[6] Ishii T., Kimura Y., Ichise M., Takahata K., Kitamura S., Moriguchi S., Okubo Y.,
Correction: Anatomical Relationships between Serotonin 5-HT2A and Dopamine D2 Receptors in Living Human Brain,
PloS One,
13(5): e0197201 (2018).
[7] van Holst R., Sescousse G., Timmeren T., den Ouden H., Berry A., Jagust W., Cools R.,
S258. Dorsal, but not Ventral Striatal Dopamine Mediates the Effect of Gambling Disorder on Compulsivity During Reversal Learning,
Biol. Psychiatry,
83(9): S448-S449 (2018).
[9] Pananon P., Sriprachuabwong C., Wisitsoraat A., Chuysinuan P., Tuantranont A., Saparpakorn P., Dechtrirat D.,
A Facile One-Pot Green Synthesis of Gold Nanoparticle-Graphene-PEDOT: PSS Nanocomposite for Selective Electrochemical Detection of Dopamine,
RSC Advances,
8(23): 12724-12732 (2018).
[18] Ferrer D.G., García A.G., Peris-Vicente J., Gimeno-Adelantado J.V., Esteve-Romero J.,
Analysis of Epinephrine, Norepinephrine, and Dopamine In Urine Samples of Hospital Patients by Micellar Liquid Chromatography,
Anal. Bioanal. Chem.,
407: 9009-9018 (2015).
[23] Hou L., Shi Y., Wu C., Zhang Y., Ma Y., Sun X., Yuan C.,
Monodisperse Metallic NiCoSe2 Hollow Sub‐Microspheres: Formation Process, Intrinsic Charge‐Storage Mechanism, and Appealing Pseudocapacitance as Highly Conductive Electrode for Electrochemical Supercapacitors,
Adv. Func. Mater.,
28(13): 1705921 (2018).
[24] حسنی نژاد درزی، سید کریم؛ رضوانی، روزبه؛ پورعلی، سیده معصومه
؛ الکترواکسایش فرمالدهید با استفاده از الکترود خمیر کربن اصلاح شده با نانوزئولیت MCM-41 دارای نقره،
نشریه شیمی و مهندسی شیمی ایران،
(1)37: 51 تا 61 (1397)
[25] Soba A., Suárez C., González M.M., Cabrales L.E.B., Pupo A.E.B., Reyes J.B., Tassé J.P.M.,
Integrated Analysis of the Potential, Electric Field, Temperature, PH and Tissue Damage Generated By Different Electrode Arrays in a Tumor Under Electrochemical Treatment,
Math. Comput. Simulat.,
146: 160-176 (2018).
[30] عجمی، نرگس؛ مظفری، شهلا؛ اردوخانیان، ژولیت؛ سهیلی، سهیلا؛
کاربرد نانوکامپوزیت پلی پیرول ـ سریم(IV) اکسید به عنوان نانو حسگر برای اندازه گیری داروی لووکارنتین،
نشریه شیمی و مهندسی شیمی ایران،
(1)38: 55 تا 65 (1398).
[32] قلی زاده، اعظم؛ شاهرخیان، سعید؛ ایرجی زاد، اعظم؛ مهاجرزاده، شمس الدین؛ وثوقی، منوچهر؛
اندازه گیری گلوتامات با استفاده از حسگر زیستی بر پایه نانولوله های کربنی عمودی،
نشریه شیمی و مهندسی شیمی ایران،
(4)33 : 33 تا 36 (1392).
[33] Bard A.J., Faulkner L.R., "
Electrochemical Methods Fundamentals and Applications", 2nd ed., John Wiley & Sons, Inc.,, New York (2001).
[34] Li, Y., Jiang, Y., Mo, T., Zhou, H., Li, Y., Li, S.,
Highly Selective Dopamine Sensor Based on Graphene Quantum Dots Self-Assembled Monolayers Modified Electrode,
J. Electroanal. Chem.,
767: 84-90 (2016).
[35] Wang, X., Zhang, F., Xia, J., Wang, Z., Bi, S., Xia, L., Li, Y., Xia, Y., Xia, L.,
Modification of Electrode Surface with Covalently Functionalized Graphene Oxide by L-Tyrosine for Determination of Dopamine,
J. Electroanal. Chem.,
738: 203-208 (2015).
[36] Zhang, G., He, P., Feng, W., Ding, S., Chen, J., Li, L., He, H., Zhang, S., Dong, F.,
Carbon Nanohorns/Poly(Glycine) Modified Glassy Carbon Electrode: Preparation, Characterization and Simultaneous Electrochemical Determination of Uric Acid, Dopamine and Ascorbic Acid,
J. Electroanal. Chem.,
760: 24-31 (2016).
[37] Yang, B., Wang, H., Du, J., Fu, Y., Yang, P., Du, Y.,
Direct Electrodeposition of Reduced Graphene Oxide on Carbon Fiber Electrode for Simultaneous Determination of Ascorbic Acid, Dopamine and Uric Acid,
Colloids Surf. A,
456: 146-152 (2014).
[38] Zheng, X., Guo, Y., Zheng, J., Zhou, X., Li, Q., Lin, R.,
Simultaneous Determination of Ascorbic Acid, Dopamine and Uric Acid Using Poly(L-Leucine)/DNA Composite Film Modified Electrode,
Sens. Actuat. B: Chem.,
213: 188-194 (2015).
[39] Mazloum-Ardakani M., Beitollahi H., Amini M.K., Mirkhalaf F., Mirjalili B.F., Akbari A.,
Application of 2-(3,4-Dihydroxyphenyl)-1,3-Dithialone Self-Assembled Monolayer on Gold Electrode as a Nanosensor For Electrocatalytic Determination of Dopamine and Uric Acid,
Analyst,
136: 1965-1970 (2011).