Environmental Engineering Reference
In-Depth Information
88. Liu YH, Yi B, Shao ZG, Xing D, Zhang H (2006) Electrochem Solid State Lett 9:A356
89. Liu YH, Yi B, Shao ZG, Wang L, Xing D, Zhang H (2007) J Power Sources 163:807
90. Thomassin JM, Kollar J, Caldarea G, Germain A, Jerome R, Detrembleur C, Memb J (2007)
Science 303:252
91. Kannan R, Kakade BA, Pillai VK (2008) Angew Chem 120:2693
92. Kannan R, Meera P, Maaraveedu SU, Kurungott S, Pillai VK (2009) Langmuir 25:8305
93. Novoselov KS, Jiang Z, Zhang Y, Morozov SV, Stormer HL, Zeitler U, Mann JC,
Boebinger GS, Kim P, Geim AK (2007) Science 315:1377
94. Berger C, Song Z, Li X, Wu X, Brown N, Naud C, Mayou D, Li T, Hass J, Marchenkov AN,
Conard EH, First PN, De Heer WA (2006) Science 312:1191
95. Novoselov KS, Jiang Z, Zhang Y, Morozov SV, Stormer HL, Zeitler U, Mann JC,
Boebinger GS, Kim P, Geim AK (2007) Science 315:1379
96. Rao CNR, Sood AK, Voggu R, Subrahmanyam KSJ (2010) Phys Chem Lett 1:572
97. Novoselov KS, Geim AK, Morozov SV, Jiang D, Katsnelson MI, Grigorieva IV, Dubonos
SV, Firsov AA (2005) Nature 438:197
98. Ozulmaz B, Jarillo Herrero P, Efetov D, Kim P (2007) Appl Phys Lett 91:192107
99. Shinde DH, Debgupta J, Kushwaha A, Aslam M, Pillai VK (2011) J Am Chem Soc
133:4168
100. Yang J, Liu DJ, Kariuki NN, Chen LX (2008) Chem Comm 21:329
101. Xiong W, Du F, Lin Y, Perez A, Supp M, Ramakrishnan TS, Dai L, Jiang L (2010) J Am
Chem Soc 132:15839
102. Kundu S, Nagaiah TC, Xia W, Wang Y, Dommele SV, Bitter JH, Santa M, Grundmeier G,
Bron M, Schuhmann W, Muhler M (2009) J Phys Chem C 113:14302
103. Geng D, Liu H, Chen Y, Li R, Sun X, Ye S, Knights S (2011) J Power Sources 196:1795
104. Wiggins-Camacho JD, Stevenson KJ (2011) J Phys Chem C 115:20002
105. Nagaiah TC, Kundu S, Bron M, Muhler M, Schuhmann W (2010) Electrochem Comm
12:338
106. Gong K, Du F, Xia Z, Durstock M, Dai L (2009) Science 323:760
107. Li Y, Zhou W, Wang H, Xie L, Liang Y, Wei F, Idrobo JC, Pennycook SJ, Dai H (2012) Nat
Nanotech 7:394
108. Wu ZS, Zhou G, Yin LC, Ren W, Li F, Cheng HM (2012) Nano Energy 1:107
109. Alvarez GF, Mamlouk M, Senthil Kumar SM, Scott K (2011) J Appl Electrochem 41:925
110. Winther-Jensen B, Winther-Jensen O, Forsyth M, MacFarlane DR (2008) Science 321:671
111. Wieckowski
A,
Savinova
ER,
Vayenas
CG
(2003)
Catalysis
and
electrocatalysis
at
nanoparticle surfaces. Marcel Dekker Inc, New York
112. Subhramannia M, Pillai VK (2008) J Mater Chem 18:5858
113. Subhramannia M, Ramaiyan K, Pillai VK (2008) Langmuir 24:3576
114. Subhramannia M, Ramaiyan K, Komath I, Aslam M, Pillai VK (2008) Chem Mater 20:601
115. Adzic RR, Tripkovic AV, O'Grady WE (1982) Nature 296:137
116. Motoo S, Furuya N (1985) J Electroanal Chem 184:303
117. Xia XH, Liess HD, Iwasita T (1997) J Electroanal Chem 437:233
118. Yamada M, Honma I (2006) Fuel Cells Bull 5:11
119. Malmstrom BG (1981) Annu Rev Biochem 51:21
120. Huang M, Shao Y, Sun X, Chen H, Liu B, Dong S (2005) Langmuir 21:323
121. Shoji M, Oyaizu K, Nishide H (2008) Polymer 49:5659
122. Saffarian HM, Srinivasan R, Chu D, Gilman S (2001) J Electroanal Chem 504:217
123. Meera P, Kannan R, Sreekumar K, Pillai VK (2010) J Mater Chem 20:9651
124. Ticianelli TA, Derouin CR, Srinivasan SJ (1988) J Electroanal Chem 251:275
125. Gazaryan IG, Lagrimini LM, Ashby GA, Thorneley RNF (1996) Biochem J 313:841
126. Sun W, Peppley BA, Karan K (2005) Electrochim Acta 50:3359
127. Tanimoto E (2005) Crit Rev Plant Sci 24:249
128. Kawano T (2003) Plant Cell Rep 21:829
129. Kreuer KD, Fuchs A, Ise M, Spaeth M, Maier J (1998) Electrochim Acta 43:1281
130. Wainright JS, Wang JT, Weng D, Savinell RF, Litt JM (1995) J Electochem Soc 142:L121
Search WWH ::




Custom Search