Microstructural aspects of inclined substrate deposition templates for coated conductors. Miller, J, D., Trasobares, S., Koritala, R., Ma, B., Uprety, K., & Balachandran, U. 2005.
Paper abstract bibtex Inclined substrate deposition (ISD) has been developed as an efficient and economical method to produce biaxially textured templates useful in the fabrication of YBa 2Cu 3O x (YBCO) coated conductors. In this work we have focused on an architecture that consists of an ISD MgO layer capped with a thin homoeptiaxial layer of MgO and a single perovskite (SrRuO 3) buffer layer. The single perovskite buffer layer promotes improved texture and eliminates the necessity for deposition of additional layers that reduce the overall efficiency of the ISD approach. With a terminal surface consisting of a perovskite, epitaxial growth of YBCO leads to an inclined orientation. Compared to ISD-based conductors prepared using a CeO 2 buffer, this architecture typically exhibits better transport critical current densities that can be correlated with an improvement in texture attributed to the perovskite buffer.
@misc{ Miller2005,
abstract = {Inclined substrate deposition (ISD) has been developed as an efficient and economical method to produce biaxially textured templates useful in the fabrication of YBa 2Cu 3O x (YBCO) coated conductors. In this work we have focused on an architecture that consists of an ISD MgO layer capped with a thin homoeptiaxial layer of MgO and a single perovskite (SrRuO 3) buffer layer. The single perovskite buffer layer promotes improved texture and eliminates the necessity for deposition of additional layers that reduce the overall efficiency of the ISD approach. With a terminal surface consisting of a perovskite, epitaxial growth of YBCO leads to an inclined orientation. Compared to ISD-based conductors prepared using a CeO 2 buffer, this architecture typically exhibits better transport critical current densities that can be correlated with an improvement in texture attributed to the perovskite buffer.},
address = {Materials Science Division, Argonne National Laboratory, Argonne, IL 60439, United States},
annote = {Conference code: 65404
Export Date: 15 January 2013
Source: Scopus
CODEN: CETRE
Language of Original Document: English
Correspondence Address: Miller, D.J.; Materials Science Division, Argonne National Laboratory, Argonne, IL 60439, United States
References: Finnemore, D.K., (1999) Physica C, 320, pp. 1-8;
Iijima, Y., Matsumoto, K., (2000) Supercond. Sci. \& Technol., 13, pp. 68-81;
Willis, J.O., (2000) Physica C, 335, p. 73;
Dimos, D., Chaudari, P., Mannhart, J., (1990) Phys. Rev. B, 41, pp. 4038-4049;
Iijima, Y., Kimura, M., Saitoh, T., Takeda, K., (2000) Physica C, 355, p. 15;
Goyal, A., (1996) Appl. Phys. Lett., 69, pp. 1975-1977;
Ma, B., (2002) Physica C, 366, pp. 270-276;
Ma, B., (2003) Supercond. Sci. \& Technol., 16, pp. 464-472;
Srolovitz, P.D.J., (2002) J. Appl. Phys., 91 (4);
Miller, D.J., (2003) Proc. Electrochemical Soc. Symp., L1. , Qrlando, FL, Oct. 12-17;
Jia, Q.X., (2002) Appl. Phys. Lett., 81 (24), p. 4571},
author = {Miller, D J and Trasobares, S and Koritala, R and Ma, B and Uprety, K and Balachandran, U},
booktitle = {Ceramic Transactions},
editor = {W., Wong-Ng and A., Goyal and R., Guo and A.S., Bhalla},
isbn = {10421122 (ISSN) },
keywords = {Coated conductors,Coating techniques,Current density,Deposition,Electric conductors,Inclined substrate deposition (ISD),Microstructural aspects,Microstructure,Reduction,Scanning electron microscopy,Substrate deposition,Substrates,Transmission electron microscopy},
pages = {79--85},
series = {106th Annual Meeting of the American Ceramic Society},
title = {{Microstructural aspects of inclined substrate deposition templates for coated conductors}},
url = {https://www.scopus.com/inward/record.url?eid=2-s2.0-23744509314\&partnerID=40\&md5=4c108f4bc02ba140ad2fdecdb1bb6b13},
volume = {169},
year = {2005}
}
Downloads: 0
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In this work we have focused on an architecture that consists of an ISD MgO layer capped with a thin homoeptiaxial layer of MgO and a single perovskite (SrRuO 3) buffer layer. The single perovskite buffer layer promotes improved texture and eliminates the necessity for deposition of additional layers that reduce the overall efficiency of the ISD approach. With a terminal surface consisting of a perovskite, epitaxial growth of YBCO leads to an inclined orientation. Compared to ISD-based conductors prepared using a CeO 2 buffer, this architecture typically exhibits better transport critical current densities that can be correlated with an improvement in texture attributed to the perovskite buffer.},\n address = {Materials Science Division, Argonne National Laboratory, Argonne, IL 60439, United States},\n annote = {Conference code: 65404\n\nExport Date: 15 January 2013\n\nSource: Scopus\n\nCODEN: CETRE\n\nLanguage of Original Document: English\n\nCorrespondence Address: Miller, D.J.; Materials Science Division, Argonne National Laboratory, Argonne, IL 60439, United States\n\nReferences: Finnemore, D.K., (1999) Physica C, 320, pp. 1-8; \nIijima, Y., Matsumoto, K., (2000) Supercond. Sci. \\& Technol., 13, pp. 68-81; \nWillis, J.O., (2000) Physica C, 335, p. 73; \nDimos, D., Chaudari, P., Mannhart, J., (1990) Phys. Rev. B, 41, pp. 4038-4049; \nIijima, Y., Kimura, M., Saitoh, T., Takeda, K., (2000) Physica C, 355, p. 15; \nGoyal, A., (1996) Appl. Phys. Lett., 69, pp. 1975-1977; \nMa, B., (2002) Physica C, 366, pp. 270-276; \nMa, B., (2003) Supercond. Sci. \\& Technol., 16, pp. 464-472; \nSrolovitz, P.D.J., (2002) J. Appl. Phys., 91 (4); \nMiller, D.J., (2003) Proc. Electrochemical Soc. Symp., L1. , Qrlando, FL, Oct. 12-17; \nJia, Q.X., (2002) Appl. Phys. Lett., 81 (24), p. 4571},\n author = {Miller, D J and Trasobares, S and Koritala, R and Ma, B and Uprety, K and Balachandran, U},\n booktitle = {Ceramic Transactions},\n editor = {W., Wong-Ng and A., Goyal and R., Guo and A.S., Bhalla},\n isbn = {10421122 (ISSN) },\n keywords = {Coated conductors,Coating techniques,Current density,Deposition,Electric conductors,Inclined substrate deposition (ISD),Microstructural aspects,Microstructure,Reduction,Scanning electron microscopy,Substrate deposition,Substrates,Transmission electron microscopy},\n pages = {79--85},\n series = {106th Annual Meeting of the American Ceramic Society},\n title = {{Microstructural aspects of inclined substrate deposition templates for coated conductors}},\n url = {https://www.scopus.com/inward/record.url?eid=2-s2.0-23744509314\\&partnerID=40\\&md5=4c108f4bc02ba140ad2fdecdb1bb6b13},\n volume = {169},\n year = {2005}\n}</pre>\n</div>\n\n\n<div class=\"well well-small bibbase\" id=\"abstract_Miller2005\"\n style=\"display:none\">\n Inclined substrate deposition (ISD) has been developed as an efficient and economical method to produce biaxially textured templates useful in the fabrication of YBa 2Cu 3O x (YBCO) coated conductors. In this work we have focused on an architecture that consists of an ISD MgO layer capped with a thin homoeptiaxial layer of MgO and a single perovskite (SrRuO 3) buffer layer. The single perovskite buffer layer promotes improved texture and eliminates the necessity for deposition of additional layers that reduce the overall efficiency of the ISD approach. With a terminal surface consisting of a perovskite, epitaxial growth of YBCO leads to an inclined orientation. Compared to ISD-based conductors prepared using a CeO 2 buffer, this architecture typically exhibits better transport critical current densities that can be correlated with an improvement in texture attributed to the perovskite buffer.\n</div>\n\n\n</div>\n","downloads":0,"keyword":["Coated conductors","Coating techniques","Current density","Deposition","Electric conductors","Inclined substrate deposition (ISD)","Microstructural aspects","Microstructure","Reduction","Scanning electron microscopy","Substrate deposition","Substrates","Transmission electron microscopy"],"abstract":"Inclined substrate deposition (ISD) has been developed as an efficient and economical method to produce biaxially textured templates useful in the fabrication of YBa 2Cu 3O x (YBCO) coated conductors. In this work we have focused on an architecture that consists of an ISD MgO layer capped with a thin homoeptiaxial layer of MgO and a single perovskite (SrRuO 3) buffer layer. The single perovskite buffer layer promotes improved texture and eliminates the necessity for deposition of additional layers that reduce the overall efficiency of the ISD approach. With a terminal surface consisting of a perovskite, epitaxial growth of YBCO leads to an inclined orientation. Compared to ISD-based conductors prepared using a CeO 2 buffer, this architecture typically exhibits better transport critical current densities that can be correlated with an improvement in texture attributed to the perovskite buffer.","address":"Materials Science Division, Argonne National Laboratory, Argonne, IL 60439, United States","annote":"Conference code: 65404 Export Date: 15 January 2013 Source: Scopus CODEN: CETRE Language of Original Document: English Correspondence Address: Miller, D.J.; Materials Science Division, Argonne National Laboratory, Argonne, IL 60439, United States References: Finnemore, D.K., (1999) Physica C, 320, pp. 1-8; Iijima, Y., Matsumoto, K., (2000) Supercond. Sci. \\& Technol., 13, pp. 68-81; Willis, J.O., (2000) Physica C, 335, p. 73; Dimos, D., Chaudari, P., Mannhart, J., (1990) Phys. Rev. B, 41, pp. 4038-4049; Iijima, Y., Kimura, M., Saitoh, T., Takeda, K., (2000) Physica C, 355, p. 15; Goyal, A., (1996) Appl. Phys. Lett., 69, pp. 1975-1977; Ma, B., (2002) Physica C, 366, pp. 270-276; Ma, B., (2003) Supercond. Sci. \\& Technol., 16, pp. 464-472; Srolovitz, P.D.J., (2002) J. Appl. Phys., 91 (4); Miller, D.J., (2003) Proc. Electrochemical Soc. Symp., L1. , Qrlando, FL, Oct. 12-17; Jia, Q.X., (2002) Appl. Phys. Lett., 81 (24), p. 4571","author":["Miller","J, D","Trasobares, S","Koritala, R","Ma, B","Uprety, K","Balachandran, U"],"author_short":["Miller","J, D.","Trasobares, S.","Koritala, R.","Ma, B.","Uprety, K.","Balachandran, U."],"bibtex":"@misc{ Miller2005,\n abstract = {Inclined substrate deposition (ISD) has been developed as an efficient and economical method to produce biaxially textured templates useful in the fabrication of YBa 2Cu 3O x (YBCO) coated conductors. In this work we have focused on an architecture that consists of an ISD MgO layer capped with a thin homoeptiaxial layer of MgO and a single perovskite (SrRuO 3) buffer layer. The single perovskite buffer layer promotes improved texture and eliminates the necessity for deposition of additional layers that reduce the overall efficiency of the ISD approach. With a terminal surface consisting of a perovskite, epitaxial growth of YBCO leads to an inclined orientation. Compared to ISD-based conductors prepared using a CeO 2 buffer, this architecture typically exhibits better transport critical current densities that can be correlated with an improvement in texture attributed to the perovskite buffer.},\n address = {Materials Science Division, Argonne National Laboratory, Argonne, IL 60439, United States},\n annote = {Conference code: 65404\n\nExport Date: 15 January 2013\n\nSource: Scopus\n\nCODEN: CETRE\n\nLanguage of Original Document: English\n\nCorrespondence Address: Miller, D.J.; Materials Science Division, Argonne National Laboratory, Argonne, IL 60439, United States\n\nReferences: Finnemore, D.K., (1999) Physica C, 320, pp. 1-8; \nIijima, Y., Matsumoto, K., (2000) Supercond. Sci. \\& Technol., 13, pp. 68-81; \nWillis, J.O., (2000) Physica C, 335, p. 73; \nDimos, D., Chaudari, P., Mannhart, J., (1990) Phys. Rev. B, 41, pp. 4038-4049; \nIijima, Y., Kimura, M., Saitoh, T., Takeda, K., (2000) Physica C, 355, p. 15; \nGoyal, A., (1996) Appl. Phys. Lett., 69, pp. 1975-1977; \nMa, B., (2002) Physica C, 366, pp. 270-276; \nMa, B., (2003) Supercond. Sci. \\& Technol., 16, pp. 464-472; \nSrolovitz, P.D.J., (2002) J. Appl. Phys., 91 (4); \nMiller, D.J., (2003) Proc. Electrochemical Soc. Symp., L1. , Qrlando, FL, Oct. 12-17; \nJia, Q.X., (2002) Appl. Phys. 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