Page 35 - ITU Journal Future and evolving technologies Volume 2 (2021), Issue 3 – Internet of Bio-Nano Things for health applications
P. 35
ITU Journal on Future and Evolving Technologies, Volume 2 (2021), Issue 3
[160] Benjamin J Hansen, Ying Liu, Rusen Yang, and [172] Hong Chen, Lin Yuan, Wei Song, Zhongkui Wu, and
Zhong Lin Wang. “Hybrid nanogenerator for Dan Li. “Biocompatible polymer materials: role of
concurrently harvesting biomechanical and protein–surface interactions”. In: Progress in Poly‑
biochemical energy”. In: ACS nano 4.7 (2010), mer Science 33.11 (2008), pp. 1059–1087.
pp. 3647–3652.
[173] Mukta Kulkarni, A Mazare, E Gongadze, S Pe‑
[161] Ozgur B Akan, Oktay Cetinkaya, Caglar Koca, and rutkova, V Kralj‑Ig , I Milošev, Patrik Schmuki, A
Mustafa Ozger. “Internet of hybrid energy har‑ Igli , and M Mozeti . “Titanium nanostructures
vesting things”. In: IEEE Internet of Things Journal for biomedical applications”. In: Nanotechnology
5.2 (2018), pp. 736–746. 26.6 (2015), p. 062002.
[162] F Albano, YS Lin, D Blaauw, DM Sylvester, KD
[174] Laura Treccani, Tanja Yvonne Klein, Fabian
Wise, and AM Sastry. “A fully integrated micro‑
Meder, Karoline Pardun, and Kurosch Rezwan.
battery for an implantable microelectromecha-
“Functionalized ceramics for biomedical, biotech‑
nical system”. In: Journal of Power Sources
nological and environmental applications”. In:
185.2 (2008), pp. 1524–1532.
Acta biomaterialia 9.7 (2013), pp. 7115–7150.
[163] Fride Vullum, Dale Teeters, Anton Nytén, and
[175] Alberto Bianco. “Graphene: safe or toxic? The two
Josh Thomas. “Characterization of lithium nano- faces of the medal”. In: Angewandte Chemie Inter‑
batteries and lithium battery nanoelectrode
national Edition 52.19 (2013), pp. 4986–4997.
arrays that it from nanostructure and
molecular self‑assembly”. In: Solid State Ionics [176] Andrea C Ferrari, Francesco Bonaccorso, Vladimir
177.26‑32 (2006), pp. 2833–2838. Fal’Ko, Konstantin S Novoselov, Stephan Roche,
Peter Bøggild, Stefano Borini, Frank HL Koppens,
[164] Hongxi Zhang, Yudong Cao, Mason Oliver Lam
Vincenzo Palermo, Nicola Pugno, et al. “Science
Chee, Pei Dong, Mingxin Ye, and Jianfeng Shen.
and technology roadmap for graphene, related
“Recent advances in micro‑supercapacitors”. In:
two‑dimensional crystals, and hybrid systems”.
Nanoscale 11.13 (2019), pp. 5807–5821.
In: Nanoscale 7.11 (2015), pp. 4598–4810.
[165] Swati Patil and Dong‑Weon Lee. “Status review
[177] Shuai Zhang, Kai Yang, Liangzhu Feng, and Zhuang
on the MEMS‑based le xible supercapacitors”. In:
Liu. “In vitro and in vivo behaviors of dex‑
Journal of Micromechanics and Microengineering
29.9 (2019), p. 093001. tran functionalized graphene”. In: Carbon 49.12
(2011), pp. 4040–4049.
[166] Yao Lu, Kai Jiang, Di Chen, and Guozhen Shen.
“Wearable sweat monitoring system with inte‑ [178] Alaaldin M Alkilany and Catherine J Murphy.
grated micro‑supercapacitors”. In: Nano Energy “Toxicity and cellular uptake of gold nanoparti‑
58 (2019), pp. 624–632. cles: what we have learned so far?” In: Journal
of nanoparticle research 12.7 (2010), pp. 2313–
[167] Chenguang Liu, Zhenning Yu, David Neff, Aruna
2333.
Zhamu, and Bor Z Jang. “Graphene‑based super‑
capacitor with an ultrahigh energy density”. In: [179] Michael Okwori, Ali Behfarnia, Phanikumar Vuka,
Nano letters 10.12 (2010), pp. 4863–4868. and Ali Eslami. “A Micro‑Scale Mobile‑Enabled
Implantable Medical Sensor”. In: arXiv preprint
[168] Zhong‑Shuai Wu, Xinliang Feng, and Hui‑Ming
arXiv:1806.06163 (2018).
Cheng. “Recent advances in graphene‑based pla‑
nar micro‑supercapacitors for on‑chip energy [180] Bayram Cevdet Akdeniz and Malcolm Egan. “A Re‑
storage”. In: National Science Review 1.2 (2014), active Signaling Approach to Ensure Coexistence
pp. 277–292. Between Molecular Communication and External
[169] Taichi A Suzuki and Ruth E Ley. “The role of the Biochemical Systems”. In: IEEE Transactions on
microbiota in human genetic adaptation”. In: Molecular, Biological and Multi‑Scale Communica‑
Science 370.6521 (2020). tions 5.3 (2019), pp. 247–250.
[170] Malcolm Egan, Trang C Mai, Trung Q Duong, and [181] Malcolm Egan, Valeria Loscri, Ido Nevat, Trung Q
Marco Di Renzo. “Coexistence in molecular com‑ Duong, and Marco Di Renzo. “Estimation and Op‑
munications”. In: Nano communication networks timization for Molecular Communications with
16 (2018), pp. 37–44. a Coexistence Constraint”. In: Proceedings of the
[171] Markus Schmid, Patrick Ernst, Annemarie Honeg‑ Sixth Annual ACM International Conference on
ger, Maarit Suomalainen, Martina Zimmermann, Nanoscale Computing and Communication. 2019,
Lukas Braun, Sarah Stauffer, Cristian Thom, Birgit pp. 1–6.
Dreier, Matthias Eibauer, et al. “Adenoviral vector [182] Malcolm Egan, Valeria Loscri, Trung Q Duong, and
with shield and adapter increases tumor speci‑ Marco Di Renzo. “Strategies for coexistence in
ficity and escapes liver and immune control”. molecular communication”. In: IEEE transactions
In: Nature communications 9.1 (2018), p. 450. on nanobioscience 18.1 (2018), pp. 51–60.
© International Telecommunication Union, 2021 23