Examining the dynamics of an emerging research network using the case of triboelectric nanogenerators
Tài liệu tham khảo
Alluri, 2015, Flexible, hybrid piezoelectric film (BaTi (1-x) Zr x O3)/PVDF nanogenerator as a self-powered fluid velocity sensor, ACS Appl. Mater. Interfaces, 7, 9831, 10.1021/acsami.5b01760
Ayres, 1969
Blondel, 2008, Fast unfolding of communities in large networks, J. Stat. Mech: Theory Exp., 2008, P10008, 10.1088/1742-5468/2008/10/P10008
Blondel, 2008, Fast unfolding of communities in large networks, J. Stat. Mech. Theory Exp., 2008, P10008, 10.1088/1742-5468/2008/10/P10008
Boyack, 2010, Co-citation analysis, bibliographic coupling, and direct citation: which citation approach represents the research front most accurately?, J. Am. Soc. Inf. Sci. Technol., 61, 2389, 10.1002/asi.21419
Braun, 2012, Why do scientists migrate? A diffusion model, Minerva, 50, 471, 10.1007/s11024-012-9214-6
Corning, 2002, The re-emergence of “emergence”: a venerable concept in search of a theory, Complexity, 7, 18, 10.1002/cplx.10043
Dosi, 1982, Technological paradigms and technological trajectories: a suggested interpretation of the determinants and directions of technical change, Res. Policy, 11, 147, 10.1016/0048-7333(82)90016-6
Fan, 2012, Flexible triboelectric generator, Nano Energy, 1, 328, 10.1016/j.nanoen.2012.01.004
Georghiou, 1998, Global cooperation in research, Res. Policy, 27, 611, 10.1016/S0048-7333(98)00054-7
Glänzel, 2004, Analysing scientific networks through co-authorship, 257
Glänzel, 2005, 257
Guo, 2011, Mixed-indicators model for identifying emerging research areas, Scientometrics, 89, 421, 10.1007/s11192-011-0433-7
Holton, 1962, Scientific research and scholarship notes toward the design of proper scales, Daedalus, 91, 362
Jarneving, 2007, Bibliographic coupling and its application to research-front and other core documents, J. Inf., 1, 287
Katz, 1994, Systems competition and network effects, J. Econ. Perspect., 8, 93, 10.1257/jep.8.2.93
Kuhn, 1970
Kuusi, 2007, Anticipating technological breakthroughs: using bibliographic coupling to explore the nanotubes paradigm, Scientometrics, 70, 759, 10.1007/s11192-007-0311-5
Lam, 2013
Larsen, 2010, The rate of growth in scientific publication and the decline in coverage provided by Science Citation Index, Scientometrics, 84, 575, 10.1007/s11192-010-0202-z
Laudel, 2014, Beyond breakthrough research: epistemic properties of research and their consequences for research funding, Res. Policy, 43, 1204, 10.1016/j.respol.2014.02.006
Li, 2009, Global stem cell research trend: bibliometric analysis as a tool for mapping of trends from 1991 to 2006, Scientometrics, 80, 39, 10.1007/s11192-008-1939-5
Lv, 2011, Bibliometric trend analysis on global graphene research, Scientometrics, 88, 399, 10.1007/s11192-011-0386-x
Martin, 1995, Foresight in science and technology, Tech. Anal. Strat. Manag., 7, 139, 10.1080/09537329508524202
Oh, 2016, Innovation ecosystems: a critical examination, Technovation, 54, 1, 10.1016/j.technovation.2016.02.004
Perianes-Rodríguez, 2010, Detecting, identifying and visualizing research groups in co-authorship networks, Scientometrics, 82, 307, 10.1007/s11192-009-0040-z
Porter, 1998, Clusters and the new economics of competition, Harv. Bus. Rev., 76, 77
Qiu, 2015, A cubic triboelectric generator as a self-powered orientation sensor, Sci. China Technol. Sci., 58, 842, 10.1007/s11431-015-5790-7
Rotolo, 2015, What is an emerging technology?, Res. Policy, 44, 1827, 10.1016/j.respol.2015.06.006
Schumpeter, 1961
Small, 2014, Identifying emerging topics in science and technology, Res. Policy, 43, 1450, 10.1016/j.respol.2014.02.005
Suominen, 2013, Analysis of technological progression by quantitative measures: a comparison of two technologies, Tech. Anal. Strat. Manag., 25, 687, 10.1080/09537325.2013.802930
Suominen, 2014, Phases of growth in a green tech research network: a bibliometric evaluation of fuel cell technology from 1991 to 2010, Scientometrics, 100, 51, 10.1007/s11192-014-1285-8
Suominen, 2017, A critical evaluation of the technological emergence concept
Suominen, 2015, Map of science with topic modeling: comparison of unsupervised learning and human-assigned subject classification, J. Assoc. Inf. Sci. Technol., 67, 2464, 10.1002/asi.23596
Templeton, 2013, Research specialties as emergent phenomena: connecting emergence theory and scientometrics
van Eck, 2010, Automatic term identification for bibliometric mapping, Scientometrics, 82, 581, 10.1007/s11192-010-0173-0
Veugelers, 2010, Towards a multipolar science world: trends and impact, Scientometrics, 82, 439, 10.1007/s11192-009-0045-7
Wang, 2013, A historical review and bibliometric analysis of GPS research from 1991–2010, Scientometrics, 95, 35, 10.1007/s11192-012-0853-z
Wang, 2017, On Maxwell's displacement current for energy and sensors: the origin of nanogenerators, Mater. Today, 20, 74, 10.1016/j.mattod.2016.12.001
Wen, 2014, Harvesting broadband kinetic impact energy from mechanical triggering/vibration and water waves, ACS Nano, 8, 7405, 10.1021/nn502618f
Zhang, 2010, A bibliometric analysis of world volatile organic compounds research trends, Scientometrics, 83, 477, 10.1007/s11192-009-0065-3
Zhang, 2015, High performance triboelectric nanogenerators based on large-scale mass-fabrication technologies, Nano Energy, 11, 304, 10.1016/j.nanoen.2014.11.012
Zheng, 2014, Silicon-based hybrid cell for harvesting solar energy and raindrop electrostatic energy, Nano Energy, 9, 291, 10.1016/j.nanoen.2014.07.024
Zhu, 2013, Power-generating shoe insole based on triboelectric nanogenerators for self-powered consumer electronics, Nano Energy, 2, 688, 10.1016/j.nanoen.2013.08.002
Zi, 2016, Harvesting low-frequency (<5 Hz) irregular mechanical energy: a possible killer application of triboelectric nanogenerator, Acs Nano, 10, 4797, 10.1021/acsnano.6b01569