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Ghanshyam Pilania

Showing results (1-10 of 23) with videos related to

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Physical Chemistry Chemical Physics : PCCP|March 2, 2019
The impact of chemical order on defect transport in mixed pyrochloresBlas P Uberuaga, Romain Perriot, Ghanshyam Pilania
Physical Chemistry Chemical Physics : PCCP|October 4, 2023
How inversion relates to disordering tendencies in complex oxidesVancho Kocevski, Ghanshyam Pilania, Blas P Uberuaga
Polymer Chemistry|October 28, 2024
Materials designed to degrade: structure, properties, processing, and performance relationships in polyhydroxyalkanoate biopolymersJessica N Lalonde, Ghanshyam Pilania, Babetta L Marrone
ACS Applied Materials & Interfaces|April 17, 2019
Multifidelity Information Fusion with Machine Learning: A Case Study of Dopant Formation Energies in HafniaRohit Batra, Ghanshyam Pilania, Blas P Uberuaga, et al.
Nano Letters|January 26, 2010
Oxygen-assisted unidirectional growth of CdSe nanorods using a low-temperature redox processJonathan D Doll, Ghanshyam Pilania, Ramamurthy Ramprasad, et al.
The Journal of Physical Chemistry. A|September 4, 2012
How critical are the van der Waals interactions in polymer crystals?Chun-Sheng Liu, Ghanshyam Pilania, Chenchen Wang, et al.
Journal of Chemical Information and Modeling|November 8, 2019
Machine-Learning-Based Predictive Modeling of Glass Transition Temperatures: A Case of Polyhydroxyalkanoate Homopolymers and CopolymersGhanshyam Pilania, Carl N Iverson, Turab Lookman, et al.
Scientific Reports|October 1, 2013
Accelerating materials property predictions using machine learningGhanshyam Pilania, Chenchen Wang, Xun Jiang, et al.
Journal of Materials Science|June 22, 2022
Recent advances in computational materials design: methods, applications, algorithms, and informaticsGhanshyam Pilania, Bryan R Goldsmith, Mina Yoon, et al.
Physical Chemistry Chemical Physics : PCCP|August 11, 2020
Molecular dynamics simulations for glass transition temperature predictions of polyhydroxyalkanoate biopolymersKarteek K Bejagam, Carl N Iverson, Babetta L Marrone, et al.
Pageof 3

Showing results (1-10 of 23) with videos related to

Sort By:
Pageof 3
Physical Chemistry Chemical Physics : PCCP|March 2, 2019
The impact of chemical order on defect transport in mixed pyrochloresBlas P Uberuaga, Romain Perriot, Ghanshyam Pilania
Physical Chemistry Chemical Physics : PCCP|October 4, 2023
How inversion relates to disordering tendencies in complex oxidesVancho Kocevski, Ghanshyam Pilania, Blas P Uberuaga
Polymer Chemistry|October 28, 2024
Materials designed to degrade: structure, properties, processing, and performance relationships in polyhydroxyalkanoate biopolymersJessica N Lalonde, Ghanshyam Pilania, Babetta L Marrone
ACS Applied Materials & Interfaces|April 17, 2019
Multifidelity Information Fusion with Machine Learning: A Case Study of Dopant Formation Energies in HafniaRohit Batra, Ghanshyam Pilania, Blas P Uberuaga, et al.
Nano Letters|January 26, 2010
Oxygen-assisted unidirectional growth of CdSe nanorods using a low-temperature redox processJonathan D Doll, Ghanshyam Pilania, Ramamurthy Ramprasad, et al.
The Journal of Physical Chemistry. A|September 4, 2012
How critical are the van der Waals interactions in polymer crystals?Chun-Sheng Liu, Ghanshyam Pilania, Chenchen Wang, et al.
Journal of Chemical Information and Modeling|November 8, 2019
Machine-Learning-Based Predictive Modeling of Glass Transition Temperatures: A Case of Polyhydroxyalkanoate Homopolymers and CopolymersGhanshyam Pilania, Carl N Iverson, Turab Lookman, et al.
Scientific Reports|October 1, 2013
Accelerating materials property predictions using machine learningGhanshyam Pilania, Chenchen Wang, Xun Jiang, et al.
Journal of Materials Science|June 22, 2022
Recent advances in computational materials design: methods, applications, algorithms, and informaticsGhanshyam Pilania, Bryan R Goldsmith, Mina Yoon, et al.
Physical Chemistry Chemical Physics : PCCP|August 11, 2020
Molecular dynamics simulations for glass transition temperature predictions of polyhydroxyalkanoate biopolymersKarteek K Bejagam, Carl N Iverson, Babetta L Marrone, et al.
Pageof 3