2019
- Z.D.Luo, X.Xia, M.M.Yang, N.R.Wilson, A.Gruverman, and M.Alexe, "Optoelectronic artificial synapses made of ferroelectric field-effect enabled two-dimensional memristive transistors," ACS Nano (2019). DOI: 10.1021/acsnano.9b07687.
- A.Gruverman, M.Alexe, and D.Meier, “Piezoresponse Force Microscopy and Nanoferroic Phenomena," review article, Nat. Comm. 10, 1661 (2019).
- N.Balke, T.Schenk, I.Stolichnov, and A.Gruverman, “Piezoresponse Force Microscopy (PFM)," in Ferroelectricity in Doped Hafnium Oxide: Materials, Properties and Devices, edited by U.Schroeder, C.S.Hwang and H.Funakubo (Woodhead Publishing Series in Electronic and Optical Materials, 2019).
- H.Lu, Y.Tan, J.P.V.McConville, Z.Ahmadi, B.Wang, M.Conroy, K.Moore, U.Bangert, J.E.Shield, L.Q.Chen, J.M.Gregg, and A.Gruverman, “Electrical Tunability of Domain Wall Conductivity in LiNbO3 Thin Films," Adv. Mat. 31, e1902890 (2019).
- Y.Zhang, H.Lu, X.Yan, X.Cheng, L.Xie, T.Aoki, L.Li, C.Heikes, D.S.P.Lau, D.G.Schlom, L.Q.Chen, A.Gruverman, and X.Pan, “Intrinsic Conductance of Domain Walls in BiFeO3," Adv. Mat. 36, 1902099 (2019).
- P.Buragohain, P.Buragohain, A.Erickson, P.Kariuki, T.Mittmann, CRichter, P.D.Lomenzo, H.Lu, T.Schenk, T.Mikolajick, U.Schroeder, and A.Gruverman, “Fluid Imprint and Inertial Switching in Ferroelectric La:HfO2 Capacitors," ACS Appl. Mat. Interfaces 11, 35115-35121 (2019). DOI:10.1021/acsami.9b11146.
- S.Martin, B.Gautier, N.Baboux, A.Gruverman, A.Carretero-Genevrier, M.Gich, and A.Gomez, “Characterizing Ferroelectricity with an Atomic Force Microscopy: An All-Around Technique," in Electrical Atomic Force Microscopy for Nanoelectronics, edited by U.Celano (Springer Nature Switzerland AG, 2019); doi.org/10.1007/978-3-030-15612-1.
- Q.Zhang, S.Prokhorenko, Y.Nahas, L.Xie, L.Bellaiche, A.Gruverman and N.Valanoor, “Deterministic Switching of Ferroelectric Bubble Nanodomains," Adv. Funct. Mat. 29, 1808573 (2019).
- M.Abuwasib, H.Lee, J.Lee, C.B.Eom, A.Gruverman, and U.Singisetti, “Characterization and Modeling of Co/BaTiO3/SrRuO3 Ferroelectric Tunnel Junction Memory By Capacitance-voltage (C-V), Current-voltage (I-V) and High-frequency Measurements," IEEE Transactions on Electron Devices 66, 2186-2191 (2019). DOI:10.1109/TED.2019.2904019.
- A.Lipatov, T.Li, N.Vorobeva, A.Sinitskii, and A.Gruverman, "Nanodomain Engineering for Programmable Ferroelectric Devices," Nano Lett. 19, 3194-3198 (2019).
2018
- Y.Zhang, H.Lu, L.Xie, X.Yan, T.R.Paudel, J.Kim, X.Cheng, H.Wang, C.Heikes, L.Li, M.Xu, D.G. Schlom, L.Q.Chen, R.Wu, E.Y.Tsymbal, A.Gruverman, and X.Pan, “Direct observation of strongly anisotropic polarization-induced conduction at the ferroelectric/insulator interface," Nat. Nanotech. 13, 1132-1136 (2018).
- B.Chen, T.Li, Q.Dong, E.Mosconi, J.Song, Z.Chen, Y.Deng, S.Ducharme, A.Gruverman, F.D.Angelis, and J.Huang, “Giant Electrostrictive Response in Organic-inorganic Hybrid Perovskites," Nat. Mat. 17, 1020-1026 (2018).
- L.You, F.Liu, H.Li, Y.Hu, S.Zhou, L.Chang, Y.Zhou, Q.Fu, G.Yuan, S.Dong, H.J.Fan, A.Gruverman, Z.Liu, and J.Wang, “In-Plane Ferroelectricity in Thin Flakes of Van der Waals Hybrid Perovskite," Adv. Mat. 30, 1803249 (2018).
- A.Lipatov, M.J.Loes, H.Lu, J.Dai, P.Patoka, N.S.Vorobeva, D.S.Muratov, G.Ulrich, B.Kästner, A.Hoehl, G.Ulm, X.C.Zeng, E.Rühl, A.Gruverman, P.A.Dowben, and A.Sinitskii, “Quasi-1D TiS3 Nanoribbons: Mechanical Exfoliation and Thickness-Dependent Raman Spectroscopy," ACS Nano 12, 12713-12720 (2018).
- T.Li, A.Lipatov, H.Lu, H.Lee, J.W.Lee, E.Torun, L.Wirtz, C.B.Eom, J.Íñiguez, A.Sinitskii, and A.Gruverman, “Optical Control of Polarization in Ferroelectric Heterostructures," Nat. Comm. 9, 3344 (2018).
- P.Buragohain, C.Richter, T.Schenk, H.Lu, T.Mikolajick, U.Schroeder, and A.Gruverman, “Nanoscopic studies of domain structure dynamics in ferroelectric La:HfO2 capacitors," Appl. Phys. Lett. 112, 222901 (2018).
- A.Lipatov, H.Lu, M.Alhabeb, B.Anasori, A.Gruverman, Y.Gogotsi, and A.Sinitskii, “Elastic Properties of 2D Ti3C2Tx MXene Monolayers and Bilayers," Sci. Adv. 4, eaat0491 (2018).
- W.Wu, S.Tang, Y.Deng, Y.Fang, H.Lu, Y.Liu, T.Li, Z.Yang, A.Gruverman, and J.Huang, “Molecular Doping of Halide Perovskite Enabled Scalable Blading of Efficient Hole Transport Layer-free Perovskite Solar Cells," Nat. Comm. 9, 1625 (2018).
- P.Sharma, Z.Huang, M.S.Li, C.J.Li, S.Hu, H.Lee, J.W.Lee, C.B.Eom, S.J.Pennycook, J.Seidel, Ariando, and A.Gruverman, “Oxygen Stoichiometry Effect on Polar Properties of LaAlO3/SrTiO3," Adv. Funct. Mat. 28, 1707159 (2018).
- R.Guo, Y.Zhou, L.Wu, Z.Wang, Z.Lim, X.Yan, W.Lin, H.Wang, H.Y.Yoong, S.Chen, Ariando, T.Venkatesan, J.Wang, G.M.Chow, A.Gruverman, X.Miao, Y.Zhu, and J.Chen, “Control of Synaptic Plasticity Learning of Ferroelectric Tunnel Memristor by Nano-scale Interface Engineering," ACS Appl. Mater. Interfaces 10, 12862-12869 (2018). DOI: 10.1021/acsami.8b01469.
- A.Chouprik, S.Zakharchenko, M.Spiridonov, S.Zarubin, A.Chernikova, R.Kirtaev, A.Gruverman, A.Zenkevich, and D.Negrov, “Ferroelectricity in Hf0.5Zr0.5O2 Thin Films: A Microscopic Study of the Polarization Switching Phenomenon and Field-Induced Phase Transformations," ACS Appl. Mater. Interfaces 10, 8818-8826 (2018).
- H.Lu, D.Lee, K.Klyukin, L.L.Tao, B.Wang, H.Lee, J.Lee, T.R.Paudel, L.Q.Chen, E.Y.Tsymbal, V.Alexandrov, C.B.Eom, and A.Gruverman, “Tunneling Hot Spots in Ferroelectric SrTiO3," Nano Lett. 18, 491-497 (2018).
- W.Hu, T.R.Paudel, S.Lopatin, Z.Wang, H.Ma, K.Wu, A.Bera, G.Yuan, A.Gruverman, E.Y.Tsymbal, T.Wu, “Colossal X-ray-induced persistent photoconductivity in current-perpendicular-to-plane ferroelectric/semiconductor junctions," Adv. Funct. Mat. 28, 1704337 (2018). DOI: 10.1002/adfm.201704337.
2017
- P.Zhang, L.Xie, G.Liu, Y.Nahas, S.Prokhorenko, X.Pan, L.Bellaiche, A.Gruverman and N.Valanoor, "Nanoscale bubble domains and topological transitions in ultrathin ferroelectric films," Adv. Mat. 29, 1702375 (2017).
- J.F.Scott, A.Hershkovitz, Y.Ivry, H.Lu, A.Gruverman, and J.M.Gregg, "Superdomain Dynamics in Ferroelectric-Ferroelastic Films: Switching, Jamming, and Relaxation," Appl. Phys. Rev. 4, 041104 (2017).
- P.Zubko, H.Lu, C.W.Bark, X.Martí, J.Santiso, C.B.Eom, G.Catalan, and A.Gruverman, “On the persistence of polar domains in ultrathin ferroelectric capacitors," J. Phys. Cond. Matt. 29, 284001 (2017).
- H.Lu, S.Liu, Z.Ye, S.Yasui, H.Funakubo, A.M.Rappe, and A.Gruverman, “Asymmetry in Mechanical Polarization Switching," Appl. Phys. Lett. 110, 222903 (2017).
- E.Seyedhosseini, K.Romanyuk, D.Vasileva, S.Vasilev, A.Nuraeva, P.Zelenovskiy, M.Ivanov, A.Morozovska, V.Ya.Shur, H.Lu, A.Gruverman, and A.Kholkin, "Self-assembly of organic ferroelectrics by evaporative dewetting: a case of β-glycine," ACS Appl. Mater. Interfaces 9, 20029-20037 (2017).
- K.Ng, S.J.Hillenius, and A.Gruverman, “Transient Nature of Negative Capacitance in Ferroelectric Field-Effect Transistors," Solid St. Comm. 265, 12-14 (2017).
- A.Lipatov, A.Fursina, T.H. Vo, P.Sharma, A.Gruverman, and A.Sinitskii, “Polarization-Dependent Electronic Transport in Graphene/Pb(Zr,Ti)O3 Ferroelectric Field-Effect Transistors," Adv. Electr. Mat. 1700020 (2017).
- E.Strelcov, Q.Dong, T.Li, J.Chae, Y.Shao, Y.Deng, A.Gruverman, J.Huang, and A.Centrone, “CH3NH3PbI3 Perovskites: Ferroelasticity Revealed," Science Adv. 3, No. 4, e1602165 (2017). DOI: 10.1126/sciadv.1602165
- Y.Yuan, T.Li, Q.Wang, J.Xing, A.Gruverman, and J.Huang, “Anomalous Photovoltaic Effect in Organic-Inorganic Hybrid Perovskite Solar Cells," Science Adv. 3, No. 3, e1602164 (2017). DOI: 10.1126/sciadv.1602164
- W.Wei, Y.Zhang, Q.Xu, H.Wei, Y.Fang, Q.Wang, Y.Deng, T.L, A.Gruverman, L.Cao, and J.Huang, “Monolithic Integration of Hybrid Perovskite Single Crystals with Heterogenous Substrate for Highly Sensitive X-ray Imaging," Nature Photonics 11, 15-321 (2017).
- L.Shen, Y.Lin, C.Bao, Y.Bai, Y.Deng, M.Wang, T.Li, Y.Lu, A.Gruverman, W.Li and J.Huang, “Integration of perovskite and polymer photoactive layers to produce ultrafast response, ultraviolet-to-near-infrared, sensitive photodetectors," Mater. Horiz. 4, 242 (2017).
- S.-C.Chang, A.Naeemi, D.E.Nikonov, and A.Gruverman, “Theoretical approach to electroresistance in ferroelectric tunnel junctions," Phys. Rev. Appl. 7, 024005 (2017).
- Rui Guo, Ying Wang, Herng Yau Yoong, Jianwei Chai, Han Wang, Weinan Lin, Shaohai Chen, Xiaobing Yan, T. Venkatesan, Ariando, Alexei Gruverman, Yihong Wu, Jingsheng Chen, “Effect of extrinsically introduced passive interface layer on the performance of ferroelectric tunnel junctions," ACS Appl. Mater. Interfaces 9, 5050-5055 (2017).
- M.Abuwasib, J.Lee, H. Lee, C.B.Eom, A.Gruverman, and U.Singisetti, “Sub-100 nm Integrated Ferroelectric Tunnel Junction Devices using Hydrogen Silsesquioxane Planarization," J. Vac. Sci. & Technol. B 35, 021803 (2017). doi: 10.1116/1.4978519.
- T.Li, P.Sharma, A.Lipatov, H.Lee, J.Lee, M.Y.Zhuravlev, T.R.Paudel, Y.A.Genenko, C.B.Eom, E.Y.Tsymbal, A.Sinitskii, and A.Gruverman, “Polarization-mediated modulation of electronic and transport properties of hybrid MoS2/BaTiO3 tunnel junctions," Nano Lett. 17, 922-927 (2017).
2016
- S.Poddar, H.Lu, J.Song, O.Goit, S.Valloppilly, A.Gruverman, and S.Ducharme, "Fabrication of diisopropylammonium bromide crystalline arrays with in-plane uniaxial polarization," J. Phys. D: Appl. Phys. 49, 5305-5313 (2016).
- J.Zhao, Y.Deng, T.Li, Y.Shao, A.Gruverman, J.Shield and J.Huang, “Is Cu a Stable Electrode Material in Hybrid Perovskite Solar Cells for a 30-Year Lifetime?," Energy Environ. Sci. 9, 3650-3656 (2016).
- X.Jiang, H.Lu, Y.Yin, X.Zhang, X.Wang, L.Yu, Z.Ahmadi, P.S..Costa, A.D.DiChiara, X.Cheng, A.Gruverman, A.Enders, X.Xu, “Room temperature ferroelectricity in continuous croconic acid thin films," Appl. Phys. Lett. 109, 102902 (2016).
- Y.Nakagawa, Y.Hashizume, T.Nakajima, A.Gruverman, and S.Okamura, “Domain switching kinetics in vinylidene fluoride/tetrafluoroethylene copolymer thin films," Jpn. J. Appl. Phys. 55, 10TA12 (2016).
- H.Lu, B.Wang, T.Li, A.Lipatov, H.Lee, A. Rajapitamahuni, R.Xu, X.Hong, S.Farokhipoor, L.W.Martin, C.B.Eom, L.Q.Chen, A.Sinitskii and A.Gruverman, “Nanodomain Engineering in Ferroelectric Capacitors with Graphene Electrodes," Nano Lett. 16, 6460-6466 (2016).
- R.Guo, L.Shen, H.Wang, Z.Lim, W.Lu, P.Yang, Ariando, A.Gruverman, T.Venkatesan, Y.P.Feng, and J.Chen, “Tailoring Self-Polarization of BaTiO3 Thin Films by Interface Engineering and Flexoelectric Effect," Adv. Mater. Interfaces, 1600737 (2016).
- B.Chen, Y.Bai, Z.Yu, T.Li, X.Zheng, Q.Dong, M.Boccard, A.Gruverman, Z.Holman, and J.Huang, “Efficient Semi-Transparent Perovskite Solar Cells for 23.0%-Efficiency Perovskite/Silicon Four-Terminal Tandem Cells," Adv. Energy Mat. 1601128 (2016).
- Q.Wang, Q.Dong, T.Li, A.Gruverman and J.Huang, “Thin Insulating Tunneling Contacts for Efficient and Water-Resistant Perovskite Solar Cells," Adv. Mat. 28, 6734–6739 (2016).
- J.F.Scott, D.M.Evans, J.M.Gregg, and A.Gruverman, “Hydrodynamics of domain walls in ferroelectrics and multiferroics: Impact on memory devices," Appl. Phys. Lett. 109, 042901 (2016).
- J.Song, H.Lu, K.Foreman, S.Li, L.Tan, S.Adenwalla, A.Gruverman, and S.Ducharme, “Ferroelectric polymer nanopillars arrays on flexible substrates by reverse nanoimprint lithography," J. Mat. Chem. C 4, 5914-5921 (2016). DOI: 10.1039/c6tc01848c.
- A.Chernikova, M.Kozodaev, A.Markeev, D.Negrov, M.Spiridonov, S.Zarubin, O.Bak, P.Buragohain, H.Lu, E.Suvorova, A.Gruverman, and A.Zenkevich, “Ultrathin Hf0.5Zr0.5O2 Ferroelectric Films on Si," ACS Appl. Mater. Interfaces 8, 7232-7237 (2016).
- M.Abuwasib, H.Lu, T.Li, P.Buragohain, H.Lee, C.B.Eom, A.Gruverman, and U.Singisetti, “Scaling of Electroresistance Effect in Fully Integrated Ferroelectric Tunnel Junctions," Appl. Phys. Lett. 108, 152904 (2016).
- Y.Shao, Y.Fang, T.Li, Q.Wang, Q.Dong, Y.Deng, Y.Yuan, H.Wei, A.Gruverman, and J.Huang, “Grain Boundary Dominated Ion Migration in Polycrystalline Organic-Inorganic Halide Perovskite Films," Energy Environ. Sci. 9, 1752-1759 (2016). DOI: 10.1039/C6EE00413J.
- H.Lee, T.H.Kim, J.J.Patzner, H.Lu, J.Lee, H.Zhou, W.Chang, M.K.Mahanthappa, E.Y.Tsymbal, A.Gruverman, and C.B.Eom, “Imprint Control of BaTiO3 Thin films via Chemically-induced Surface Polarization Pinning," Nano Lett. 16, 2400-2406 (2016).
- D.J.Kim, J.G.Connell, S.S.A.Seo, and A.Gruverman, “Domain wall conductivity in semiconducting hexagonal ferroelectric TbMnO3 thin films," Nanotechnology 27, 155705 (2016).
- J.Song, H.Lu, S.Li, L.Tan, A.Gruverman, S.Ducharme, “Fabrication of ferroelectric polymer nanostructures on flexible substrates by soft-mold reverse nanoimprint lithography," Nanotechnology 27, 015302 (2016).
- Y.Yuan, Q.Wang, Y.Shao, H.Lu, T.Li, A.Gruverman, and J.Huang, “Electric-Field-Driven Reversible Conversion Between Methylammonium Lead Triiodide Perovskites and Lead Iodide at Elevated Temperatures," Adv. Energy Mat. 6, 1501803 (2016).
2015
- D.Lee, H.Lu, Y.Gu, S.-Y.Choi, S.-D.Li, S.Ryu, T.R.Paudel, K.Song, E.Mikheev, S.Lee, S.Stemmer, D.A.Tenne, S.H.Oh, E.Y.Tsymbal, X.Wu, L.-Q. Chen, A.Gruverman, and C.B.Eom, “Emergence of Room-Temperature Ferroelectricity at Reduced Dimensions," Science 349, 1314-1317 (2015).
- H.Lu, T.Li, S.Poddar, O.Goit, A.Lipatov, A.Sinitskii, S.Ducharme and A.Gruverman, “Statics and Dynamics of Ferroelectric Domains in Diisopropylammonium Bromide," Adv. Mat. 27, 7832-7838 (2015).
- M.Abuwasib, H.Lee, A.Gruverman, C.B.Eom, and U.Singisetti, “Contact resistance to SrRuO3 and La0.67Sr0.33MnO3 epitaxial films," Appl. Phys. Lett. 107, 242905 (2015).
- P.Sharma, S.Ryu, Z.Viskadourakis, T.R.Paudel, H.Lee, C.Panagopoulos, E.Y.Tsymbal, C.B.Eom, and A.Gruverman, “Electro-Mechanics of Ferroelectric-like Behavior of LaAlO3 Thin Films," Adv. Funct. Mat. 25, 6538-6544 (2015).
- T.H.Vo, U.G.E.Perera, M.Shekhirev, M.M.Pour, D.A.Kunkel, H.Lu, A.Gruverman, E.Sutter, M.Cotlet, D.Nykypanchuk, P.Zahl, A.Enders, A.Sinitskii, and P.Sutter, “Nitrogen-doping induced self-assembly of graphene nanoribbon-based 2D and 3D metamaterials," Nano Lett. 15, 5770-5777 (2015).
- A.Lipatov, P.Sharma, A.Gruverman, and A.Sinitskii, “Optoelectrical molybdenum disulfide (MoS2) – ferroelectric memories," ACS Nano 9, 8089-8098 (2015).
- J.Očenášek, H.Lu, C.W.Bark, C.B.Eom, J.Alcalá, G.Catalan, and A.Gruverman, “Nanomechanics of Flexoelectric Switching," Phys. Rev B 92, 035417 (2015).
- A.Sokolov, O.Bak, H.Lu, S.Li, E.Y.Tsymbal and A.Gruverman, “Effect of epitaxial strain on tunneling electroresistance in ferroelectric tunnel junctions," Nanotechnology 26, 305202 (2015).
- A.Nguyen, P.Sharma, T.Scott, E.Preciado, V.Klee, D.Sun, I-His.Lu, D.Barroso, S.H.Kim, V.Y.Shur, A.R.Akhmatkhanov, A.Gruverman, L.Bartels, and P.A.Dowben, “Towards Ferroelectric Control of Monolayer MoS2," Nano Lett. 15, 3364-3369 (2015).
- P.Sharma, S.Ryu, J.D.Burton, T.R.Paudel, C.W.Bark, Z.Huang, Ariando, E.Y.Tsymbal, G.Catalan, C.B.Eom, and A.Gruverman, “Mechanical Tuning of LaAlO3/SrTiO3 Interface Conductivity," Nano Lett. 15, 3547-3551 (2015).
- G.Catalan, D.Jiménez, and A.Gruverman, “14, 137-139 (2015).
- Z.Xiao, Y.Yuan, Y.Shao, Q.Wang, Q.Dong, C.Bi, P.Sharma, A.Gruverman, and J.Huang, “Giant Switchable Photovoltaic Effect in Organometal Trihalide Perovskite Devices," Nature Materials 14, 193-198 (2015).
- Y.Y.Choi, P.Sharma, C.Phatak, D.J.Gosztola, J.Liu, J.Lee, J.Li, A.Gruverman, S.Ducharme, and S.Hong, “Enhancement of local piezoresponse in polymer ferroelectrics via nanoscale control of microstructure," ACS Nano 9, 1809-1819 (2015).
- Y.W.Yin, M. Raju, W.J.Hu, J.D. Burton, Y.M. Kim, A.Y.Borisevich, S.J.Pennycook, S.M.Yang, T.W.Noh, A.Gruverman, X.G.Li, Z.D.Zhang, E.Y.Tsymbal, and Q.Li, “Multiferroic Tunnel Junctions and Ferroelectric Control of Magnetic State at Interface," J. Appl. Phys. 117, 172601 (2015).
- T.Shimizu, T.Yokouchi, T.Oikawa, T.Shiraishi, T.Kiguchi, A.Akama, T.J.Konno, A.Gruverman, and H.Funakubo “Contribution of oxygen vacancies to the ferroelectric behavior of Hf0.5Zr0.5O2 thin films," Appl. Phys. Lett. 106, 112904 (2015).
- S.Zhao, A.Stamm, J.S.Lee, A.Gruverman, J.Y.Lim, and L.Gu “Elasticity of Differentiated and Undifferentiated Human Neuroblastoma Cells Characterized by Atomic Force Microscopy," J. Mech. in Medicine and Biology 15, 1550069 (2015).
2014
- H.Lu, A.Lipatov, S.Ryu, D.J.Kim, M.Y.Zhuravlev, C.B.Eom, E.Y.Tsymbal, A.Sinitskii, and A.Gruverman, “Ferroelectric Tunnel Junctions with Graphene Electrodes," Nat. Commun. 5, 5518 (2014). Published online Nov 24, 2014. DOI: 10.1038/ncomms6518.
- I.Lukyanchuk, P.Sharma, T.Nakajima, S.Okamura, J.F.Scott, and A.Gruverman, “High-Symmetry Polarization Domains in Low-Symmetry Ferroelectrics," Nano Lett. 14, 6931-6935 (2014). Published online Nov 24, 2014. DOI: 10.1021/nl503070f.
- L.You, P.Caesario, L.Fang, P.Ren, L.Wang, Y.Zhou, A.Gruverman, and J.Wang, “Effect of Lanthanum Doping on Tetragonal-like BiFeO3 with Mixed-phase Domain Structures," Phys. Rev. B 90, 134110 (2014).
- P.Sharma, A.Fursina, S.Poddar, S.Ducharme, and A.Gruverman, “Coplanar Switching of Polarization in Thin Films of Vinylidene Fluoride Oligomers," Appl. Phys. Lett. 105, 182903 (2014).
- D.J.Kim, T.R.Paudel, H.Lu, J.D.Burton, J.G.Connell, E.Y.Tsymbal, S.S.A.Seo, and A.Gruverman, "Room-Temperature Ferroelectricity in Hexagonal TbMnO3 thin films," Adv. Mat. 26, 7660-7665 (2014). DOI: 10.1002/adma.201403301.
- J.Chen, A.Gruverman, A.N.Morozovska, and N.Valanoor, ”Sub-Critical Field Domain Reversal in Epitaxial Ferroelectric Films," J. Appl. Phys. 116, 124109 (2014).
- J.R.Whyte, R.G.P. McQuaid, C.M. Ashcroft, J.F. Einsle, C. Canalias, A.Gruverman, J.M. Gregg, “Sequential Injection of Domain Walls into Ferroelectrics at Different Bias Voltages: Paving the Way for Domain Wall Memristors," J. Appl. Phys. 116, 066813 (2014).
- P.Sharma, S.Poddar, R.Korlacki, S.Ducharme, and A.Gruverman, “Investigation of Ferroelectric Domains in Thin Films of VDF Oligomers," Appl. Phys. Lett. 105, 022906 (2014).
- R.G.P.McQuaid, A.Gruverman, J.F.Scott, and J.M.Gregg, “Exploring Vertex Interactions in Ferroelectric Flux-Closure Domains," Nano Lett. 14, 4230-4237 (2014).
- A.V.Kolobov, D.J.Kim, A.Giussani, P.Fons, J.Tominaga, R.Calarco, and A.Gruverman, "Ferroelectric switching in epitaxial GeTe films," APL Mater. 2, 066101 (2014).
- J.Song, H.Lu, A.Gruverman, and S.Ducharme, “Polarization imaging in ferroelectric polymer thin film capacitors by pyroelectric scanning microscopy," Appl. Phys. Lett. 104, 192901 (2014).
- A.Rama, H.Lu, K.Bogle, R.Vasudevan, V.Thakare, A.Gruverman, S.Ogale, and V.Nagarajan, “Scaling behavior of resistive switching in epitaxial bismuth ferrite heterostructures," Adv. Funct. Mat. 24, 3962-3969 (2014). DOI: 10.1002/adfm.201400110.
- J.R.Whyte, R.G.P.McQuaid, P.Sharma, C.Canalias, J.F.Scott, A.Gruverman and J.M.Gregg, “Ferroelectric domain wall injection," Adv. Mat. 26, 293-298 (2014).
- F.Wong, G.Perez, M.Bonilla, J.A.Colon-Santana, X.Zhang, P.Sharma, A.Gruverman, P.A.Dowben and L.G.Rosa, “Changing Molecular Band Offsets in Polymer Blends of (P3HT/P(VDFTrFE)) Poly(3-hexylthiophene) and Poly(vinylidene fluoride with trifluoroethylene) due to Ferroelectric Poling," RSC Adv. 4, 3020-3027 (2014).
2013
- C.Christophis, E.A.Cavalcanti-Adam, M.Hanke, K.Kitamura, A.Gruverman, M.Grunze, P.A.Dowben, and A.Rosenhahn, “Adherent cells avoid polarization gradients on periodically poled LiTaO3 ferroelectrics," Biointerphases 8, 27 (2013).
- D.J.Kim, H.Lu, S.Ryu, S.Lee, C.W. Bark, C.B.Eom, and A.Gruverman, “Retention of Resistance States in Ferroelectric Tunnel Memristors," Appl. Phys. Lett. 103, 142908 (2013).
- E.Y.Tsymbal, and A.Gruverman, “Beyond the Barrier”, Nat. Mat. 12, 602-604 (2013). DOI:10.1038/nmat3669.
- Y.W.Yin, J.D.Burton, Y-M.Kim, A.Y.Borisevich, S.J.Pennycook, S.M.Yang, T.W.Noh, A.Gruverman, X.G.Li, E.Y.Tsymbal, and Qi Li, “Enhanced Tunnelling Electroresistance Effect due to a Ferroelectrically Induced Phase Transition at a Magnetic Complex Oxide Interface," Nat. Mat. 12, 397-402 (2013). [DOI: 10.1038/Nmat3564].
- Z.Xiao, Q.Dong, P.Sharma, Y.Yuan, B.Mao, W.Tian, A.Gruverman, and J.Huang, “Synthesis and Application of Ferroelectric P(VDF-TrFE) Nanoparticles in Organic Photovoltaic Devices for High Efficiency," Adv. Energy Mat. 3, 1581-1588 (2013). [DOI: 10.1002/aenm.201300396].
- J.Chen, H.Lu, H.-J.Liu, Y.-H.Chu, S.Dunn, K.Ostrikov, A.Gruverman, and V. Nagarajan, “Interface Control of Photochemical Reactivity in Ultrathin Epitaxial Ferroelectric Films," Appl. Phys. Lett. 102, 182904 (2013).
- S.Cao, P.Liu, J.Tang, H.Lu, C.W.Bark, S.Ryu, C.B.Eom, A.Gruverman, and P.A.Dowben, “Magnetoelectric coupling at the EuO/BaTiO3 interface," Appl. Phys. Lett. 102, 172402 (2013).
- P.Sharma, R.G.P.McQuaid, L.J.McGilly, J.M.Gregg, and A.Gruverman, "Nanoscale Dynamics of Superdomain Boundaries in Single-Crystal BaTiO3 Lamellae," Adv. Mat. 25, 1323-1330 (2013).
- P.Sharma, T.Nakajima, S.Okamura, and A.Gruverman, “Effect of disorder potential on domain switching behavior in polymer ferroelectric films," Nanotechn. 24, 015706 (2013).
- E.A.Paisley, H.S.Craft, M.D.Losego, H.Lu, A.Gruverman, R.Collazo, Z.Sitar, and J.-P.Maria, “Epitaxial PbxZr1−xTiO3 on GaN," J. Appl. Phys. 113, 074107 (2013).
- A.Stamm, D.J.Kim, H.Lu, C.W.Bark, C.B.Eom, and A.Gruverman, “Investigation of Polarization Relaxation Kinetics in Ultrathin Ferroelectric Capacitors," Appl. Phys. Lett. 102, 092901 (2013).
2012
- H.Lu, C.W.Bark, D. Esque de los Ojos, J.Alcala, C.B.Eom, G.Catalan, and A.Gruverman, “Mechanical Writing of Polarization," Science 336, 59-61 (2012) [DOI:10.1126/science.1218693].
- H.Lu, D.J.Kim, C.W. Bark, S.Ryu, C.B.Eom, E.Y.Tsymbal, and A.Gruverman, “Mechanically-Induced Tunneling Electroresistance Effect in Ultrathin Ferroelectrics," Nano Lett. 12, 6289-6292 (2012).
- D.J.Kim, H.Lu, S.Ryu, C.W.Bark, C.B.Eom, E.Y.Tsymbal, A.Gruverman, "Ferroelectric Tunnel Memristor," Nano Lett. 12, 5697-5702 (2012).
- E.Y.Tsymbal A.Gruverman, V.Garcia, M.Bibes and A.Barthélémy, “Ferroelectric and Multiferroic Tunnel Junctions," invited review in MRS Bulletin 37, No 2, 138-143 (2012).
- A.Gruverman, “Recent Advances in Functional Testing of Ferroelectric Nanostructures," Ferroelectrics 433, 88-106 (2012).
- S.Yasui, Y.Ehara, S.Utsugi, M.Nakajima, H.Funakubo, and A.Gruverman, “Complex Domain Structure in Relaxed PbTiO3 Thick Films Grown on (100)cSrRuO3//(100)SrTiO3 Substrates," J. Appl. Phys. 112, 052001 (2012).
- Y.Yuan, P.Sharma, Z.Xiao, S.Poddar, A.Gruverman, S.Ducharme, and J.Huang, “Understanding the effect of ferroelectric polarization on power conversion efficiency of organic photovoltaic devices," Energy and Environ. Sci. 5, 8558-8563 (2012).
- N.Barroca, P.M.Vilarinho, M.H.V.Fernandes, P.Sharma, and A.Gruverman, “Stability of electrically induced-polarization in PLLA for bone regeneration," Appl. Phys. Lett. 101, 023701 (2012).
- H.Lu, T.A.George, Y.Wang, I.Ketsman, J.D.Burton, C.W.Bark, S.Ryu, D.J.Kim, J.Wang, C.Binek, P.A.Dowben, A.Sokolov, C.B.Eom, E.Y.Tsymbal, and A.Gruverman, “Electric Modulation of Magnetization at Ferroelectric - Ferromagnetic Interfaces," Appl. Phys. Lett. 100, 232904 (2012).
- D.Pantel, H.Lu, S.Goetze, P.Werner, D.J.Kim, A.Gruverman, D.Hesse, and M.Alexe, “Tunnel electroresistance in junctions with ultrathin ferroelectric Pb(Zr0.2Ti0.8)O3 barriers”, Appl. Phys. Lett. 100, 232902 (2012).
- C.W.Bark, P.Sharma, S.H.Beak, S.Lee, S.Ryu, C.M.Folkman, A.Kumar, S.V.Kalinin, E.Y.Tsymbal, M.S.Rzchowski, A.Gruverman, and C.B.Eom, “Switchable induced polarization in LaAlO3/SrTiO3 heterostructures," Nano Lett. 12, 1765-1771 (2012).
- A.Kumar, S.G.Shivareddy, M.Correa, O.Resto, Y.Choi, M.Cole, R.S.Katiyar, J.F.Scott, G.A.J.Amaratunga, H.Lu, and A.Gruverman, “Ferroelectric-Carbon Nanotube Memory Devices," Nanotechnology 23, 165702 (6pp) (2012).
- B.Yang, Y.Yuan, P.Sharma, S.Poddar, R.Korlacki, S.Ducharme, A.Gruverman, R.Saraf, and J.Huang, “Tuning the Energy Level Offset between Donor and Acceptor with Ferroelectric Dipole Layers for Increased Efficiency in Bilayer Organic Photovoltaic Cells," Adv. Mat. 24, 1455-1460 (2012).
- H.Lu, X.Liu, J.D.Burton, Y.Wang, Y.Zhang, D.J.Kim, A.Stamm, P.Lukashev, C.W.Bark, D.A.Felker, C.M.Folkman, P.Gao, X.Q.Pan, M.S.Rzchowski, C.-B.Eom, E.Y.Tsymbal, and A.Gruverman, “Enhancement of Ferroelectric Polarization Stability by Interface Engineering," Adv. Mat. 24, 1209-1216 (2012).
- R.G.P.McQuaid, M.McMillen, L.-W.Chang, A.Gruverman and J.M.Gregg, “Domain Wall Propagation in Meso and Nanoscale Ferroelectrics," J. Phys. Cond. Matt. 24, 024204 (6pp) (2012).
2011
- X.Chen, S.Yang, J.-H.Kim, J.-S.Kim, G.Rojas, R.Skomski, P.A.Dowben, H.Lu, A.Bhattacharya, T.Santos, N.Guisinger, M.Bode, A.Gruverman, and A.Enders, “Ultrathin BaTiO3 templates for multiferroic nanostructures," New J. Phys. 13, 083037 (2011).
- P.Sharma, D.Wu, S.Poddar, T.J.Reece, S.Ducharme and A.Gruverman, "Orientational Imaging in Polar Polymers by Piezoresponse Force Microscopy," J. Appl. Phys. 110, 052010 (2011).
- S.Kim, Y.Bastani, H.Lu, W.P.King, S.Marder, K.H.Sandhage, A.Gruverman, E.Riedo, and N.Bassiri-Gharb, “Direct fabrication of arbitrary-shaped ferroelectric nanostructures on plastic, glass and silicon substrates," Adv. Mater. 23, 3786–3790 (2011).
- Z.Zhang, R.González, G.Díaz, L.G.Rosa, I.Ketsman, X.Zhang, P.Sharma, A.Gruverman, and P.A.Dowben, “Polarization mediated chemistry on ferroelectric polymer surfaces," J. Phys. Chem 115, 13041-13046 (2011).
- R.G.P.McQuaid, L.J.McGilly, P.Sharma, A.Gruverman, and J.M.Gregg, “Mesoscale flux-closure domain formation in single-crystal BaTiO3," Nature Communications 2, 404 (2011).
- P.Sharma, T.J.Reece, S.Ducharme and A. Gruverman, “High-Resolution Studies of Domain Switching Behavior in Nanostructured Ferroelectric Polymers," Nano Letters 11, 197-1975 (2011).
- N. Barroca, P. M. Vilarinho, A. L. Daniel-da-Silva, A. Wu, M. H. Fernandes, and A. Gruverman, “Protein Adsorption on Piezoelectric Poly (L-lactic) Acid Thin Films by Scanning Probe Microscopy," Appl. Phys. Lett. 98, 133705 (2011).
- Y.Yuan, T.J.Reece, P.Sharma, S.Poddar, S.Ducharme, A.Gruverman, Y.Yang and J.Huang, “Efficiency enhancement in organic solar cells with ferroelectric polymers," Nature Mater. 10, 296-302 (2011).
2010
- B.J.Rodriguez, L.M.Eng, and A.Gruverman, “Web-like domain structure formation in barium titanate single crystals," Appl. Phys. Lett. 97, 042902 (2010).
- C.Harnagea, M.Vallieres, C.P.Pfeffer, D.Wu, B.R.Olsen, A.Pignolet, F.Legare, and A.Gruverman, “Two-Dimensional Nanoscale Structural and Functional Imaging in Individual Collagen Type I Fibrils," Biophys. J. 98, 3070 (2010).
- A.Gruverman, “Dynamic Polarization Behavior in Thin Film Ferroelectric Capacitors at the Nanoscale," in Scanning Probe Microscopy of Functional Materials: Nanoscale Imaging and Spectroscopy, edited by S.V.Kalinin and A.Gruverman (Springer, 2010).
- D.Wu, I.Vrejoiu, M.Alexe, and A.Gruverman, “Anisotropy of domain growth in epitaxial ferroelectric capacitors," Appl. Phys. Lett. 96, 112903 (2010).
- J.Xiao, Z.Zhang, D.Wu, L.Routaboul, P.Braunstein, B.Doudin, Y.B.Losovyj, O.Kizilkay, L.G.Rosa, C.N.Borca, A.Gruverman, and P.A.Dowben, “The interface bonding and orientation of a quinonoid zwitterion," Phys.Chem. Chem. Phys. 12, 10329 (2010).
- Z.Zhang, P.Sharma, C.N.Borca, P.A.Dowben and A.Gruverman, “Polarization-specific adsorption of organic molecules on ferroelectric LiNbO3 surfaces," Appl. Phys. Lett. 97, 243702 (2010).
- K.Yazawa, S.Yasui, H.Morioka, T.Yamada, H.Uchida, A.Gruverman and H.Funakubo, “Composition dependence of crystal structure and electrical properties for epitaxial films of Bi(Zn1/2Ti1/2)O3–BiFeO3 solid solution system," J. Ceram. Soc. Jpn. 118, 659-663 (2010).