| Acronym Word | Original Word |
| 2D | two-dimensional |
| QDs | quantum dots |
| QHE | quantum Hall effect |
| D (DOS) | density of states |
| BZ | Brillouin zone |
| DFT | Density Functional Theory |
| SdHOs | Shubnikov-de Haas oscillations |
| B | magnetic field |
| σ | Hall conductivity |
| ρ | longitudinal resistivity |
| LL | Landau level |
| c | speed of light |
| G | high-frequency conductivity |
| T | transmittance |
| R | reflectance |
| InSb | indium antimonide |
| HgCdTe | mercury cadmium telluride |
| Pbs | lead sulfide |
| PbSe | lead selenide |
| CVD | chemical vapor deposition |
| LEDs | light-emitting diodes |
| EQE | external quantum efficiency |
| TCEs | transparent conductive electrodes |
| ITO | indium tin oxide |
| NWs | nanowires |
| OLEDs | organic light-emitting diodes |
| PMMA | poly(methyl) methacrylate |
| HILs | hole injection layers |
| SPP | surface plasmon polariton |
| GO | graphene oxide |
| RGO | reduced graphene oxide |
| AgNWs | silver nanowires |
| A-2GE | two-step growth method |
| OTR | oxygen transmission rate |
| PET | polyethylene terephthalate |
| PCEs | power conversion efficiencies |
| PSCs | perovskite solar cells |
| ETLs | electron transport layers |
| HTLs | hole transport layers |
| GRMs | graphene and related two-dimensional materials |
| GQDs | graphene quantum dots |
| PEDOT:PSS | poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate) |
| f-RGO | functionalized reduced graphene oxide |
| ABL | active buffer layer |
| FF | fill factor |
| GO-Li | lithium-neutralized graphene oxide flakes |
| FETs | field-effect transistors |
| HFTCVD | hot-filament thermal chemical vapor deposition |
| WGF | wrinkled graphene film |
| IDEs | interdigital electrodes |
| PVA | polyvinyl alcohol |
| CNTs | carbon nanotubes |
| CMOS | complementary metal–oxide–semiconductor |
| EOG | Electrooculography |
| GET | graphene electronic tattoo |
| CTCs | circulating tumor cells |
| AA | ascorbic acid |
| DA | dopamine |
| NO2 | nitrite |
| Trp | tryptophan |
| UA | uric acid |
| WHO | World Health Organization |
| DNA | deoxyribonucleic acid |
| DEP | dielectrophoresis |
| MC-LR | microcystin-LR |
| GF/PET | graphene film/polyethylene terephthalate |
| S-RGOH | sulfonated reduced graphene oxide hydrogel |
| TBLI | two-beam-laser interference |
| GPA-FET | graphene-Pd-Ag-gate FET |
| IoT | Internet of Things |
| C | Specific heat |
| K | thermal conductivity |
| HOPG | highly oriented pyrolytic graphite |
| RIE | reactive ion etching |
| SEM | scanning electron microscopy |
| TEP | thermoelectric power |
| ZT | the figure of merit |
| E-skins | Electronic skins |
| HMIs | human-machine interfaces |
| TRC | temperature coefficient of resistance |
| TS | transparent stretchable |
| PUD | PU dispersion |
| SLG | single-layer graphene |
| SiNx | silicon nitride |
| hBN | hexagonal boron nitride |
| P | porphyrin derivative |
| PEG | polyethylene glycol |
| miRNA | microRNA |
| PTT | photothermal therapy |
| PDT | photodynamic therapy |
| MCTS | multicellular tumor spheroids |
| MB | molecular beacon |
| MMSNs | magnetic mesoporous silica nanoparticles |
| DOX | doxorubicin |
| AMF | alternating magnetic field |
| SWCNTs | single-walled carbon nanotubes |
| CHF | critical heat flux |
| HTC | heat transfer coefficient |
| GBFs | Graphene-based films |
| GnPs | graphene nanoplatelets |
| SACVD | segregation adsorption CVD |
| GNSs | graphene nanosheets |
| LS | lignosulfonate |
| PANi | polyaniline |
| DWNTs | double-walled nanotubes |
| PF | power factor |
| LSTO | lanthanum strontium titanium oxide |