Specially synthesized colloidal suspensions consisting of particles uniform in size and shape and dispersed in a solvent can be used as colloidal model systems. The particle interaction can be designed by the particle synthesis and can be varied over a wide range including short and long ranged repulsions as well as attractions. Spherical and directed interactions can realized. The particle interaction is generated by either entropic, electrostatic, dipolar or magnetic forces and is analytically tractable.
The colloidal particles experience thermal fluctuations of the solvent which makes them move randomly (Brownian motion). A large number of colloidal particles has to be described as an statistical ensemble. Therefore colloidal suspensions are used both experimentally and theoretically as model systems for statistical physics. If one identifies the colloid particles as "macro atoms", the ensemble of the dispersed colloidal particles behaves like an image of an atomic system at a different time and length scale.
In contrast to their atomic counterparts, colloids show typical length scales in the range of the wavelength of visible light. This make them readily accessible for optical experiments like microscopy and light scattering and offers the unique possibility to obtain complementary information from real and reciprocal space with excellent spatial resolution. Because of their large size compared to atoms, both the spatial structure and dynamics of colloids are experimentally much more accessible than it is the case for atomic and molecular systems. For example, phase transition processes are very slow compared to atomic systems, which allows to obtain data with very high temporal resolution.
Colloidal model systems are used to study the physics of complex liquids, solids and bio-systems. Non-equilibrium phenomena such as the self-organization of particles into extended structures. An exciting richness of phase behaviors, crystalline structures and a corresponding wealth of solidification scenarios can be observed. Not only the macroscopic phase behavior but also the phase transition kinetics and the microscopic particle dynamics on the single particle scale is of great scientific interest. Colloidal particles ca be steered by external forces like gravitational forces, electromagnetic forces, phoretic forces and hydrodynamic forces. This leads to a further enrichment of phenomena under equilibrium and also under non-equilibrium situations.
Our website uses cookies. Some of them are mandatory, while others allow us to improve your user experience on our website. The settings you have made can be edited at any time.
or
Essential
in2cookiemodal-selection
Required to save the user selection of the cookie settings.
3 months
be_lastLoginProvider
Required for the TYPO3 backend login to determine the time of the last login.
3 months
be_typo_user
This cookie tells the website whether a visitor is logged into the TYPO3 backend and has the rights to manage it.
Browser session
ROUTEID
These cookies are set to always direct the user to the same server.
Browser session
fe_typo_user
Enables frontend login.
Browser session
Videos
iframeswitch
Used to show all third-party contents.
3 months
yt-player-bandaid-host
Is used to display YouTube videos.
Persistent
yt-player-bandwidth
Is used to determine the optimal video quality based on the visitor's device and network settings.
Persistent
yt-remote-connected-devices
Saves the settings of the user's video player using embedded YouTube video.
Persistent
yt-remote-device-id
Saves the settings of the user's video player using embedded YouTube video.
Persistent
yt-player-headers-readable
Collects data about visitors' interaction with the site's video content - This data is used to make the site's video content more relevant to the visitor.
Persistent
yt-player-volume
Is used to save volume preferences for YouTube videos.
Persistent
yt-player-quality
Is used to save the quality settings for YouTube videos.
Persistent
yt-remote-session-name
Saves the settings of the user's video player using embedded YouTube video.
Browser session
yt-remote-session-app
Saves the settings of the user's video player using embedded YouTube video.
Browser session
yt-remote-fast-check-period
Saves the settings of the user's video player using embedded YouTube video.
Browser session
yt-remote-cast-installed
Saves the user settings when retrieving a YouTube video integrated on other web pages
Browser session
yt-remote-cast-available
Saves user settings when retrieving integrated YouTube videos.
Browser session
ANID
Used for targeting purposes to profile the interests of website visitors in order to display relevant and personalized Google advertising.
2 years
SNID
Google Maps - Google uses these cookies to store user preferences and information when you view pages with Google Maps.
1 month
SSID
Used to store information about how you use the site and what advertisements you saw before visiting this site, and to customize advertising on Google resources by remembering your recent searches, your previous interactions with an advertiser's ads or search results, and your visits to an advertiser's site.
6 months
1P_JAR
This cookie is used to support Google's advertising services.
1 month
SAPISID
Used for targeting purposes to profile the interests of website visitors in order to display relevant and personalized Google advertising.
2 years
APISID
Used for targeting purposes to profile the interests of website visitors in order to display relevant and personalized Google advertising.
6 months
HSID
Includes encrypted entries of your Google account and last login time to protect against attacks and data theft from form entries.
2 years
SID
Used for security purposes to store digitally signed and encrypted records of a user's Google Account ID and last login time, enabling Google to authenticate users, prevent fraudulent use of login credentials, and protect user data from unauthorized parties. This may also be used for targeting purposes to display relevant and personalized advertising content.
6 months
SIDCC
This cookie stores information about user settings and information for Google Maps.
3 months
NID
The NID cookie contains a unique ID that Google uses to store your preferences and other information.
6 months
CONSENT
This cookie tracks how you use a website to show you advertisements that may be of interest to you.
18 years
__Secure-3PAPISID
This cookie is used to support Google's advertising services.
2 years
__Secure-3PSID
This cookie is used to support Google's advertising services.
6 months
__Secure-3PSIDCC
This cookie is used to support Google's advertising services.
6 months