| 查看: 3473 | 回复: 43 | |||
| 【有奖交流】积极回复本帖子,参与交流,就有机会分得作者 gentle_boy 的 14 个金币 ,回帖就立即获得 1 个金币,每人有 1 次机会 | |||
[交流]
法国CNRS招博士研究生-CSC与波尔多大学合作渠道招生
|
|||
|
Study of the visco-elastic properties of the air-water interfaces and detection of contamination It is well known that the presence of impurities (surfactants) affects the flow properties at liquid interfaces. Thus surfactant molecules adsorbed at an interface give rise to a surface shear viscosity; a concentration gradient that modifies the surface tension and leads to visco-elastic behavior [1]. On the other hand, contamination with surfactants alters the properties of superhydrophobic surfaces and in particular reduces the slip slength [2-4]. The dynamic force microscope AFM is a powerful tool to investigate structure and rheology of confined liquids, such as molecular ordering and slip, and its dynamic mode allows to separate viscous and elastic forces. Our preliminary work [5] is the first dedicated measurement on surfacted interfaces, giving clear evidence for a strong elastic component besides the viscous drag. For molecules which adsorb at the interface but are non-soluble in water, we found that diffusion along the interface is of little relevance, and that the elastic out-of-phase response is entirely due to advection. We intend to investigate whether our approach could be used for the detection of contamination of interfaces by impurities, in particular non-fluorescent ones, or as a novel low-volume tensiometry device. Regarding impurity detection, in our preliminary study [5] we obtained a strong signal at a surfactant coverage of one molecule per 20 nm2. By optimizing the parameters and modifying the frequency range, we hope to push the sensitivity of our apparatus to much lower concentrations. At low impurity coverage, the tension change is proportional to the surfactant concentration. Regarding tensiometry, the AFM setup operates locally on the micro-scale, thus requiring much smaller liquid volumes than usual Wilhelmy plate devices (in the range of milliliters). As two possible routes we will investigate the effect of impurities on the visco-elastic response, and on the thermal-noise power spectrum of an AFM cantilever in contact with the interface. As main result, we will determine the resolution of the method and the range of parameters where it works efficiently, and compare with existing techniques. Our preliminary results suggest that the solubility could be an important parameter distinguishing among amphiphilic molecules, soap molecules from phospholipids or steroid alcohols. For molecules with low critical micelle concentration (cmc) which adsorb at the interface, we expect a signal quite different from that of highly soluble molecules which also diffuse in the water film. [1] Y. Amarouchene, G. Cristobal, and H. Kellay, Phys. Rev. Lett. 87, 206104 (2001). [2] G. Bolognesi, C. Cottin-Bizonne, C. Pirat, Physics of Fluids 26, 082004 (2014). [3] D. Schäffel, K. Koynov, D. Vollmer, H-J. Butt, C. Schönecker, PRL 116, 134501, (2016) [4] O. Manor et al., Phys. Rev. Lett. 101, 024501 (2008); [5] A. Maali, R. Boisgard, H. Chraibi, Z. Zhang, H. Kellay, A. Würger, PRL 118, 084501 (2017). 导师:Abdelhamid Maali, DR2 https://www.loma.cnrs.fr/abdelhamid-maali/ 联系方式:abdelhamid.maali@u-bordeaux.fr 或者直接联系:zhangzaicheng8911@gmail.com |
» 猜你喜欢
有多少人是今天查系统知道结果的?
已经有19人回复
面上合作单位盖章
已经有9人回复
面上函评意见出来了,像什么等级?
已经有17人回复
为什么国自然不能直接公布
已经有5人回复
梦想
已经有7人回复
学科评审组评审是指会评吗?
已经有4人回复
为什么资助数各大高校都创新高,自己申请怎么就这么难
已经有14人回复
小白求助 投论文要求的highlights应该如何写
已经有4人回复
麻烦专家们看看评委们的意见(F口面上)
已经有12人回复
怎么看青基中了没有啊
已经有6人回复
10楼2019-01-04 20:41:10
11楼2019-01-04 20:48:54
12楼2019-01-04 20:55:17
14楼2019-01-04 22:13:37
15楼2019-01-04 22:13:40
★
gentle_boy(金币+1): 谢谢参与
gentle_boy(金币+1): 谢谢参与
| 本帖内容被屏蔽 |
16楼2019-01-04 22:13:42
★
gentle_boy(金币+1): 谢谢参与
gentle_boy(金币+1): 谢谢参与
| 本帖内容被屏蔽 |
17楼2019-01-04 22:13:44
18楼2019-01-04 22:47:19
44楼2019-01-11 14:52:56
简单回复
2019-01-04 19:24
回复
gentle_boy(金币+1): 谢谢参与
在 发自小木虫IOS客户端
Sun_10833楼
2019-01-04 19:30
回复
gentle_boy(金币+1): 谢谢参与
1 发自小木虫Android客户端
紫然若依4楼
2019-01-04 19:35
回复
tzynew5楼
2019-01-04 20:01
回复
gentle_boy(金币+1): 谢谢参与
youngen6楼
2019-01-04 20:15
回复
2019-01-04 20:22
回复
2019-01-04 20:23
回复
gentle_boy(金币+1): 谢谢参与
nono20099楼
2019-01-04 20:25
回复
gentle_boy(金币+1): 谢谢参与
。 发自小木虫Android客户端
shenrenren13楼
2019-01-04 21:15
回复
gentle_boy(金币+1): 谢谢参与
pandongzi19楼
2019-01-04 22:48
回复
gengxin6020楼
2019-01-04 23:00
回复
gentle_boy(金币+1): 谢谢参与
落花剑雨21楼
2019-01-05 00:39
回复
gentle_boy(金币+1): 谢谢参与
syhorchid22楼
2019-01-05 00:51
回复
gentle_boy(金币+1): 谢谢参与
xiaoqiuqiu2023楼
2019-01-05 05:58
回复
gentle_boy(金币+1): 谢谢参与
guimu24楼
2019-01-05 08:11
回复
gentle_boy(金币+1): 谢谢参与
1 发自小木虫Android客户端
lzg02071625楼
2019-01-05 09:41
回复
gentle_boy(金币+1): 谢谢参与
假大空26楼
2019-01-05 10:00
回复
gentle_boy(金币+1): 谢谢参与
顶
胡小虾27楼
2019-01-05 18:57
回复
gentle_boy(金币+1): 谢谢参与
祝福
onesaid28楼
2019-01-05 20:32
回复
gentle_boy(金币+1): 谢谢参与
, 发自小木虫Android客户端
miaojiabing29楼
2019-01-06 11:06
回复
gentle_boy(金币+1): 谢谢参与
改行卖白菜30楼
2019-01-06 11:28
回复
gentle_boy(金币+1): 谢谢参与
! 发自小木虫IOS客户端
m_inter31楼
2019-01-06 15:20
回复
gentle_boy(金币+1): 谢谢参与

greenfly32楼
2019-01-06 15:59
回复
gentle_boy(金币+1): 谢谢参与
这 发自小木虫IOS客户端
shenrenren33楼
2019-01-06 18:38
回复
奶奶的心意34楼
2019-01-06 19:23
回复
youngen35楼
2019-01-09 19:09
回复
youngen36楼
2019-01-09 19:10
回复
slytjiaofei37楼
2019-01-09 20:50
回复
miaojiabing38楼
2019-01-10 08:23
回复
johnson16839楼
2019-01-10 08:58
回复
gentle_boy(金币+1): 谢谢参与
spc0840楼
2019-01-10 09:17
回复
gentle_boy(金币+1): 谢谢参与
。 发自小木虫IOS客户端
HHH121641楼
2019-01-10 09:40
回复
gentle_boy(金币+1): 谢谢参与
在 发自小木虫IOS客户端
假大空42楼
2019-01-10 10:10
回复
好
C1041401643楼
2019-01-10 10:49
回复
gentle_boy(金币+1): 谢谢参与
顶 发自小木虫IOS客户端










回复此楼

投票:
20