您当前的位置:首页 > 学科资讯

截止2018年底,客户在Elsevier发表文章----不完全统计

发布时间:2019-01-03 14:33:05        阅读次数:

1.         Anal. Chim. Acta., 2008, 625, 35–40

2.         Analytica Chimica Acta 655 (2009) 52–59

3.         Analytica Chimica Acta 702 (2011) 50– 55

4.         Analytica Chimica Acta 704 (2011) 133–138

5.         Analytica Chimica Acta 751 (2012) 59– 65

6.         Analytica Chimica Acta 767 (2013) 148– 154

7.         Analytica Chimica Acta 770 (2013) 62– 67

8.         Analytica Chimica Acta 805 (2013) 36– 44

9.         Analytica Chimica Acta 821 (2014) 97–102

10.     Analytica Chimica Acta 872 (2015) 46–54

11.     Analytica Chimica Acta 906 (2016) 118-127

12.     Analytica Chimica Acta 948 (2016) 48-54

13.     Analytica Chimica Acta 953 (2017) 71-78

14.     Analytical Biochemistry 500 (2016) 73-79

15.     Analytical Biochemistry 530 (2017) 50-56

16.     Analytical Biochemistry 559 (2018) 44–50

17.     Applied catalysis A General 419– 420 (2012) 53– 57

18.     Applied Catalysis A General 532 (2017) 26–31

19.     Applied Catalysis A, General 567 (2018) 12–19

20.     Applied Catalysis B Environmental 144 (2014) 442– 453

21.     Applied Catalysis B Environmental 191 (2016) 94–105

22.     Applied Catalysis B Environmental 206 (2017) 175–183

23.     Applied Catalysis B Environmental 224 (2018) 183–193

24.     Applied Energy 197 (2017) 124–131

25.     Applied Surface Science 458 (2018) 495–502

26.     Biochemical Engineering Journal 109 (2016) 35–42

27.     Bioelectrochemistry 88 (2012) 42–47

28.     Biomaterials 32 (2011) 2117-2123

29.     Bioresource Technology 102 (2011) 9368–9373

30.     Bioresource Technology 112 (2012) 151–155

31.     Bioresource Technology 112 (2012) 313–318

32.     Bioresource Technology 115 (2012) 58–62

33.     Bioresource Technology 118 (2012) 512–517

34.     Bioresource Technology 119 (2012) 199–207

35.     Bioresource Technology 124 (2012) 440–445

36.     Bioresource Technology 130 (2013) 339–344

37.     Bioresource Technology 140 (2013) 447–450

38.     Bioresource Technology 144 (2013) 429–434

39.     Bioresource Technology 150 (2013) 352–358

40.     Bioresource Technology 151 (2014) 402–405

41.     Bioresource Technology 153 (2014) 379–382

42.     Bioresource Technology 153 (2014) 403–407

43.     Bioresource Technology 193 (2015) 119–127

44.     Bioresource Technology 196 (2015) 509–517

45.     Bioresource Technology 197 (2015) 42–47

46.     Bioresource Technology 199 (2016) 271–274

47.     Bioresource Technology 208 (2016) 19–23

48.     Bioresource Technology 222 (2016) 175–181

49.     Bioresource Technology 232 (2017) 113–118

50.     Bioresource Technology 234 (2017) 406–414

51.     Bioresource Technology 243 (2017) 335–338

52.     Bioresource Technology 249 (2018) 969–975

53.     Bioresource Technology 270 (2018) 537–544

54.     Biosensors and Bioelectronics 108 (2018) 38–45

55.     Biosensors and Bioelectronics 28 (2011) 77– 83

56.     Biosensors and Bioelectronics 75(2016) 96–100

57.     Biosensors and Bioelectronics 94 (2017) 141–147

58.     Biosensors and Bioelectronics 94 (2017) 694–700

59.     Biosensors andBioelectronics41(2013)225–231

60.     Biosensors andBioelectronics42(2013)207–213

61.     Biosensors andBioelectronics56(2014)223–230

62.     Biosensors andBioelectronics58(2014)48–56

63.     Biosensors andBioelectronics59(2014)75–80

64.     Biosensors andBioelectronics64(2015)131–137

65.     Biosensors andBioelectronics64(2015)277–284

66.     Biosensors andBioelectronics75(2016)96–100

67.     CALPHAD Computer Coupling of Phase Diagrams and Thermochemistry 54(2016) 76–81

68.     Carbohydrate Polymers 100 (2014) 211– 217

69.     Carbohydrate Polymers 110 (2014) 292–297

70.     Carbohydrate Polymers 117 (2015) 99–105

71.     Carbohydrate Polymers 128 (2015) 105–111

72.     Carbohydrate Polymers 138 (2016) 192–200

73.     Carbohydrate Polymers 148 (2016) 1–10

74.     Carbohydrate Polymers 149 (2016) 348–356

75.     Carbohydrate Polymers 186 (2018) 252–259

76.     Carbohydrate Polymers 189 (2018) 190–197

77.     Carbohydrate Polymers 195 (2018) 288–297

78.     Carbohydrate Polymers 200 (2018) 100–105

79.     Carbohydrate Polymers 77 (2009) 779–784

80.     Carbohydrate Polymers 85 (2011) 792–797

81.     Carbohydrate Polymers 88 (2012) 891– 895

82.     Carbohydrate Polymers 89 (2012) 1215– 1221

83.     Carbohydrate Polymers 90 (2012) 1629– 1633

84.     CARBON 55 (2013) 245–252

85.     CARBON 72 (2014) 274–286

86.     CARBON 82 (2015) 1–11

87.     Catalysis Communications 104 (2018) 37–40

88.     Catalysis Communications 76 (2016) 46–49

89.     Catalysis Communications 96 (2017) 69–73

90.     Catalysis Today 200 (2013) 87– 93

91.     Catalysis Today 256 (2015) 215–220

92.     Ceramics International 44 (2018) 2599–2602

93.     Chemical Engineering & Processing Process Intensification 125 (2018) 246–252

94.     Chemical Engineering Journal 181– 182 (2012) 85– 92

95.     Chemical Engineering Journal 204–206 (2012) 235–243

96.     Chemical Engineering Journal 279 (2015) 136–142

97.     Chemical Engineering Journal 288 (2016) 608–617

98.     Chemical Engineering Journal 289 (2016) 212–218

99.     Chemical Engineering Journal 308 (2017) 370–376

100.  Chemical Engineering Journal 313 (2017) 1004–1009

101.  Chemical Engineering Journal 316 (2017) 1026–1034

102.  Chemical Engineering Journal 317 (2017) 988–998

103.  Chemical Engineering Journal 343 (2018) 561–571

104.  Chemical Engineering Journal 354 (2018) 599–605

105.  Chemical Engineering Research and Design 132(2018) 199–207

106.  Chemical Engineering Science 84(2012) 695–705

107.  Chemical Physics Letters 707 (2018) 8–12

108.  Chemosphere 148 (2016) 241-247

109.  Chemosphere 165 (2016) 399-408

110.  Chemosphere 194 (2018) 20-27

111.  Chinese Chemical Letters 25 (2014) 859–864

112.  Chinese Chemical Letters 29 (2018) 1305–1309

113.  Chinese Journal of Catalysis 35 (2014) 396–406

114.  Chinese Journal of Chemical Engineering 23 (2015) 213–218

115.  Chinese Journal of Chemical Engineering 25 (2017) 1519–1523

116.  Chinese Journal of Chemical Engineering 25 (2017) 159–165

117.  Chinese Journal of Chemical Engineering 26 (2018) 1513–1521

118.  Chinese Journal of Chemical Engineering 26 (2018) 2377–2384

119.  Chinese Journal of Chemical Engineering, 19(3) 473-477 (2011)

120.  Colloids and Surfaces A 529 (2017) 38–44

121.  Colloids and Surfaces A Physicochem. Eng. Aspects 387 (2011) 10– 16

122.  Colloids and Surfaces A Physicochem. Eng. Aspects 396 (2012) 213– 218

123.  Colloids and Surfaces A Physicochem. Eng. Aspects 414 (2012) 82– 87

124.  Colloids and Surfaces A Physicochem. Eng. Aspects 428 (2013) 70– 78

125.  Colloids and Surfaces A Physicochem. Eng. Aspects 436 (2013) 557– 562

126.  Colloids and Surfaces A Physicochem. Eng. Aspects 436 (2013) 563– 569

127.  Colloids and Surfaces A Physicochem. Eng. Aspects 441 (2014) 72– 76

128.  Colloids and Surfaces A Physicochem. Eng. Aspects 446 (2014) 97–101

129.  Colloids and Surfaces A Physicochem. Eng. Aspects 481 (2015) 500–505

130.  Colloids and Surfaces A Physicochem. Eng. Aspects 518 (2017) 7–14

131.  Colloids and Surfaces B Biointerfaces 101 (2013) 177– 182

132.  Colloids and Surfaces B Biointerfaces 86 (2011) 339–344

133.  Composites Part A 61 (2014) 134–140

134.  Composites Science and Technology 117 (2015) 282-288

135.  Composites Science and Technology 123 (2016) 171-178

136.  Corrosion Science 119 (2017) 68–78

137.  Corrosion Science 95 (2015) 168–179

138.  Ecotoxicology and Environmental Safety 102(2014) 187–195

139.  Ecotoxicology and Environmental Safety 115(2015) 112–118

140.  Ecotoxicology and Environmental Safety 122(2015) 83–90

141.  Ecotoxicology and Environmental Safety 122(2015) 83–90

142.  Ecotoxicology and Environmental Safety 161 (2018) 648–654

143.  Electrochem. Comm., 2010, 12, 402–405

144.  Electrochemistry Communications 25 (2012) 26–29

145.  Electrochemistry Communications 38 (2014) 44–46

146.  Electrochemistry Communications 86 (2018) 68–71

147.  Electrochimica Acta 115 (2014) 247– 254

148.  Electrochimica Acta 132 (2014) 465–471

149.  Electrochimica Acta 190 (2016) 1066–1077

150.  Electrochimica Acta 201 (2016) 117–124

151.  Electrochimica Acta 207 (2016) 308–312

152.  Electrochimica Acta 210 (2016) 293–300

153.  Electrochimica Acta 247 (2017) 657–665

154.  Electrochimica Acta 257 (2017) 138–145

155.  Electrochimica Acta 265 (2018) 221-231

156.  Electrochimica Acta 270 (2018) 352-362

157.  Electrochimica Acta 289 (2018) 29-38

158.  Electrochimica Acta 56 (2011) 6008– 6013

159.  Electrochimica Acta 56 (2011) 8645– 8650

160.  Electrochimica Acta 61 (2012) 73– 77

161.  Electrochimica Acta 64 (2012) 183– 189

162.  Electrochimica Acta 69 (2012) 79– 85

163.  Electrochimica Acta 80 (2012) 346– 353

164.  Electrochimica Acta 85 (2012) 145– 151

165.  Electrochimica Acta 87 (2013) 317– 322

166.  Electrochimica Acta 91 (2013) 130– 136

167.  Energy 143 (2018) 35-42

168.  Environmental Pollution 181 (2013) 242e249

169.  European Polymer Journal 99 (2018) 58–64

170.  Fluid Phase Equilibria 344 (2013) 27– 31

171.  Fluid Phase Equilibria 367 (2014) 125–134

172.  Fluid Phase Equilibria 412 (2016) 205-210

173.  Fluid Phase Equilibria 425 (2016) 244-251

174.  Fluid Phase Equilibria 427 (2016) 340-344

175.  Fluid Phase Equilibria 439 (2017) 1-8

176.  Fluid Phase Equilibria 440 (2017) 103-110

177.  Fluid Phase Equilibria 443 (2017) 44-49

178.  Fluid Phase Equilibria 461 (2018) 51-56

179.  Fluid Phase Equilibria 473 (2018) 90-97

180.  Food Chemistry 197 (2016) 1064–1072

181.  Food Chemistry 197 (2016) 754–760

182.  Food Chemistry 215 (2017) 193–199

183.  Food Chemistry 239 (2018) 797–805

184.  Food Chemistry 257 (2018) 223–229

185.  Food Chemistry 268 (2018) 485–491

186.  Food Hydrocolloids 36 (2014) 348e354

187.  Fuel 160 (2015) 495–501

188.  Fuel 194 (2017) 27–35

189.  Fuel 217 (2018) 508–514

190.  Fuel 217 (2018) 529–535

191.  Fuel 227 (2018) 141–149

192.  Fuel 233 (2018) 860–866

193.  Hydrometallurgy 147–148 (2014) 164–169

194.  Hydrometallurgy 169 (2017) 1–8

195.  Hydrometallurgy 175 (2018) 150–154

196.  Industrial Crops & Products 108 (2017) 140–148

197.  Industrial Crops & Products 108 (2017) 286–294

198.  Industrial Crops & Products 113 (2018) 150–156

199.  Industrial Crops & Products 114 (2018) 123–131

200.  Industrial Crops & Products 123 (2018) 600–609

201.  Industrial Crops & Products 124 (2018) 59–65

202.  Industrial Crops and Products 101 (2017) 11–20

203.  Industrial Crops and Products 35 (2012) 135– 139

204.  Industrial Crops and Products 43 (2013) 141– 149

205.  Industrial Crops and Products 45 (2013) 36– 43

206.  Industrial Crops and Products 45 (2013) 52– 57

207.  Industrial Crops and Products 46 (2013) 197– 204

208.  Industrial Crops and Products 52 (2014) 105– 110

209.  Industrial Crops and Products 77 (2015) 139–145

210.  International Journal of Biological Macromolecules 84 (2016) 394–401

211.  International Journal of Biological Macromolecules 86 (2016) 155–161

212.  International Journal of Greenhouse Gas Control 34 (2015) 31–38

213.  International Journal of Greenhouse Gas Control 42 (2015) 454–460

214.  International Journal of Heat and Mass Transfer 91 (2015) 170–177

215.  International Journal of Hydrogen Energy 38(29), 2013, 13055–13061

216.  International journal of hydrogen energy 42 (2017) 11400-11410

217.  International Journal of Mining Science and Technology 26 (2016) 353–359

218.  International Journal of Pharmaceutics 535 (2018) 120–131

219.  J. Biotechnol., 2009, 143, 190–197

220.  J. Chem. Thermodynamics 106 (2017) 153–159

221.  J. Chem. Thermodynamics 107 (2017) 65–78

222.  J. Chem. Thermodynamics 113 (2017) 144–150

223.  J. Chem. Thermodynamics 113 (2017) 358–368

224.  J. Chem. Thermodynamics 116 (2018) 114–120

225.  J. Chem. Thermodynamics 118 (2018) 263–273

226.  J. Chem. Thermodynamics 121 (2018) 49–54

227.  J. Chem. Thermodynamics 122 (2018) 162–169

228.  J. Chem. Thermodynamics 48 (2012) 145–149

229.  J. Chem. Thermodynamics 74 (2014) 209–215

230.  J. Chem. Thermodynamics 97 (2016) 362–366

231.  J. Chromatogr. A, 2008, 1207, 175–180

232.  J. of Supercritical Fluids 69 (2012) 108– 112

233.  Journal of Alloys and Compounds 712 (2017) 164-171

234.  Journal of Biotechnology 162 (2012) 183– 190

235.  Journal of Cereal Science 71 (2016) 53-60

236.  Journal of Chromatography A, 1216 (2009) 885–891

237.  Journal of Chromatography A, 1217 (2010) 5013–5020

238.  Journal of Chromatography A, 1217 (2010) 5434–5439

239.  Journal of Chromatography A, 1218 (2011) 1503–1508

240.  Journal of Chromatography A, 1218 (2011) 3595–3600

241.  Journal of Chromatography A, 1218 (2011) 3699–3703

242.  Journal of Chromatography A, 1218 (2011) 6285– 6291

243.  Journal of Chromatography A, 1218 (2011) 6621– 6629

244.  Journal of Chromatography A, 1254 (2012) 23– 29

245.  Journal of Chromatography A, 1268 (2012) 1– 8

246.  Journal of Chromatography A, 1300 (2013) 141– 150

247.  Journal of Chromatography A, 1324 (2014) 78– 85

248.  Journal of Chromatography A, 1360 (2014) 47–56

249.  Journal of Chromatography A, 1381 (2015) 37–47

250.  Journal of Chromatography A, 1427 (2016) 1–7

251.  Journal of Chromatography A, 1437 (2016) 1–7

252.  Journal of Chromatography A, 1444 (2016) 42–49

253.  Journal of Chromatography A, 1449 (2016) 100–108

254.  Journal of Chromatography A, 1454 (2016) 1–8

255.  Journal of Chromatography A, 1466 (2016) 42–49

256.  Journal of Chromatography A, 1471 (2016) 60–67

257.  Journal of Chromatography A, 1474 (2016) 23–31

258.  Journal of Chromatography A, 1489 (2017) 29–38

259.  Journal of Chromatography A, 1497 (2017) 1–8

260.  Journal of Chromatography A, 1516 (2017) 1–8

261.  Journal of Chromatography A, 1559 (2018) 86–94

262.  Journal of Chromatography B 1089 (2018) 70–77

263.  Journal of Chromatography B, 1027 (2016) 200–206

264.  Journal of Chromatography B, 879 (2011) 3429– 3433

265.  Journal of Colloid and Interface Science 362 (2011) 5–14

266.  Journal of Colloid and Interface Science 433 (2014) 49–57

267.  Journal of Colloid and Interface Science 487 (2017) 281–288

268.  Journal of Electroanalytical Chemistry 719 (2014) 35–40

269.  Journal of Electroanalytical Chemistry 756 (2015) 43–48

270.  Journal of Electroanalytical Chemistry 757 (2015) 198–202

271.  Journal of Electroanalytical Chemistry 757 (2016) 198–202

272.  Journal of Electroanalytical Chemistry 781 (2016) 218–222

273.  Journal of Electroanalytical Chemistry 787 (2017) 139–144

274.  Journal of Electroanalytical Chemistry 815 (2018) 220–224

275.  JOURNAL OF ENVIRONMENT ALSCIENCES 41 (2016) 211–217

276.  Journal of Environmental Chemical Engineering 3 (2015) 2426–2434

277.  journal of food and drug analysis 26(2018) 670-677

278.  Journal of Food Composition and Analysis 40 (2015) 14–18

279.  Journal of Food Composition and Analysis 62 (2017) 63–68

280.  Journal of Hazardous Materials 263 (2013) 562– 568

281.  Journal of Hazardous Materials 265 (2014) 261– 270

282.  Journal of Hazardous Materials 286 (2015) 440–448

283.  Journal of Hazardous Materials 271(2014) 50–56

284.  Journal of Industrial and Engineering Chemistry 19 (2013) 1708–1714

285.  Journal of Industrial and Engineering Chemistry 54 (2017) 369–376

286.  Journal of Luminescence 132(2012) 622–628

287.  Journal of Luminescence 140(2013) 120–125

288.  Journal of Membrane Science 550 (2018) 136–144

289.  Journal of Molecular Catalysis A Chemical 408 (2015) 271–277

290.  Journal of Molecular Catalysis A Chemical 410 (2015) 235–241

291.  Journal of Molecular Catalysis B Enzymatic 56 (2009) 70–76

292.  Journal of Molecular Catalysis B Enzymatic 71 (2011) 152–158

293.  Journal of Molecular Catalysis B Enzymatic 74 (2012) 24– 28

294.  Journal of Molecular Catalysis B Enzymatic 94 (2013) 129– 135

295.  Journal of Molecular Graphics and Modelling 64 (2016) 51–59

296.  Journal of Molecular Graphics and Modelling 68 (2016) 87–94

297.  Journal of Molecular Liquids 190 (2014) 151–158

298.  Journal of Molecular Liquids 203 (2015) 169–180

299.  Journal of Molecular Liquids 204 (2015) 112–117

300.  Journal of Molecular Liquids 206 (2015) 95–102

301.  Journal of Molecular Liquids 208 (2015) 259–268

302.  Journal of Molecular Liquids 213 (2016) 289–293

303.  Journal of Molecular Liquids 215 (2016) 640–646

304.  Journal of Molecular Liquids 223 (2016) 1032–1038

305.  Journal of Molecular Liquids 223 (2016) 202–208

306.  Journal of Molecular Liquids 223 (2016) 672–677

307.  Journal of Molecular Liquids 223 (2017) 202–208

308.  Journal of Molecular Liquids 224 (2016) 544–550

309.  Journal of Molecular Liquids 224 (2016) 662–667

310.  Journal of Molecular Liquids 225 (2017) 706–712

311.  Journal of Molecular Liquids 233 (2017) 344–351

312.  Journal of Molecular Liquids 233 (2017) 403–414

313.  Journal of Molecular Liquids 238 (2017) 106–114

314.  Journal of Molecular Liquids 241 (2017) 946–951

315.  Journal of Molecular Liquids 248 (2017) 626–633

316.  Journal of Molecular Liquids 252 (2018) 392–398

317.  Journal of Molecular Liquids 261 (2018) 89–95

318.  Journal of Molecular Liquids 262 (2018) 78–85

319.  Journal of Molecular Liquids 272 (2018) 548–553

320.  Journal of Molecular Liquids 272 (2018) 625–630

321.  Journal of Molecular Structure 1058 (2014) 244–251

322.  Journal of Molecular Structure 1079 (2015) 120–129

323.  Journal of Molecular Structure 1106 (2016) 70-75

324.  Journal of Molecular Structure 1137 (2017) 610-614

325.  Journal of Nuclear Materials 480 (2016) 301-309

326.  Journal of Pharmaceutical and Biomedical Analysis 102 (2015) 509–513

327.  Journal of Pharmaceutical and Biomedical Analysis 120 (2016) 134–141

328.  Journal of Pharmaceutical Analysis 2011;1(4)258–263

329.  Journal of Power Sources 196 (2011) 8360– 8365

330.  Journal of Power Sources 259 (2014) 138-144

331.  Journal of Power Sources 374 (2018) 166–174

332.  Journal of Power Sources 403 (2018) 127–136

333.  JOURNAL OF RARE EARTHS, Vol. 33, No. 11, Nov. 2015, P. 1182

334.  Materials and Design 157 (2018) 273–283

335.  Materials Chemistry and Physics 144 (2014) 194-198

336.  Materials Letters 124(2014)212–214

337.  Materials Letters 182(2016)218–222

338.  Materials Letters 206 (2017) 60–63

339.  Materials Research Bulletin 47 (2012) 3100–3106

340.  Materials Science & Engineering C 89 (2018) 230–236

341.  Materials Science and Engineering C 39 (2014) 86–91

342.  Materials Science and Engineering C 40 (2014) 235–241

343.  Materials Science and Engineering C 49 (2015) 34–39

344.  Materials Science and Engineering C 55 (2015) 457–461

345.  Materials Science and Engineering C 58 (2016) 450–457

346.  Materials Science and Engineering C 64 (2016) 354–361

347.  Materials Science and Engineering C 77 (2017) 151–158

348.  Materials Sciencein Semiconductor Processing 23(2014)151–158

349.  Materials Letters 163(2016) 175–178

350.  Microchemical Journal 103 (2012) 125–130

351.  Microporous and Mesoporous Materials 151 (2012) 282–286

352.  Microporous and Mesoporous Materials 193 (2014) 1–6

353.  Microporous and Mesoporous Materials 224 (2016) 17-25

354.  Molecular Catalysis 446 (2018) 124–130

355.  Molecular Catalysis 461 (2018) 73–79

356.  Polyhedron 117 (2016) 309–317

357.  Polymer 108 (2017) 442-448

358.  Polymer 155 (2018) 101–108

359.  Polymer 54 (2013) 5035e5042

360.  Polymer 85 (2016) 61-66

361.  Process Biochemistry 48 (2013) 1942–1946

362.  Process Biochemistry 50 (2015) 2208–2214

363.  Progress in Materials Science 77 (2016) 80–124

364.  Radiation Physics and Chemistry 78(2009) 1133–1136

365.  Radiation Physics and Chemistry 83(2013)74–78

366.  Renewable Energy 63 (2014) 519-523

367.  Renewable Energy 99 (2016) 888-897

368.  Safety Science 50 (2012) 1528–1534

369.  Science of the Total Environment 566–567 (2016) 1–7

370.  Sensors & Actuators B. Chemical 277 (2018) 234–240

371.  Sensors and Actuators B 157 (2011) 540– 546

372.  Sensors and Actuators B 163 (2012) 272– 280

373.  Sensors and Actuators B 168 (2012) 27– 33

374.  Sensors and Actuators B 171– 172 (2012) 367– 373

375.  Sensors and Actuators B 176 (2013) 818– 824

376.  Sensors and Actuators B 186 (2013) 461– 465

377.  Sensors and Actuators B 188 (2013) 462– 468

378.  Sensors and Actuators B 199 (2014) 36–41

379.  Sensors and Actuators B 202 (2014) 160–166

380.  Sensors and Actuators B 219 (2015) 331–337

381.  Sensors and Actuators B 219 (2015) 361–369

382.  Sensors and Actuators B 219 (2016) 331–337

383.  Sensors and Actuators B 220 (2015) 1232–1240

384.  Sensors and Actuators B 220 (2016) 1232–1240

385.  Sensors and Actuators B 225 (2016) 305–311

386.  Sensors and Actuators B 242 (2017) 492–501

387.  Sensors and Actuators B 246 (2017) 638–646

388.  Sensors and Actuators B 252 (2017) 870–876

389.  Sensors and Actuators B 255 (2018) 149–158

390.  Separation and Purification Technology 104 (2013) 263–267

391.  Separation and Purification Technology 119 (2013) 66–71

392.  Separation and Purification Technology 120 (2013) 367–372

393.  Separation and Purification Technology 124 (2014) 107–116

394.  Separation and Purification Technology 135 (2014) 223–228

395.  Separation and Purification Technology 154 (2015) 123–127

396.  Separation and Purification Technology 154 (2016) 123–127

397.  Separation and Purification Technology 163 (2016) 258–266

398.  Separation and Purification Technology 179 (2017) 126–134

399.  Separation and Purification Technology 179 (2017) 309–319

400.  Separation and Purification Technology 188 (2017) 386–393

401.  Separation and Purification Technology 191 (2018) 364–369

402.  Separation and Purification Technology 192 (2018) 302–308

403.  Separation and Purification Technology 196 (2018) 229–236

404.  Separation and Purification Technology 88 (2012) 146–150

405.  Solar Energy Materials & Solar Cells 163 (2017) 157–163

406.  Solar Energy Materials and Solar Cells 170 (2017) 219–232

407.  Solar Energy Materials & Solar Cells 159(2017)159–166

408.  Solid State Ionics 308 (2017) 133–138

409.  Spectrochimica Acta Part A 78 (2011) 211–215

410.  Spectrochimica Acta Part A Molecular and Biomolecular Spectroscopy 104 (2013) 377–382

411.  Spectrochimica Acta Part A Molecular and Biomolecular Spectroscopy 112 (2013) 146–151

412.  Spectrochimica Acta Part A Molecular and Biomolecular Spectroscopy 150 (2015) 331–338

413.  Spectrochimica Acta Part A Molecular and Biomolecular Spectroscopy 159 (2016) 128–133

414.  Surface & Coatings Technology 307 (2016) 190–199

415.  Talanta 101(2012) 510–515

416.  Talanta 107(2013) 81–87

417.  Talanta 110(2013) 15–20

418.  Talanta 115(2013) 556–562

419.  Talanta 119(2014) 341–347

420.  Talanta 125(2014) 329–335

421.  Talanta 128(2014) 373–378

422.  Talanta 141(2015) 41–46

423.  Talanta 144(2015) 98–104

424.  Talanta 144(2016) 98–104

425.  Talanta 148(2016) 356–361

426.  Talanta 148(2016) 362–369

427.  Talanta 153(2016) 392–400

428.  Talanta 153(2016) 71–78

429.  Talanta 162 (2017) 625–633

430.  Talanta 166 (2017) 93–100

431.  Talanta 182 (2018) 450–455

432.  Talanta 184 (2018) 468–474

433.  Talanta 79 (2009) 1446–1453

434.  Talanta 80 (2009) 448–453

435.  Talanta 82 (2010) 1010–1016

436.  Talanta 85 (2011) 1592–1597

437.  Talanta 85 (2011) 1621–1626

438.  Talanta 87 (2011) 106– 112

439.  Talanta 88 (2012) 222– 229

440.  Talanta 88 (2012) 696– 700

441.  Talanta 94 (2012) 189– 194

442.  Talanta 98(2012) 145–151

443.  Talanta 99(2012) 984–988

444.  Tetrahedron, 2009, 65, 1063–1068

445.  Thermochimica Acta 501 (2010) 78–83

446.  Thermochimica Acta 566 (2013) 149– 154

447.  Thermochimica Acta 657 (2017) 156–162

448.  Thin Solid Films 520 (2012) 4459–4464

449.  Thin Solid Films 520 (2012) 5064–5069

450.  Thin Solid Films 562 (2014) 653–658

451.  Thin Solid Films 564 (2014) 379–383

452.  Tribology International 114 (2017) 121–131

453.  Tribology International 119 (2018) 766–774

454.  Tribology International 120 (2018) 446–454

455.  Tribology International 121 (2018) 435–441

456.  Tribology International 92 (2015) 344–352

457.  Tribology International 92 (2016) 344–352

458.  Waste Management 62 (2017) 222–228