino}(phenyl)acetic acid structure (2S)-{[(9H-Fluoren-9-ylmethoxy)carbonyl]amino}(phenyl)acetic acid structure](https://cnstatic.chemtradehub.com/structs/102/102410-65-1-4aa7.webp)



