Biography

Dr. Stollenwerk received a B.S. in physics and a B.A. in mathematics at Miami University in 2002. His graduate work was performed at the University at Albany SUNY, where he received his M.S. in physics in 2004 and his Ph.D. in Nanoscience in 2007. He joined the physics department at the University of Northern Iowa in 2009 after a two year postdoctoral fellowship at Harvard University in the field of applied physics.  

Research Intrest

Dr. Stollenwerk’s research interests lie in the field of condensed matter physics focusing primarily on surfaces and low dimensional material systems. Results from his research are potentially applicable in electronic devices, sensors, and sources of alternative energy. Recently, Dr. Stollenwerk’s efforts have centered on two-dimensional material systems similar in structure to graphene. The electrical and structural properties of these materials are studied using a variety of techniques such as scanning tunneling microscopy and ballistic electron emission microscopy. Undergraduate students are highly active in Dr. Stollenwerk’s research during the school year as well as during the summer. Each summer he typically works with 1-4 students on a variety of different research projects where students learn to operate state-of-the-art experimental equipment and analyze data from a range of different techniques. 

List of Publications
Kidd TE, O’Shea A, Beck B, Delaney C, Shand P, Strauss L, Stollenwerk AJ, Hurley N, He R, Gu G. Universal Method for Creating 3D Photoluminescent Nanostructures on Layered Materials Langmuir.(2014). 30: 5939.
Cook M, Palandech R, Doore K, Ye Z, Ye G, He R, Stollenwerk AJ. Influence of interface coupling on the electronic properties of the Au/MoS2 junction Physical Review B.(2015). 92: 125425.
Roth MW, Wandling B, Kidd TE, Shand PM, Stollenwerk AJ. Simulated structural and magnetic behavior of Mn-Ti intercalated dichalcogenide crystals J. Phys: Condens. Matter.(2016). 28: 184001.
Doore K, Cook M, Clausen E, Lukashev PV, Kidd TE, Stollenwerk AJ. Electronic structure of multi-walled carbon fullerenes J. Phys: Condens. Matter. (2016). 29: 075302.