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Dive into the research topics where Milind Gadre is active.

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Featured researches published by Milind Gadre.


Nature Materials | 2014

Dynamic layer rearrangement during growth of layered oxide films by molecular beam epitaxy

J. H. Lee; Guangfu Luo; I-Cheng Tung; Siliang Chang; Z. Luo; M. Malshe; Milind Gadre; Anand Bhattacharya; Serge M. Nakhmanson; J. A. Eastman; H. Hong; J. Jellinek; Dane Morgan; Dillon D. Fong; J. W. Freeland

The A(n+1)B(n)O(3n+1) Ruddlesden-Popper homologous series offers a wide variety of functionalities including dielectric, ferroelectric, magnetic and catalytic properties. Unfortunately, the synthesis of such layered oxides has been a major challenge owing to the occurrence of growth defects that result in poor materials behaviour in the higher-order members. To understand the fundamental physics of layered oxide growth, we have developed an oxide molecular beam epitaxy system with in situ synchrotron X-ray scattering capability. We present results demonstrating that layered oxide films can dynamically rearrange during growth, leading to structures that are highly unexpected on the basis of the intended layer sequencing. Theoretical calculations indicate that rearrangement can occur in many layered oxide systems and suggest a general approach that may be essential for the construction of metastable Ruddlesden-Popper phases. We demonstrate the utility of the new-found growth strategy by performing the first atomically controlled synthesis of single-crystalline La3Ni2O7.


Journal of Physical Chemistry Letters | 2014

Anomalous Interface and Surface Strontium Segregation in (La1–ySry)2CoO4±δ/La1–xSrxCoO3−δ Heterostructured Thin Films

Zhenxing Feng; Yizhak Yacoby; Milind Gadre; Yueh-Lin Lee; Wesley T. Hong; Hua Zhou; Michael D. Biegalski; Hans M. Christen; Stuart B. Adler; Dane Morgan; Yang Shao-Horn

Heterostructured oxides have shown unusual electrochemical properties including enhanced catalytic activity, ion transport, and stability. In particular, it has been shown recently that the activity of oxygen electrocatalysis on the Ruddlesden-Popper/perovskite (La1-ySry)2CoO4±δ/La1-xSrxCoO3-δ heterostructure is remarkably enhanced relative to the Ruddlesden-Popper and perovskite constituents. Here we report the first atomic-scale structure and composition of (La1-ySry)2CoO4±δ/La1-xSrxCoO3-δ grown on SrTiO3. We observe anomalous strontium segregation from the perovskite to the interface and the Ruddlesden-Popper phase using direct X-ray methods as well as with ab initio calculations. Such Sr segregation occurred during the film growth, and no significant changes were found upon subsequent annealing in O2. Our findings provide insights into the design of highly active catalysts for oxygen electrocatalysis.


Journal of Physical Chemistry Letters | 2013

Tuning the Spin State in LaCoO3 Thin Films for Enhanced High-Temperature Oxygen Electrocatalysis

Wesley T. Hong; Milind Gadre; Yueh-Lin Lee; Michael D. Biegalski; Hans M. Christen; Dane Morgan; Yang Shao-Horn

The slow kinetics of oxygen surface exchange hinders the efficiency of high-temperature oxygen electrocatalytic devices such as solid oxide fuel cells and oxygen separation membranes. Systematic investigations of material properties that link to catalytic activity can aid in the rational design of highly active cathode materials. Here, we explore LaCoO3 thin films as a model system for tuning catalytic activity through strain-induced changes in the Co spin state. We demonstrate that Raman spectroscopy can be used to probe the Co-O bond strength at different temperatures to determine the relative spin occupancies of LaCoO3. We find that strain can be used to reduce the spin transition temperature and promote the occupation of higher spin states that weaken the Co-O bond. The decrease in Co-O bond strength and increased spin moment of the thin films result in significant enhancements of the oxygen surface exchange kinetics by up to 2 orders of magnitude.


Physical Chemistry Chemical Physics | 2012

Cation interdiffusion model for enhanced oxygen kinetics at oxide heterostructure interfaces

Milind Gadre; Yueh-Lin Lee; Dane Morgan


Physical Chemistry Chemical Physics | 2015

Ab initio GGA+U study of oxygen evolution and oxygen reduction electrocatalysis on the (001) surfaces of lanthanum transition metal perovskites LaBO3 (B = Cr, Mn, Fe, Co and Ni)

Yueh-Lin Lee; Milind Gadre; Yang Shao-Horn; Dane Morgan


224th ECS Meeting (October 27 – November 1, 2013) | 2013

Towards Accurate Ab-Initio Prediction of ORR/ Oer Activity of LaBO3 (B=Cr,Mn) Perovskites – Role of Hubbard U and Stable Surface Coverage

Milind Gadre; Yueh-Lin Lee; Yang Shao-Horn; Dane Morgan


Prof. Shao-Horn via Angie Locknar | 2015

Ab initio GGA+U study of oxygen evolution and oxygen reduction electrocatalysis on the (001) surfaces of lanthanum transition metal perovskites LaBO

Yueh Lin Lee; Milind Gadre; Yang Shao-Horn; Dane Morgan


227th ECS Meeting (May 24-28, 2015) | 2015

Invited) Molecular Understanding of Oxygen Exchange in Solid Oxide Fuel Cell Cathodes

Dane Morgan; Milind Gadre; Anh Ngo; Yueh-Lin Lee; Yang Shao-Horn; Stuart B. Adler


Other univ. web domain | 2014

Anomalous Interface and Surface Strontium Segregation in (La[subscript 1-y]Sr[subscript y])[subscript 2]CoO[subscript 4±δ]/La[subscript 1-x]Sr[subscript x]CoO[subscript 3-δ] Heterostructured Thin Films

Zhenxing Feng; Yizhak Yacoby; Milind Gadre; Yueh-Lin Lee; Hua Zhou; Michael D. Biegalski; Hans M. Christen; Stuart B. Adler; Dane Morgan; Yang Shao-Horn; Wesley T. Hong


ECS Transactions | 2014

Catalytic Activity of (001)-AO and BO2 Surfaces of Transition Metal Perovskites: Case of LaCrO3

Milind Gadre; Yueh-Lin Lee; Yang Shao-Horn; Dane Morgan

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Dane Morgan

University of Wisconsin-Madison

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Yueh-Lin Lee

Massachusetts Institute of Technology

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Yang Shao-Horn

Massachusetts Institute of Technology

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Hans M. Christen

Oak Ridge National Laboratory

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Michael D. Biegalski

Oak Ridge National Laboratory

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Wesley T. Hong

Massachusetts Institute of Technology

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Hua Zhou

Argonne National Laboratory

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Zhenxing Feng

Massachusetts Institute of Technology

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Yizhak Yacoby

Hebrew University of Jerusalem

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