All $50+ Orders Get Free Delivery
Neutron Spin Echo Spectroscopy for Viscoelasticity and Rheology Studies - Polymer Science Research Book (Advances in Polymer Science Vol. 134) | Ideal for Material Scientists & Polymer Researchers
$54.45
$99
Safe 45%
Neutron Spin Echo Spectroscopy for Viscoelasticity and Rheology Studies - Polymer Science Research Book (Advances in Polymer Science Vol. 134) | Ideal for Material Scientists & Polymer Researchers
Neutron Spin Echo Spectroscopy for Viscoelasticity and Rheology Studies - Polymer Science Research Book (Advances in Polymer Science Vol. 134) | Ideal for Material Scientists & Polymer Researchers
Neutron Spin Echo Spectroscopy for Viscoelasticity and Rheology Studies - Polymer Science Research Book (Advances in Polymer Science Vol. 134) | Ideal for Material Scientists & Polymer Researchers
$54.45
$99
45% Off
Quantity:
Delivery & Return: Free shipping on all orders over $50
Estimated Delivery: 10-15 days international
15 people viewing this product right now!
SKU: 47562877
Guranteed safe checkout
amex
paypal
discover
mastercard
visa
apple pay
shop
Description
Viscoelasticandtransportpropertiesofpolymersintheliquid(solution,melt)or liquid-like (rubber) state determine their processing and application to a large extent and are of basic physical interest [1―3]. An understanding of these dynamic properties at a molecular level, therefore, is of great importance. However,thisunderstandingiscomplicatedbythefactsthatdi?erentmotional processes may occur on di?erent length scales and that the dynamics are governed by universal chain properties as well as by the special chemical structure of the monomer units [4,5]. The earliest and simplest approach in this direction starts from Langevin equations with solutions comprising a spectrum of relaxation modes [1―4]. Special features are the incorporation of entropic forces (Rouse model, [6]) which relax uctuations of reduced entropy, and of hydrodynamic interactions (Zimm model, [7]) which couple segmental motions via long-range back ow elds in polymer solutions, and the inclusion of topological constraints or entanglements (reptation or tube model, [8―10]) which are mutually imposed within a dense ensemble of chains. Another approach, neglecting the details of the chemical structure and concentratingontheuniversalelementsofchainrelaxation,isbasedondynamic scalingconsiderations[4,11].Inparticularinpolymersolutions,thisapproach o?ers an elegant tool to specify the general trends of polymer dynamics, although it su?ers from the lack of a molecular interpretation. A real test of these theoretical approaches requires microscopic methods, which simultaneously give direct access to the space and time evolution of the segmental di?usion. Here, quasi-elastic scattering methods play a crucial role sincetheyallowthemeasurementofthecorrespondingcorrelationfunctions.Inparticular,thehigh-resolutionneutronspinecho(NSE)spectroscopy[12―15]is very suitable for such investigations since this method covers an appropriate range in time (0.005)t/ns)40) and space (r/nm [15). Furthermore, the possibilityoflabellingbyhydrogen-deuteriumexchangeallowstheobservation of single-chain behavior even in the melt.
More
Shipping & Returns

For all orders exceeding a value of 100USD shipping is offered for free.

Returns will be accepted for up to 10 days of Customer’s receipt or tracking number on unworn items. You, as a Customer, are obliged to inform us via email before you return the item.

Otherwise, standard shipping charges apply. Check out our delivery Terms & Conditions for more details.


You Might Also Like

We value your privacy

We use cookies and other technologies to personalize your experience, perform marketing, and collect analytics. Learn more in our Privacy Policy.

Top