Massive Theoretical Screen of Hole Conducting Organic Materials in the Heteroacene Family by Using a Cloud-Computing Environment

Author:

Matsuzawa Nobuyuki N.1ORCID,Arai Hideyuki1,Sasago Masaru1,Fujii Eiji1,Goldberg Alexander2,Mustard Thomas J.3,Kwak H. Shaun4,Giesen David J.3,Ranalli Fabio3,Halls Mathew D.2

Affiliation:

1. Engineering Division, Industrial Solutions Company, Panasonic Corp., 1006 Kadoma, Kadoma, Osaka 571-8506, Japan

2. Schrödinger Inc., 10201 Wateridge Circle, Suite 220, San Diego, California 92121, United States

3. Schrödinger Inc., 120 West 45th Street, 17th Floor, Portland, Oregon 97204, United States

4. Schrödinger Inc., 101 SW Main Street, Suite 1300, Portland, Oregon 97204, United States

Publisher

American Chemical Society (ACS)

Subject

Physical and Theoretical Chemistry

Reference49 articles.

1. Recent Progress of Textile-Based Wearable Electronics: A Comprehensive Review of Materials, Devices, and Applications

2. Toward Environmentally Robust Organic Electronics: Approaches and Applications

3. Lab-on-Skin: A Review of Flexible and Stretchable Electronics for Wearable Health Monitoring

4. Mechanical Properties of Organic Semiconductors for Stretchable, Highly Flexible, and Mechanically Robust Electronics

5. Isono, S.; Satake, T.; Hyakushima, T.; Taki, K.; Sakaida, R.; Kishimura, S.; Hirao, S.; Nomura, K.; Torazawa, N.; Tsutsue, M. In A 0.9 μm Pixel Size Image Sensor Realized by Introducing Organic Photoconductive Film into the BEOL Process, Proceedings of the 2013 IEEE International Interconnect Technology Conference; 2013; p 6615587.

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