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Page 16 of 21                             Liu et al. Soft Sci 2024;4:44  https://dx.doi.org/10.20517/ss.2024.59

               Financial support and sponsorship
               This study was supported in part by the National Natural Science Foundation of China (52102218,
               51972061, 22203015, and 52273032), the National Key Research and Development Program of China
               (2020YFA0710303), the Fujian Science and Technology Innovation Laboratory for Optoelectronic
               Information of China (2021ZZ127), and the Scientific Research Foundation of Fujian University of
               Technology (GY-Z21014, GY-Z17073). The authors also acknowledge the Minjiang Scholar Professorship
               (GXRC-21004), the State Key Laboratory of Structure Chemistry (20240010), and the Natural Science
               Foundation of Fujian Province of China (2021J01594 and 2022J01088).


               Conflicts of interest
               All authors declared that there are no conflicts of interest.


               Ethical approval and consent to participate
               Not applicable.


               Consent for publication
               Not applicable.


               Copyright
               © The Author(s) 2024.


               REFERENCES
               1.       Forman C, Muritala IK, Pardemann R, Meyer B. Estimating the global waste heat potential.  Renew Sustain Energy Rev
                    2016;57:1568-79.  DOI
               2.       Duan J, Yu B, Liu K, et al. P-N conversion in thermogalvanic cells induced by thermo-sensitive nanogels for body heat harvesting.
                    Nano Energy 2019;57:473-9.  DOI
                                                                                   -
                                                                                 -
               3.       Wang  H,  Zhuang  X,  Xie  W,  et  al.  Thermosensitive-CsI -crystal-driven  high-power  I /I   thermocells.  Cell  Rep  Phys  Sci
                                                            3
                                                                                  3
                    2022;3:100737.  DOI
               4.       Gao X, Chen G, Sun J, Dong S, Cui G. A review on realizing rechargeable batteries based on SOCl /SO  electrolyte systems.
                                                                                           2
                                                                                        2
                    MetalMat 2024;1:e19.  DOI
               5.       Wu M, Sun K, He J, et al. Hierarchically 3D fibrous electrode for high-performance flexible AC-line filtering in fluctuating energy
                    harvesters. Adv Funct Mater 2023;33:2305039.  DOI
               6.       Zhang D, Sia SA, Solco SFD, Xu J, Suwardi A. Energy harvesting through thermoelectrics: topological designs and materials jetting
                    technology. Soft Sci 2023;3:1.  DOI
               7.       Liu Z, Cheng H, Le Q, Chen R, Li J, Ouyang J. Giant thermoelectric properties of ionogels with cationic doping. Adv Energy Mater
                    2022;12:2200858.  DOI
               8.       Yang Y, Lee SW, Ghasemi H, et al. Charging-free electrochemical system for harvesting low-grade thermal energy. Proc Natl Acad
                    Sci U S A 2014;111:17011-6.  DOI  PubMed  PMC
               9.       Rahimi M, Straub AP, Zhang F, et al. Emerging electrochemical and membrane-based systems to convert low-grade heat to
                    electricity. Energy Environ Sci 2018;11:276-85.  DOI
               10.       Wu M, Cui H, Cai S, et al. Weak electron-phonon coupling and enhanced thermoelectric performance in n-type PbTe-Cu  Se via
                                                                                                     2
                    dynamic phase conversion. Adv Energy Mater 2023;13:2203325.  DOI
               11.       Soo XYD, Tan SY, Cheong AKH, et al. Electrospun PEO/PEG fibers as potential flexible phase change materials for thermal energy
                    regulation. Exploration 2024;4:20230016.  DOI  PubMed  PMC
               12.       Yun J. Recent progress in thermal management for flexible/wearable devices. Soft Sci 2023;3:12.  DOI
               13.       Yang R, Li X, Guo W, et al. New thermoelectric semiconductors Pb Sb 12+x Bi Se  with ultralow thermal conductivity. Chin J Struct
                                                                      6-x
                                                                         32
                                                                5
                    Chem 2024;43:100268.  DOI
               14.       Xu C, Sun Y, Zhang J, Xu W, Tian H. Adaptable and wearable thermocell based on stretchable hydrogel for body heat harvesting.
                    Adv Energy Mater 2022;12:2201542.  DOI
               15.       Liu Y, Zhang S, Zhou Y, et al. Advanced wearable thermocells for body heat harvesting. Adv Energy Mater 2020;10:2002539.  DOI
               16.       Cao T, Shi X, Li M, et al. Advances in bismuth-telluride-based thermoelectric devices: progress and challenges. eScience
                    2023;3:100122.  DOI
               17.       Fan Y, Xie C, Li J, et al. Engineering thermoelectric performance of α -GeTe by ferroelectric distortion. Energy Environ Mater
                    2024;7:e12535.  DOI
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