Cervantes

Hoy es el día más hermoso de nuestra vida, querido Sancho; los obstáculos más grandes, nuestras propias indecisiones; nuestro enemigo más fuerte, el miedo al poderoso y a nosotros mismos; la cosa más fácil, equivocarnos; la más destructiva, la mentira y el egoísmo; la peor derrota, el desaliento; los defectos más peligrosos, la soberbia y el rencor; las sensaciones más gratas, la buena conciencia, el esfuerzo para ser mejores sin ser perfectos, y sobretodo, la disposición para hacer el bien y combatir la injusticia dondequiera que esté.

MIGUEL DE CERVANTES
Don Quijote de la Mancha.
La Colmena no se hace responsable ni se solidariza con las opiniones o conceptos emitidos por los autores de los artículos.

7 de noviembre de 2017

Wrinkles give heat a jolt in pillared graphene

by Staff WritersHouston TX (SPX) Nov 06, 2017


Heat transport through pillared graphene could be made faster by manipulating the junctions between sheets of graphene and the nanotubes that connect them, according to Rice University researchers.
Pillared graphene would transfer heat better if the theoretical material had a few asymmetric junctions that caused wrinkles, according to Rice University engineers.
Rice materials scientist Rouzbeh Shahsavari and alumnus Navid Sakhavand first built atom-level computer models of pillared graphene - sheets of graphene connected by covalently bonded carbon nanotubes - to discover their strength and electrical properties as well as their thermal conductivity.
In a new study, they found that manipulating the joints between the nanotubes and graphene has a significant impact on the material's ability to direct heat. That could be important as electronic devices shrink and require more sophisticated heat sinks.
The research appears in the American Chemical Society journal ACS Applied Materials and Interfaces.
Researchers who study or are working to make pillared graphene have primarily viewed two characteristics of the theoretical material: the length of the pillars and their distance from each other. The new study suggests that a third parameter - the nature of the junction between the graphene and nanotubes - should also be considered.
A seamless connection between flat graphene, the atom-thick form of carbon, and round nanotubes requires adjustments to their characteristic six-member carbon rings. The simplest way is to give half the rings at the junction an extra atom. Six seven-member rings alternating with six six-member rings allow the sheet to make a 90-degree turn to become the tube.
But that's not the optimal configuration for heat transport, according to the Rice team. It found that replacing six heptagons with three octagons would facilitate the turn while slightly stressing the graphene. That would wrinkle the graphene sheets' top and bottom while not significantly changing transport at the junctions.
The researchers intuitively expected the wrinkles to lower thermal transport and were surprised to find that thermal transport across the "in-plane" graphene became faster with wrinkles. They determined that having fewer rings in the junctions between nanotubes and graphene meant less scattering of heat-carrying phonons, which kept them onboard for the bumpy ride.
Measured along the longest plane, models with the octagons were nearly 20 percent better at transporting phonons than those without.
"Our results show that subtle features such as this junction configuration have a significant impact on thermal transport," said Shahsavari, an assistant professor of civil and environmental engineering and of materials science and nanoengineering.
"Given the current needs in thermal management and device miniaturization in many nano- and microelectronics, this study provides a new degree of freedom to play and improve thermal transport."
The researchers thought phonon transport through the nanotubes, which they already knew was slower than in graphene, might be slower still under the influence of the octagons, but the altered interface didn't appear to have a significant effect.
"The reason lies in the geometry," Shahsavari said. "The lower the number of non-hexagonal rings in the junction (for example three octagons versus six heptagons), the lower the number of undesirable rings and thus lower phonon scattering and improved thermal transport." Because the junctions can adopt many different geometries depending on the radius and chirality of the nanotube, there are many more potential configurations to be modeled, he said.

Alerta Venezuela

No dejen de ver este conmovedor video

LatinoAmérica Calle 13

The American Dream

Facebook, Israel y la CIA











La Revolucion de la Clase Media


Descontento en el corazon del capitalismo: el Reino Unido

Descontento en el corazon del capitalismo: el Reino Unido

La Ola se extiende por todo el mundo arabe : Bahrein

La Caida de un Mercenario

La Revolucion no sera transmitida (I)

(II) La revolucion so sera transmitida

(III) La Revolucion no sera transmitida

(IV) La Revolucion no sera transmitida

(V) La Revolucion no sera transmitida

(VI) La Revolucion no sera transmitida

(VII) La revolucion no sera transmitida

(VIII) La Revolucion no sera transmitida

Narcotrafico SA

La otra cara del capitalismo...

Manuel Rosales mantenia a la oposicion con el presupuesto de la Gobernacion del Zulia...

El petroleo como arma segun Soros

Lastima que se agacho...

El terrorismo del imperio

Promocional DMG

Uribe y DMG