Global demand for high performance, low cost, and eco-friendly electronics is ever increasing. Ion/charge transport ability and mechanical adaptability constitute two critical performance metrics of battery and semiconductor materials, which are fundamentally correlated with their structural dynamics under various operating conditions. It is imperative to reach the mechanistic understanding of the structure-property relationships of electronic materials to develop principles of materials design. Nevertheless, the intricate atomic structure and elusive phase behaviors in the operation of devices challenge direct experimental observations. Herein, we employ a spectrum of modeling methods, including quantum chemistry, ab-initio modeling, and m...
The development of materials with tailored functionalities and with continuously shrinking linear di...
Solar cells made from organic photovoltaic (OPV) materials have the potential to provide sustainable...
185 pagesOrganic materials with a judicious choice of functionalization have emerged as attractive c...
Global demand for high performance, low cost, and eco-friendly electronics is ever increasing. Ion/c...
We present a computational study of the molecular organization and charge mobility of Ph-BTBT-C10, a...
Several forms of organic materials have arisen as promising candidates for future active electrode m...
The development of science and technology have provided a lifestyle completely dependent on energy c...
Batteries have become an irreplaceable technology in human life as society becomes progressively mor...
In this work, the Li-ion insertion mechanism in organic electrode materials is investigated through ...
The need for sustainable, economical, and high energy density rechargeable batteries are mandatory t...
The field of organic electronics has developed tremendously over the last twenty years. The key advan...
Organic semiconductors can improve the performance of wearable electronics, e-skins, and pressure se...
The development of materials with tailored functionalities and with continuously shrinking linear di...
Solar cells made from organic photovoltaic (OPV) materials have the potential to provide sustainable...
185 pagesOrganic materials with a judicious choice of functionalization have emerged as attractive c...
Global demand for high performance, low cost, and eco-friendly electronics is ever increasing. Ion/c...
We present a computational study of the molecular organization and charge mobility of Ph-BTBT-C10, a...
Several forms of organic materials have arisen as promising candidates for future active electrode m...
The development of science and technology have provided a lifestyle completely dependent on energy c...
Batteries have become an irreplaceable technology in human life as society becomes progressively mor...
In this work, the Li-ion insertion mechanism in organic electrode materials is investigated through ...
The need for sustainable, economical, and high energy density rechargeable batteries are mandatory t...
The field of organic electronics has developed tremendously over the last twenty years. The key advan...
Organic semiconductors can improve the performance of wearable electronics, e-skins, and pressure se...
The development of materials with tailored functionalities and with continuously shrinking linear di...
Solar cells made from organic photovoltaic (OPV) materials have the potential to provide sustainable...
185 pagesOrganic materials with a judicious choice of functionalization have emerged as attractive c...