The Experts below are selected from a list of 32676 Experts worldwide ranked by ideXlab platform
Sakol Klongboonjit - One of the best experts on this subject based on the ideXlab platform.
-
Determination of effective university–industry joint research for Photovoltaic Technology transfer (UIJRPTT) in Thailand
Renewable Energy, 2011Co-Authors: Pornpimol Sugandhavanija, Sukruedee Sukchai, Nipon Ketjoy, Sakol KlongboonjitAbstract:Most of the literatures related to university–industry (U–I) and Technology transfer assume that the collaboration particularly the U–I joint research is beneficial to both university and industry which as a result underpins the sustainable development of economics and living standards of developed and developing countries. The U–I joint research for Photovoltaic Technology transfer in a developing country like Thailand should have been increased considering the fact that (i) the government implemented various strategies to support the renewable energy research and market development, (ii) the university aimed to be “research-based university and (iii) the Thai Photovoltaic industry struggle for competitiveness and survival in the global market. However, evidence revealed that the university and industry conducted little number of U–I joint projects. In this paper, we investigate the factors influencing the effective U–I joint research for Photovoltaic Technology transfer (UIJRPTT). In an attempt to better understand the influence of the factors, the path model with factors related to characteristics and perspectives of the university and the industry as well as joint research mechanism and their linkages to higher growth and improved economic and quality performance of the U–I joint research is developed and validated. The developed model empirically explains interaction between the factors and the outcome factors and can assist the government, the university and the industry to devise target strategies to improve the growth and performance of UIJRPTT.
-
Deficiencies of University-Industry Joint Research for Photovoltaic Technology Transfer in Thailand
International Journal of Renewable Energy, 2010Co-Authors: Pornpimol Sugandhavanija, Sukruedee Sukchai, Nipon Ketjoy, Sakol KlongboonjitAbstract:University-industry joint research is a major source of Technology transfer that could increase the knowledge and capabilities of both parties. However, experience has shown that during the past five years, there has been very little number of U-I joint researches for Photovoltaic Technology transfer (UIJRPTT) in Thailand. This paper aims to answer the question of why there is limited number of the UIJRPTT in Thailand. The factors driving and barriers impeding the UIJRPTT were investigated to answer the question. The understanding of the factors will be a valuable contribution for the policy makers from the university, the industry as well as the government agencies concerned in supporting and solving the problems related to the UIJRPTT.
Pornpimol Sugandhavanija - One of the best experts on this subject based on the ideXlab platform.
-
Determination of effective university–industry joint research for Photovoltaic Technology transfer (UIJRPTT) in Thailand
Renewable Energy, 2011Co-Authors: Pornpimol Sugandhavanija, Sukruedee Sukchai, Nipon Ketjoy, Sakol KlongboonjitAbstract:Most of the literatures related to university–industry (U–I) and Technology transfer assume that the collaboration particularly the U–I joint research is beneficial to both university and industry which as a result underpins the sustainable development of economics and living standards of developed and developing countries. The U–I joint research for Photovoltaic Technology transfer in a developing country like Thailand should have been increased considering the fact that (i) the government implemented various strategies to support the renewable energy research and market development, (ii) the university aimed to be “research-based university and (iii) the Thai Photovoltaic industry struggle for competitiveness and survival in the global market. However, evidence revealed that the university and industry conducted little number of U–I joint projects. In this paper, we investigate the factors influencing the effective U–I joint research for Photovoltaic Technology transfer (UIJRPTT). In an attempt to better understand the influence of the factors, the path model with factors related to characteristics and perspectives of the university and the industry as well as joint research mechanism and their linkages to higher growth and improved economic and quality performance of the U–I joint research is developed and validated. The developed model empirically explains interaction between the factors and the outcome factors and can assist the government, the university and the industry to devise target strategies to improve the growth and performance of UIJRPTT.
-
Deficiencies of University-Industry Joint Research for Photovoltaic Technology Transfer in Thailand
International Journal of Renewable Energy, 2010Co-Authors: Pornpimol Sugandhavanija, Sukruedee Sukchai, Nipon Ketjoy, Sakol KlongboonjitAbstract:University-industry joint research is a major source of Technology transfer that could increase the knowledge and capabilities of both parties. However, experience has shown that during the past five years, there has been very little number of U-I joint researches for Photovoltaic Technology transfer (UIJRPTT) in Thailand. This paper aims to answer the question of why there is limited number of the UIJRPTT in Thailand. The factors driving and barriers impeding the UIJRPTT were investigated to answer the question. The understanding of the factors will be a valuable contribution for the policy makers from the university, the industry as well as the government agencies concerned in supporting and solving the problems related to the UIJRPTT.
L. Yang - One of the best experts on this subject based on the ideXlab platform.
-
Advances in amorphous silicon Photovoltaic Technology
Journal of Materials Research, 1998Co-Authors: D. E. Carlson, K. Rajan, R. R. Arya, F. Willing, L. YangAbstract:With the advent of new multijunction thin film solar cells, amorphous silicon Photovoltaic Technology is undergoing a commercial revival with about 30 megawatts of annual capacity coming on-line in the next year. These new a−Si multijunction modules should exhibit stabilized conversion efficiencies on the order of 8%, and efficiencies over 10% may be obtained in the next several years. The improved performance results from the development of amorphous and microcrystalline silicon alloy films with improved optoelectronic properties and from the development of more efficient device structures. Moreover, the manufacturing costs for these multijunction modules using the new large-scale plants should be on the order of $1 per peak watt. These modules may find widespread use in solar farms, Photovoltaic roofing, as well as in traditional remote applications.
-
Advances in amorphous silicon Photovoltaic Technology
Journal of Materials Research, 1998Co-Authors: D. E. Carlson, K. Rajan, R. R. Arya, F. Willing, L. YangAbstract:With the advent of new multijunction thin film solar cells, amorphous silicon Photovoltaic Technology is undergoing a commercial revival with about 30 megawatts of annual capacity coming on-line in the next year. These new {ital a}{endash}Si multijunction modules should exhibit stabilized conversion efficiencies on the order of 8{percent}, and efficiencies over 10{percent} may be obtained in the next several years. The improved performance results from the development of amorphous and microcrystalline silicon alloy films with improved optoelectronic properties and from the development of more efficient device structures. Moreover, the manufacturing costs for these multijunction modules using the new large-scale plants should be on the order of {dollar_sign}1 per peak watt. These new modules may find widespread use in solar farms, Photovoltaic roofing, as well as in traditional remote applications. {copyright} {ital 1998 Materials Research Society.}
Nipon Ketjoy - One of the best experts on this subject based on the ideXlab platform.
-
Determination of effective university–industry joint research for Photovoltaic Technology transfer (UIJRPTT) in Thailand
Renewable Energy, 2011Co-Authors: Pornpimol Sugandhavanija, Sukruedee Sukchai, Nipon Ketjoy, Sakol KlongboonjitAbstract:Most of the literatures related to university–industry (U–I) and Technology transfer assume that the collaboration particularly the U–I joint research is beneficial to both university and industry which as a result underpins the sustainable development of economics and living standards of developed and developing countries. The U–I joint research for Photovoltaic Technology transfer in a developing country like Thailand should have been increased considering the fact that (i) the government implemented various strategies to support the renewable energy research and market development, (ii) the university aimed to be “research-based university and (iii) the Thai Photovoltaic industry struggle for competitiveness and survival in the global market. However, evidence revealed that the university and industry conducted little number of U–I joint projects. In this paper, we investigate the factors influencing the effective U–I joint research for Photovoltaic Technology transfer (UIJRPTT). In an attempt to better understand the influence of the factors, the path model with factors related to characteristics and perspectives of the university and the industry as well as joint research mechanism and their linkages to higher growth and improved economic and quality performance of the U–I joint research is developed and validated. The developed model empirically explains interaction between the factors and the outcome factors and can assist the government, the university and the industry to devise target strategies to improve the growth and performance of UIJRPTT.
-
Deficiencies of University-Industry Joint Research for Photovoltaic Technology Transfer in Thailand
International Journal of Renewable Energy, 2010Co-Authors: Pornpimol Sugandhavanija, Sukruedee Sukchai, Nipon Ketjoy, Sakol KlongboonjitAbstract:University-industry joint research is a major source of Technology transfer that could increase the knowledge and capabilities of both parties. However, experience has shown that during the past five years, there has been very little number of U-I joint researches for Photovoltaic Technology transfer (UIJRPTT) in Thailand. This paper aims to answer the question of why there is limited number of the UIJRPTT in Thailand. The factors driving and barriers impeding the UIJRPTT were investigated to answer the question. The understanding of the factors will be a valuable contribution for the policy makers from the university, the industry as well as the government agencies concerned in supporting and solving the problems related to the UIJRPTT.
Sukruedee Sukchai - One of the best experts on this subject based on the ideXlab platform.
-
Determination of effective university–industry joint research for Photovoltaic Technology transfer (UIJRPTT) in Thailand
Renewable Energy, 2011Co-Authors: Pornpimol Sugandhavanija, Sukruedee Sukchai, Nipon Ketjoy, Sakol KlongboonjitAbstract:Most of the literatures related to university–industry (U–I) and Technology transfer assume that the collaboration particularly the U–I joint research is beneficial to both university and industry which as a result underpins the sustainable development of economics and living standards of developed and developing countries. The U–I joint research for Photovoltaic Technology transfer in a developing country like Thailand should have been increased considering the fact that (i) the government implemented various strategies to support the renewable energy research and market development, (ii) the university aimed to be “research-based university and (iii) the Thai Photovoltaic industry struggle for competitiveness and survival in the global market. However, evidence revealed that the university and industry conducted little number of U–I joint projects. In this paper, we investigate the factors influencing the effective U–I joint research for Photovoltaic Technology transfer (UIJRPTT). In an attempt to better understand the influence of the factors, the path model with factors related to characteristics and perspectives of the university and the industry as well as joint research mechanism and their linkages to higher growth and improved economic and quality performance of the U–I joint research is developed and validated. The developed model empirically explains interaction between the factors and the outcome factors and can assist the government, the university and the industry to devise target strategies to improve the growth and performance of UIJRPTT.
-
Deficiencies of University-Industry Joint Research for Photovoltaic Technology Transfer in Thailand
International Journal of Renewable Energy, 2010Co-Authors: Pornpimol Sugandhavanija, Sukruedee Sukchai, Nipon Ketjoy, Sakol KlongboonjitAbstract:University-industry joint research is a major source of Technology transfer that could increase the knowledge and capabilities of both parties. However, experience has shown that during the past five years, there has been very little number of U-I joint researches for Photovoltaic Technology transfer (UIJRPTT) in Thailand. This paper aims to answer the question of why there is limited number of the UIJRPTT in Thailand. The factors driving and barriers impeding the UIJRPTT were investigated to answer the question. The understanding of the factors will be a valuable contribution for the policy makers from the university, the industry as well as the government agencies concerned in supporting and solving the problems related to the UIJRPTT.