The influence of the surface composition of mixed monolayer films on the evaporation coefficient of water

文献情報

出版日 2016-07-05
DOI 10.1039/C6CP03826C
インパクトファクター 3.676
著者

Rachael E. H. Miles, Jonathan P. Reid


原文を見る

要旨

We explore the dependence of the evaporation coefficient of water from aqueous droplets on the composition of a surface film, considering in particular the influence of monolayer mixed component films on the evaporative mass flux. Measurements with binary component films formed from long chain alcohols, specifically tridecanol (C13H27OH) and pentadecanol (C15H31OH), and tetradecanol (C14H29OH) and hexadecanol (C16H33OH), show that the evaporation coefficient is dependent on the mole fractions of the two components forming the monolayer film. Immediately at the point of film formation and commensurate reduction in droplet evaporation rate, the evaporation coefficient is equal to a mole fraction weighted average of the evaporation coefficients through the equivalent single component films. As a droplet continues to diminish in surface area with continued loss of water, the more-soluble, shorter alkyl chain component preferentially partitions into the droplet bulk with the evaporation coefficient tending towards that through a single component film formed simply from the less-soluble, longer chain alcohol. We also show that the addition of a long chain alcohol to an aqueous-sucrose droplet can facilitate control over the degree of dehydration achieved during evaporation. After undergoing rapid gas-phase diffusion limited water evaporation, binary aqueous-sucrose droplets show a continued slow evaporative flux that is limited by slow diffusional mass transport within the particle bulk due to the rapidly increasing particle viscosity and strong concentration gradients that are established. The addition of a long chain alcohol to the droplet is shown to slow the initial rate of water loss, leading to a droplet composition that remains more homogeneous for a longer period of time. When the sucrose concentration has achieved a sufficiently high value, and the diffusion constant of water has decreased accordingly so that bulk phase diffusion arrest occurs in the monolayer coated particle, the droplet is found to have lost a greater proportion of its initial water content. A greater degree of slowing in the evaporative flux can be achieved by increasing the chain length of the surface active alcohol, leading to a greater degree of dehydration.

関連文献

Unexpected effect of Ru-substitution in lightly doped manganites

Lorenzo Malavasi, M. Cristina Mozzati, Cristina Tealdi, M. Rosa Pascarelli, Carlo B. Azzoni, Giorgio Flor

2004-05-17 Communication

DOI: 10.1039/B403733B

Biosynthesis of the insect pheromone(S)-4-methyl-3-heptanone

Andrew P. Jarvis, Jürgen Liebig, Bert Hölldobler

2004-04-14 Communication

DOI: 10.1039/B403186E

Asymmetric alkylation of dimethoxyphosphoryl-N-[1-(S)-α-methylbenzyl]acetamide enolates. Synthesis of both stereoisomers from the same source of chirality by changing the equivalents of LDA

Mario Ordóñez, Eugenio Hernández-Fernández, Janet Xahuentitla, Carlos Cativiela

2005-01-18 Communication

DOI: 10.1039/B416616G

Structural inversion in 3-D hexagonal organization of coil–rod–coil molecule

Long Yi Jin, Jinyoung Bae, Jong-Hyun Ahn, Myongsoo Lee

2005-01-18 Communication

DOI: 10.1039/B416089D

Photocontrol of electron transfer from Zn-porphyrin to an axially bound stilbazole–pyromellitic diimide conjugate

Joe Otsuki, Atsushi Suka, Katsutoshi Yamazaki, Hideyuki Abe, Yasuyuki Araki, Osamu Ito

2004-05-05 Communication

DOI: 10.1039/B403991B

Synthesis and crystal structure of the first lanthanide complex of N-confused porphyrin with an η2 agostic C–H interaction

Xunjin Zhu, Wai-Kwok Wong, Wing-Kit Lo, Wai-Yeung Wong

2005-01-05 Communication

DOI: 10.1039/B415609A

Fabrication of mesoporous polymer using soft template method

Jyongsik Jang, Joonwon Bae

2005-01-18 Communication

DOI: 10.1039/B416518G

Luminescent cyclometalated platinum(ii) complexes with amino acidligands for protein binding

Phyllis Kit-Man Siu, Dik-Lung Ma, Chi-Ming Che

2005-01-05 Communication

DOI: 10.1039/B414936J

Palladium(0)-catalyzed direct cross-coupling reaction of allyl alcohols with aryl- and vinyl-boronic acids

Hirokazu Tsukamoto, Masanori Sato, Yoshinori Kondo

2004-04-15 Communication

DOI: 10.1039/B402256D

Supertetrahedral decametallic Ni(ii) clusters directed by μ6-tris-alkoxides

Rachel Shaw, Ian S. Tidmarsh, Rebecca H. Laye, Barbara Breeze, Madeleine Helliwell, Euan K. Brechin, Sarah L. Heath, Mark Murrie, Stefan Ochsenbein, Hans-Ulrich Güdel, Eric J. L. McInnes

2004-05-17 Communication

DOI: 10.1039/B403876B

こちらもおすすめ

化合物よくある質問

2-メトキシ-4-(メチルスルフィニル)アミンの主な用途は何ですか?

2-メトキシ-4-(メチルスルフィニル)アミンは、主に医薬品および農薬の製造に使用されます。また、合成化学の一部として研究用材料としても利用されます。

41608-73-52-Methoxy-4-(methyls...
化合物よくある質問

4-溴甲基-3-甲氧基苯甲酸は安全ですか?

安全ではありません。触覚や吸入に注意が必要で、適切な防護具を使用してください。

118684-13-24-(Bromomethyl)-3-me...
化合物よくある質問

4,6-二氯-N-甲基ピラミジンアミンの代替品はありますか?

代替品としては、4,6-二クロロピラミジンアミンや他のピラミジン系化合物が考えられます。ただし、目的と用途によって最適な代替品は異なります。

10397-15-64,6-Dichloro-N-methy...
化合物よくある質問

6-氯-4-甲基-1H-吲哚を含む廃棄物はどのように処理すべきですか?

6-氯-4-甲基-1H-吲哚の廃棄物は、適切な容器に収集し、密閉して保管します。温度は常温、湿度は低く、直射日光を避けて保管することを推奨します。廃棄処理は専門...

885520-84-36-chloro-4-methyl-1H...
化合物よくある質問

2-フローユロ-4-(トリフルオロメチル)ベンゾイドについて「に適用される法規ガイドラインは何ですか」

2-フローユロ-4-(トリフルオロメチル)ベンゾイドのCAS番号は207974-08-1です。この化合物はGHS分類で毒性物質と有害な反応物質として分類されます...

207974-08-1[2-Fluoro-4-(trifluo...
化合物よくある質問

4-ニトロフェニルN-[(ベンゼルオキシルカーボンイル]グリシングリシングリシン酸はどのように保存すればよいですか?

4-ニトロフェニルN-[(ベンゼルオキシルカーボンイル]グリシングリシングリシン酸は、室温で暗所に保管し、乾燥した環境で保存することを推奨します。容器は密閉性の...

19811-64-44-Nitrophenyl N-[(be...
化合物よくある質問

イソデスロラタドリンの代替品はありますか?

イソデスロラタドリンの代替品としては、デスロラタドリンや他の抗ヒスタミン薬が挙げられます。具体的には、デスロラタドリン、ラセカミド、フェルタドリンなどが、症状や...

183198-49-4Iso Desloratadine
化合物よくある質問

5-甲氧基-1,2,3,4-四氢异喹啉盐酸盐はどのように合成されますか?

5-甲氧基-1,2,3,4-四氢异喹啉盐酸盐の一般的な合成方法は、メタノール中で5-メトキシ-1,2,3,4-四ヒュドロイソキシンを塩酸で塩化します。この反応で...

103030-69-95-Methoxy-1,2,3,4-te...
化合物よくある質問

4-アミノ-5-メトキシ-2-トルエンサルホニック酸についての法規ガイドラインは何ですか?

CAS番号6471-78-9の4-アミノ-5-メトキシ-2-トルエンサルホニック酸は、GHS分類では corrosive(腐食性)と識別されます。EUのREAC...

6471-78-94-Amino-5-Methoxy-2-...
化合物よくある質問

甲基孕酮を取り扱う際の実験室安全事項は何ですか?

甲基孕酮の取り扱いは、PPE(個人保護具)の使用が必要な重要な安全事項を伴います。防塵マスク、ゴーグル、手袋を着用することが推奨されます。ドラフトチャンバーを使...

204063-33-22-[(Diphenylmethyl)a...

掲載誌

Physical Chemistry Chemical Physics

Physical Chemistry Chemical Physics
CiteScore: 5.5
自己引用率: 10.3%
年間論文数: 3036

Physical Chemistry Chemical Physics (PCCP) is an international journal co-owned by 19 physical chemistry and physics societies from around the world. This journal publishes original, cutting-edge research in physical chemistry, chemical physics and biophysical chemistry. To be suitable for publication in PCCP, articles must include significant innovation and/or insight into physical chemistry; this is the most important criterion that reviewers and Editors will judge against when evaluating submissions. The journal has a broad scope and welcomes contributions spanning experiment, theory, computation and data science. Topical coverage includes spectroscopy, dynamics, kinetics, statistical mechanics, thermodynamics, electrochemistry, catalysis, surface science, quantum mechanics, quantum computing and machine learning. Interdisciplinary research areas such as polymers and soft matter, materials, nanoscience, energy, surfaces/interfaces, and biophysical chemistry are welcomed if they demonstrate significant innovation and/or insight into physical chemistry. Joined experimental/theoretical studies are particularly appreciated when complementary and based on up-to-date approaches.

おすすめサプライヤー

免責事項
このページに表示される学術雑誌情報は、参考および研究目的のみを目的としています。当社は雑誌出版社とは提携しておらず、投稿の取り扱いも行っておりません。出版に関するお問い合わせは、各雑誌出版社に直接ご連絡ください。
表示されている情報に誤りがある場合は、support@chemtradehub.com までご連絡ください。迅速に確認し、対応いたします。