Page 29 - ITU Journal Future and evolving technologies Volume 2 (2021), Issue 3 – Internet of Bio-Nano Things for health applications
P. 29
ITU Journal on Future and Evolving Technologies, Volume 2 (2021), Issue 3
[32] Elizabeth Ellis, Suresh Moorthy, Weng‑I Kathe- [44] Antoni Llopis‑Lorente, Paula Dı́ez, Alfredo
rine Chio, and Tung‑Chun Lee. “Arti icial molecu- Sánchez, Marı́a D Marcos, Félix Sancenó n, Paloma
lar and nanostructures for advanced nanoma- Martı́nez‑Ruiz, Reynaldo Villalonga, and Ramó n
chinery”. In: Chemical Communications 54.33 Martı́nez‑Mán ̃ ez. “Interactive models of commu‑
(2018), pp. 4075–4090. nication at the nanoscale using nanoparticles
that talk to one another”. In: Nature
[33] Ivan Aprahamian. “The future of molecular
communications 8.1 (2017), pp. 1–7.
machines”. In: ACS central science 6.3 (2020),
pp. 347–358. [45] Hong Wang and Martin Pumera. “Coordinated be‑
haviors of icial micro/nanomachines: from
[34] Euan R Kay, David A Leigh, and Francesco Zer‑
mutual interactions to interactions with the en‑
betto. “Synthetic molecular motors and mecha-
vironment”. In: Chemical Society Reviews 49.10
nical machines”. In: Angewandte Chemie
(2020), pp. 3211–3230.
International Edition 46.1‑2 (2007), pp. 72–191.
[46] Jing Yan, Ming Han, Jie Zhang, Cong Xu, Erik Lui‑
[35] Wesley R Browne and Ben L Feringa. “Making
jten, and Steve Granick. iguring active par‑
molecular machines work”. In: Nanoscience and
ticles by electrostatic imbalance”. In: Nature ma‑
Technology: A Collection of Reviews from Nature
terials 15.10 (2016), pp. 1095–1099.
Journals (2010), pp. 79–89.
[47] Krishna Kanti Dey. “Dynamic coupling at low
[36] Masayuki Endo and Hiroshi Sugiyama. “DNA Reynolds number”. In: Angewandte Chemie Inter‑
origami nanomachines”. In: Molecules 23.7
national Edition 58.8 (2019), pp. 2208–2228.
(2018), p. 1766.
[48] Ozgur B Akan, Hamideh Ramezani, Tooba Khan,
[37] Marcello DeLuca, Ze Shi, Carlos E Castro, and Gau‑
Naveed A Abbasi, and Murat Kuscu. “Fundamen‑
rav Arya. “Dynamic DNA nanotechnology: toward
functional nanoscale devices”. In: Nanoscale Hori‑ tals of molecular information and communication
science”. In: Proceedings of the IEEE 105.2 (2016),
zons 5.2 (2020), pp. 182–201.
pp. 306–318.
[38] Hamid Ramezani and Hendrik Dietz. “Building
machines with DNA molecules”. In: Nature Re‑ [49] Michael Moore, Akihiro Enomoto, Tadashi
Nakano, Ryota Egashira, Tatsuya Suda, Atsushi
views Genetics 21.1 (2020), pp. 5–26.
Kayasuga, Hiroaki Kojima, Hitoshi Sakakibara,
[39] Samuel Sánchez, Lluı́s Soler, and Jaideep Katuri.
and Kazuhiro Oiwa. “A design of a molecular
“Chemically powered micro‑and nanomotors”. In:
communication system for nanomachines using
Angewandte Chemie International Edition 54.5
molecular motors”. In: Pervasive Computing and
(2015), pp. 1414–1444. Communications Workshops, 2006. PerCom Work‑
[40] Mingjun Xuan, Jingxin Shao, Xiankun Lin, Luru shops 2006. Fourth Annual IEEE International
Dai, and Qiang He. “Self‑propelled janus meso‑ Conference on. IEEE. 2006, 6–pp.
porous silica nanomotors with sub‑100 nm di‑
[50] Deniz Kilinc and Ozgur B Akan. “An information
ameters for drug encapsulation and delivery”. In:
theoretical analysis of nanoscale molecular gap
ChemPhysChem 15.11 (2014), pp. 2255–2260.
junction communication channel between car‑
[41] Jiabin Luan, Danni Wang, and Daniela A Wil‑ diomyocytes”. In: IEEE Transactions on Nanotech‑
son. “Leveraging synthetic particles for commu‑ nology 12.2 (2013), pp. 129–136.
nication: from passive to active systems”. In:
[51] Massimiliano Pierobon and Ian F Akyildiz.
Nanoscale (2020).
“Diffusion‑based noise analysis for molecular
[42] Beatriz de Luis, A .ngela Morellá‑Aucejo, Antoni communication in nanonetworks”. In: IEEE
Llopis‑Lorente, Tania M Godoy‑Reyes, Reynaldo Transactions on signal processing 59.6 (2011),
Villalonga, Elena Aznar, Félix Sancenón, and pp. 2532–2547.
Ramón Martı́nez‑Mán ̃ez. “A chemical circular
[52] Massimiliano Pierobon and Ian F Akyildiz. “Noise
communication network at the nanoscale”. In:
analysis in ligand‑binding reception for mole-
Chemical Science 12.4 (2021), pp. 1551–1559.
cular communication in nanonetworks”. In:
[43] Chuanrui Chen, Xiaocong Chang, Hazhir Tey‑ IEEE Transactions on Signal Processing 59.9
mourian, Doris E Ramı́rez‑Herrera, Berta (2011), pp. 4168–4182.
Esteban‑Fernández de A vila, Xiaolong Lu, Jinxing
[53] Massimiliano Pierobon and Ian F Akyildiz. “Inter‑
Li, Sha He, Chengcheng Fang, Yuyan Liang, et al.
symbol and co‑channel interference in diffusion‑
“Bioinspired chemical communication between based molecular communication”. In: Communi‑
synthetic nanomotors”. In: Angewandte Chemie
cations (ICC), 2012 IEEE International Conference
International Edition 57.1 (2018), pp. 241–245.
on. IEEE. 2012, pp. 6126–6131.
© International Telecommunication Union, 2021 17